Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “CYTOPLASM”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 415 records · Page 23Linked to original sources

The cytoplasmic dot staining pattern is detected in a subgroup of patients with primary biliary cirrhosis.

OBJECTIVE: To determine the clinical significance of the cytoplasmic dot anti-"nuclear" antibody (ANA) staining pattern. METHODS: We describe a patient with fatigue, arthralgias, elevated serum transaminase, and antibodies staining 5-20 cytoplasmic dots in HEp-2 cells. A liver biopsy revealed the presence of Stage III primary biliary cirrhosis (PBC). Using 2-color immunofluorescence, we determined the relationship between the cytoplasmic dot staining pattern and that produced by antibodies directed against the GW182 component of mRNA processing bodies. To determine the prevalence of the cytoplasmic dot staining pattern in patients with PBC, sera from 493 patients were tested for antibodies producing this staining pattern. RESULTS: Antibodies in our patient's serum colocalized with anti-GW182 antibodies in cytoplasmic dots, but did not react with recombinant GW182, suggesting that they were directed against an additional component(s) of these structures. The cytoplasmic dot staining pattern was observed in 21 of 493 (4.3%) patients with PBC. In comparison, this staining pattern was not produced by serum from 248 patients with other autoimmune diseases. CONCLUSION: A subset of patients with PBC have autoantibodies that produce the cytoplasmic dot staining pattern. These antibodies react with one or more as yet unidentified components of the mRNA processing body. Appreciation of the clinical significance of the cytoplasmic dot staining pattern may assist in appropriate diagnosis and treatment of patients with PBC.

Animals↗

Intracellular localization of the 3-hydroxy-3-methylglutaryl coenzme A cycle enzymes in liver. Separate cytoplasmic and mitochondrial 3-hydroxy-3-methylglutaryl coenzyme A generating systems for cholesterogenesis and ketogenesis.

Acetoacetyl-CoA thiolase and 3-hydroxy-3-methylglutaryl coenzyme synthase which comprise the 3-hydroxy-3-methylglutaryl-CoA-generating system(s) for hepatic cholesterogenesis and ketogenesis exhibit dual mitochondrial and cytoplasmic localization. Twenty to forty per cent of the thiolase and synthase of avian and rat liver are localized in the cytoplasmic compartment, the remainder residing in the mitochondria. In contrast, 3-hydroxy-3 methylglutaryl-CoA lyase, an enzyme unique to the "3-hydroxy-3-methylglutaryl-CoA cycle" of ketogenesis, appears to be localized in the mitochondrion. The small proportion, 4 to 8 percent, of this enzyme found in the cytoplasmic fraction appears to arise via leakage from the mitochondria during cell fractionation in that its properties, pI and stability, are identical to those of the mitochondrial lyase. These results are consistent with the view that ketogenesis which involves all three enzymes, acetoacetyl-CoA thiolase, 3-hydroxy-3-methylglutaryl-CoA synthase and 3-hydroxy-3-methylglutaryl-CoA lyase, occurs exclusively in the mitochondrion, whereas cholesterogenesis, a pathway which involves only the 3-hydroxy-3-methylglutaryl-CoA synthesizing enzymes, is restricted to the cytoplasm. Further fractionation of isolated mitochondria from chicken and rat liver showed that all three of the 3-hydroxy-3-methylglutaryl-CoA cycle enzymes are soluble and are localized within the matrix compartment of the mitochondrion. Likewise, cytoplasmic acetoacetyl-CoA thiolase and 3-hydroxy-3-methylglutaryl-CoA synthase are soluble cytosolic enzymes, no thiolase or synthase activity being detectable in the microsomal fraction. Chicken liver mitochondrial 3-hydroxy-3methylglutaryl-CoA synthase activity consists of a single enzymic species with a pI of 7.2, whereas the cytoplasmic activity is composed of at least two species with pI values of 4.8 and 6.7. Thus it is evident that the mitochondrial and cytoplasmic species are molecularly distinct as has been shown to be the case for the mitochondrial and cytoplasmic acetoacetyl-CoA thiolases from avian liver (Clinkenbeard, K. D., Sugiyama, T., Moss, J., Reed, W. D., and Lane, M. D. (1973) J. Biol. Chem. 248, 2275). Substantial mitochondrial 3-hydroxy-3-methylglutaryl-CoA lyase activity is present in all tissues surveyed, while only liver and kidney possess significant mitochondrial 3-hydroxy-3-methylglutaryl-CoA synthase activity. Therefore, it is proposed that tissues other than liver and kidney are unable to generate acetoacetate because they lack the mitochondrial synthase.

Adenosine Monophosphate↗

Characteristic distribution density of organelles in the cytoplasm of respective kinds of cell lineages of ascidian embryos.

In the early embryos of the ascidian (Halocynthia roretzi), regional cytoplasmic differences arise just after fertilization. We successively studied the characteristic features of the cytoplasm of those regions in the embryonic cells during the entire ontogenic process from the unfertilized egg to the tadpole larva. The embryos and larvae were fixed in a mixture of osmium and glutaraldehyde, and the distribution of the organelles in the entire cytoplasm was observed with light and electron microscopy. According to the analysis of the distribution density of the organelles which occupied a given area of the cytoplasm on the section, we introduced the "organelle region" in the cytoplasm and further calculated the approximate area ratios of the "organelle regions" in the cytoplasm of each cell lineage. As a result, it was demonstrated that the characteristic distribution mode was already present in the cytoplasm of the cell lineages of the 8-cell-stage embryos. The features of the cytoplasm in each embryonic cell lineage, moreover, reflected those of the corresponding larval tissue. Our results not only demonstrate that the structural tissue specificity is expressed at an extremely early stage during the ascidian embryogenesis but also suggest that the corresponding functional differentiation among the cell lineages occurs early.

Animals↗

Isolation and chemical composition of the cytoplasmic membrane of the archaebacterium Methanospirillum hungatei.

The cytoplasmic membrane of Methanospirillum hungatei was isolated from osmotic lysates of spheroplasts, with yields of 7-8% of the cell dry weight. Cytoplasmic contamination was negligible, as judged by the removal of soluble enzymes. The cytoplasmic membrane consists of lipid (35-37%), primarily as a biphytanyldiglycerol tetraether glycolipid; protein (45-50%); and carbohydrate (10-12%). Ultra-thin sections showed that the trilaminar membrane formed vesicles with a maximum diameter of 0.4 microns. Protrusions of membrane projecting from the vesicles were seen often in negatively stained preparations. Fractionation of M. hungatei cells grown in the presence of [14C]mevalonic acid revealed that 90% of the phytanyl lipids were present in the cytoplasmic membrane band, with two minor bands accounting for the remainder of the label. Approximately 50% of the galactose, glucose, and mannose present in the cytoplasmic membrane was found in lipid extracts, while the remainder of these sugars and 98% of the rhamnose were present as nonlipid sugars. The cell sheath, isolated with a yield of 13% of the cell dry weight, contained the same sugars as the cytoplasmic membrane, but in very different proportions. Amino acid analysis of the membrane proteins showed that hydrophobic amino acid residues made up 37% of the total, neutral amino acids, 39%, basic, 8%, acidic, 16%, and that half-cysteine was present. Sodium dodecyl sulfate-polyacrylamide gel patterns of solubilized cytoplasmic membrane proteins revealed major bands at 195, 74.5, 44, 32, and 30 KDa. Significant amounts of nickel co-isolated with the cytoplasmic membrane, accounting for 0.16% of the membrane dry weight.

Carbohydrates↗

In human hepatocellular carcinoma cells the total membrane surface area of each major organelle is a particular allometric function of the cytoplasmic volume. A morphometric study.

Morphometric analysis by both light and electron microscopy was performed in cells from five cases of human, hepatocellular carcinoma (HCC) and in three control cases. In each case, three fragments were examined individually and the following morphometric parameters evaluated: a) nuclear, cytoplasmic and cell volumes; b) volume density and absolute volume of the rough ER, smooth ER, mitochondria, Golgi apparatus, peroxisomes, dense bodies and cytoplasmic matrix; c) surface density, surface/ volume ratio, and total surface area of rough ER, smooth ER and outer mitochondrial membranes. The parameters obtained from HCC cases showed ample scatter of data, all control values lying within the interval between the extreme values for the various parameters. Both the original and the logarithmically transformed data on volume and total membrane surface area of organelles (y) and of the cytoplasmic volume (x) were regressed using first degree regression equations. The original values for volume and total surface area of rough ER, total ER and mitochondria were linearly related to the corresponding values for cytoplasmic volume. The allometric analysis carried out with the logarithms also revealed significant regressions between cytoplasmic volume and smooth ER parameters not detectable when using the original x and y values. It showed, in addition, that in progressively larger cytoplasmic volumes, the cisternae of both rough and smooth ER tend to appear more compacted and a higher portion of the total ER membrane tends to be constituted of smooth ER. Within the wide range of variation in cytoplasmic volume of the HCC cells, the volume and total surface of the organelles do not vary randomly. These data indicate that in the small, normal-sized and large tumoral cells the mechanisms responsible for the cytoplasmic volume and for the corresponding total volume and membrane surface area of each major organelle are interdependent. Such an interdependence gives no support to ideas implying that the variation in size of cancer cells, an element of pleomorphism, would result of anarchical intracellular synthetic and/or degradative conditions.

Carcinoma, Hepatocellular↗

EVIDENCE FOR CYTOPLASMIC DNA IN ROOT CELLS OF NICOTIANA.

Sterile root cultures from Nicotiana tabacum were grown with H(3)-thymidine added to the medium for various intervals. Incorporation of the labeled nucleoside into nuclear DNA occurred in a fraction of the nuclei which increased with time. In addition, the cytoplasm of all cells incorporated enough tritium to be readily detected by autoradiography. The tritium was not removed by hydrolysis in 1 N HCl at 60 degrees C for 10 minutes, but was removed by digestion in a DNase solution which also removed nuclear DNA. The amount of tritium in the cytoplasm increased during the first 2 hours, but did not appear to increase significantly during the following 5 hours. If the roots were transferred to unlabeled medium after 2 hours, the label was diluted faster than expected by growth without turnover of the labeled component. If FUdR was added to the unlabeled medium, the depletion occurred faster during the first 6 hours, but later appeared to level off so that at 10 hours these cultures did not differ from those incubated without FUdR. However, the addition of an excess of unlabeled carrier had no effect on the rate of depletion of the cytoplasmic label. Actinomycin D, which inhibited the incorporation of H(3)-cytidine into RNA in the root tips, had no effect on the incorporation of H(3)-thymidine into the cytoplasmic component. However, Mitomycin C or a high concentration of deoxyadenosine inhibited the incorporation of H(3)-thymidine into the cytoplasmic component as well as into the nuclear DNA. It is concluded that H(3)-thymidine is incorporated into a cytoplasmic fraction which has the characteristics of DNA, with a measurable rate of turnover. This fraction is synthesized regardless of whether or not the nucleus is synthesizing DNA. Although the function of cytoplasmic fraction is not yet known, it does not appear to be that of supplying precursors for the synthesis of the nuclear DNA.

Autoradiography↗

The cyclin D1 proto-oncogene is sequestered in the cytoplasm of mammalian cancer cell lines.

BACKGROUND: The cyclin D1 proto-oncogene is an important regulator of G1 to S-phase transition and an important cofactor for several transcription factors in numerous cell types. Studies on neonatal cardiomyocytes and postmitotic neurons indicate that the activity of cyclin D1 may be regulated through its cytoplasmic sequestration. We have demonstrated previously, that TSA induces the ubiquitin-dependent degradation of cyclin D1 in MCF-7 breast cancer cells. Additional studies were initiated in order to further investigate the effect of TSA on cyclin D1 regulation using sub-cellular fractionation techniques. RESULTS: Our studies revealed cyclin D1 to be localized predominantly within the cytoplasmic fraction of all cell lines tested. These observations were confirmed by confocal microscopy. GSK3beta was found to be localized within both the nucleus and cytoplasm throughout the cell cycle. Inhibition of GSK3beta or CRM1-dependent nuclear export resulted in only modest nuclear accumulation, suggesting that the cytoplasmic localization of cyclin D1 results from the inhibition of its nuclear import. CONCLUSION: We have shown by several different experimental approaches, that cyclin D1 is in fact a predominantly cytoplasmic protein in mammalian cancer cell lines. Recent studies have shown that the cytoplasmic sequestration of cyclin D1 prevents apoptosis in neuronal cells. Our results suggest that cytoplasmic sequestration may additionally serve to regulate cyclin D1 activity in mammalian cancer cells.

Active Transport, Cell Nucleus↗

Mechanism for the removal of residual cytoplasm from spermatids during mouse spermiogenesis.

During spermiogenesis, cytoplasmic processes of Sertoli cells invade spermatid cytoplasm to form a canal complex (Sakai et al., 1988). Thin tubules are formed from the canal complex and intertwine with each other to give rise to the "mixed body." In the present study, analysis of the changes undergone by the intertwining thin tubules indicated that they contribute to the removal of cell organelles from spermatid cytoplasm. Intertwining thin tubules were first detected at step 13. By step 15, their number had greatly increased. In the present study, the membranes of the intertwining thin tubules were clearly observed to be continuous with the spermatid plasma membranes. Thus, the mixed body possibly may be formed as a long pit of the spermatid plasma membrane situated close to the invading Sertoli cell process. With the progress of spermiogenesis, the lumens of the intertwining thin tubules gradually became swollen, and the intertwining swollen tubules fused with each other so that the spermatid cytoplasm enclosed by the intertwining swollen tubules isolated into fragments. This fragmented cytoplasm, which contained a large amount of endoplasmic reticulum, became spherical. Small branches of the invading Sertoli cell processes entered into the lumens of the intertwining swollen tubules and occupied their interior to the point that, finally, they completely engulfed the fragmented spermatid cytoplasm. Because the invading Sertoli cell processes were continuous with Sertoli cell bodies surrounding a spermatid at this step, it is possible for the fragmented cytoplasm to be transported into the latter by way of the invading Sertoli cell processes.

Adenosine Triphosphatases↗

Tissue-specific granularity of gap junction cytoplasmic surfaces revealed by rapid-freeze, deep-etch replicas.

Previous rapid-freeze, deep-etch replica studies have revealed the differences between heart and liver gap junctions; cytoplasmic surfaces of in situ and phenylmethylsulfonyl fluoride (PMSF)-unproteolyzed isolated cardiac gap junctions (MW 47 kD) have a particulate substructure, which is absent both in the proteolyzed heart junctions (MW 29 kD) and in the liver junctions isolated with PMSF (MW 28 kD). The present deep-etch replica studies of gap junction cytoplasmic surface (CS) membranes in several tissues of rats and mice were performed to examine whether or not this difference between liver and heart is typical of variations in gap junction proteins from tissue to tissue. In surface mucous cells of the stomach, intestinal epithelial cells, and kidney tubule cells, these epithelial gap junctions always showed smooth cytoplasmic surfaces, similar to the liver gap junctions. In contrast, in the atrial myocardium, aortic endothelium, and the ciliary process, cytoplasmic surface membranes of the gap junctions consistently revealed particulate patterns. Close examinations disclosed that those granular structures were not merely attached to the memvrane surface, but they also protruded from the membrane interior as an integral component of gap junction particles. Furthermore, in the pregnant rat uterus at term, cytoplasmic surface membranes of myometrial smooth muscle gap junctions were particulate, but those of endometrial epithelium were smooth. The present observation suggest that tissue specificity exists in cytoplasmic surface structures of gap junctions between the "true" epithelial and the nonepithelial tissues: the nonepithelial gap junctions contain the additional cytoplasmic surface domain that is absent in the gap junctions of "true" epithelial origin.

Animals↗

The peripheral cytoplasm of adrenocortical cells: zone-specific responses to ACTH.

BACKGROUND: Differences in the cytoskeletal protein actin in cells from the zona glomerulosa and zona fasciculata would be of considerable interest because there is persuasive evidence that rat corticosteroids are secreted by mechanisms that are somewhat zone-specific. We have previously shown evidence that actin may be involved in steroid secretion, possibly in connection with changes in adrenocortical microvilli. However, the cells upon which the data were based were not separated according to zone of origin. METHODS: Immunogold electron microscopy and morphometric procedures were used to determine whether ACTH-induced changes in the peripheral cytoplasm of isolated adrenocortical cells occur in both zona fasciculata and zona glomerulosa cells. RESULTS: Actin immunoreactivity was more concentrated in the cytoplasm adjacent to the plasma membrane (including the cytoplasm within the microvilli) than it was in the internal cytoplasm in cells from both zones (4-6 times more concentrated in zona glomerulosa cells and 3-6 times more concentrated in zona fasciculata cells). However, the mean aggregate microvillar surface length (microvillar index) of untreated zona fasciculata cells (previously reported (Loesser and Malamed, 1987)) was 23% greater than that of untreated zona glomerulosa cells. Although ACTH (at a maximal steroidogenic concentration) had no effect on the peripheral cytoplasmic actin concentration of zona glomerulosa cells, there was a 24% increase in the aggregate microvillar length. In contrast, in zona fasciculata cells, ACTH treatment was accompanied by an increase in peripheral cytoplasmic actin concentration of 58-64% and an increase in aggregate microvillar surface length of 40% (previously reported (Loesser and Malamed, 1987)), almost twice that for zona glomerulosa cells. CONCLUSION: The results suggest that ACTH-induced hormone release from zona fasciculata cells is mediated by increases in peripheral cytoplasmic actin and aggregate microvillar length; in zona glomerulosa cells such changes are small or absent.

Actins↗

Cytoplasmic accumulation of alpha-catenin in thyroid neoplasms.

BACKGROUND: Alpha-catenin (alpha-cat) is one of the anchoring proteins of E-cadherin. It has been shown that deviation in its function may alter the cadherin-catenin complex leading to disturbed cell-cell adhesion. Immunohistochemical studies have shown that cytoplasmic localization of alpha-cat in tumors is associated with aggressive behavior. In this study, we evaluated the expression of alpha-cat in various thyroid tumors by immunohistochemical analysis. METHODS: Fifty cases were selected:18 papillary carcinoma classic type (PTC), 9 follicular variant of PTC (FVPTC), 6 follicular carcinoma (FCA), 4 anaplastic carcinoma (ACA), 8 follicular adenoma (FA), 3 nodular goiter (NG), and 2 lymphocytic thyroiditis (LT). The staining reaction was classified as membranous, cytoplasmic, or both. The intensity of the staining was graded as negative (0), weak (+), moderate (++), and strong (+++). RESULTS: Staining along the cell membrane was observed in 36 (72%) and cytoplasmic expression was present in 28 (57%) cases. The cytoplasmic staining was more commonly seen in malignant lesions; it was more common in PTC (78% of all PTC) than follicular patterned lesions (FVPTC, FCA). All cases of ACA (4 of 4) showed only cytoplasmic expression. No correlation was found between lymph node involvement and alpha-cat staining patterns. CONCLUSIONS: Cytoplasmic expression of alpha-cat is more common in (1) malignant lesions of thyroid and (2) PTC than FVPTC and FCA. The lack of membrane and presence of cytoplasmic expression suggest a role of alpha-catenin in the aggressive biology of ACA.

Adult↗

When is a carrier not a membrane carrier? The cytoplasmic transport of amphipathic molecules.

After entering the cell, small molecules must penetrate the cytoplasm before they are metabolized, excreted, or can convey information to the cell nucleus. Without efficient cytoplasmic transport, most such molecules would efflux back out of the cell before they could reach their targets. Cytoplasmic movement of amphipathic molecules (e.g., long-chain fatty acids, bilirubin, bile acids) is greatly slowed by their tendency to bind intracellular structures. Soluble cytoplasmic binding proteins reduce this binding by increasing the aqueous solubility of their ligands. These soluble carriers catalyze the transport of hydrophobic molecules across hydrophilic water layers, just as membrane carriers catalyze the transport of hydrophilic molecules across the hydrophobic membrane core. They even display the kinetic features of carrier-mediated transport, including saturation, mutual competition between similar molecules, and countertransport. Recent data suggest that amphipathic molecules cross the cytoplasm very slowly, with apparent diffusion constants 10(2) to 10(4) times smaller than in water. By modulating the rate of cytoplasmic transport, cytosolic binding proteins may regulate transport and metabolism of amphipathic molecules. Storage diseases may cause hepatocellular dysfunction by disrupting normal cytoplasmic transport.

Animals↗

Signal transduction in Jurkat T lymphocytes. Evidence for early Ca2+ movements between the cytoplasm and the nucleoplasm in activated cells.

Spatial analyses of the distribution of Ca2+ in resting and activated T and B lymphocytes have shown that the bulk of increased [Ca2+]i appears to be associated with the nuclear region. These observations suggest that Ca2+ is released from the perinuclear space or that it diffuses to the nucleoplasm, or both. We have used laser scanning confocal microscopy to assess whether cytoplasmic diffusion of Ca2+ could contribute to the rise in nuclear Ca2+. We found that the activation of individual Jurkat cells by use of an anti-Ti (beta-subunit) mAb induced a nucleus-associated increase in [Ca2+]i. In cells loaded with the InsP3 receptor antagonist heparin, the nuclear Ca2+ response was abolished but not the response to thapsigargin. Evidence for a cytoplasmic Ca2+ response was obtained by loading Jurkat cells with a cytoplasm-restricted Ca2+ probe (Calcium Green-1-Dextran). These observations suggested that a process of diffusion of cytoplasmic Ca2+ contributed to the rise of nuclear Ca2+ in Jurkat T cells. This interpretation was supported by the findings (1) that rapid scanning of thapsigargin-released Ca2+ showed an inverse relationship between the levels of cytoplasmic and nuclear Ca2+ and (2) that modulation of the external concentration of Ca2+ in thapsigargin-treated Jurkat cells showed a time-dependent decrease of fluorescence from the nucleoplasm that was reversed by raising the concentration of external Ca2+. We conclude that Ca2+ can rapidly diffuse between the cytoplasm and the nucleoplasm in activated Jurkat T lymphocytes and that hydrophilic Ca2+ probes largely partition to the nucleoplasm, thus giving rise to distorted nucleus-to-cytoplasm fluorescence ratios.

Calcium↗

Differential effect of recipient cytoplasm for microtubule organization and preimplantation development in rat reconstituted embryos with two-cell embryonic cell nuclear transfer.

In the present study, we examined the developmental ability of enucleated zygotes, MII oocytes, and parthenogenetically activated oocytes at pronuclear stages (parthenogenetic PNs) as recipient cytoplasm for rat embryonic cell nuclear transfer. Enucleated zygotes as recipient cytoplasm receiving two-cell nuclei allowed development to blastocysts, whereas the development of embryos reconstituted with MII oocytes and parthenogenetic PNs was arrested at the two-cell stage. Previous observations in rat two-cell embryos suggested that the distribution of microtubules is involved in two-cell arrest. Therefore, we also examined the distribution of microtubules using immunofluorescence. At the two-cell stage after nuclear transfer into enucleated zygotes, microtubules were distributed homogeneously in the cytoplasm during interphase, and normal mitotic spindles were observed in cleaving embryos from the two- to four-cell stage. In contrast, embryos reconstituted with MII oocytes and parthenogenetic PNs showed aberrant microtubule organization. In enucleated zygotes, fibrous microtubules were distributed homogeneously in the cytoplasm. In contrast, dense microtubules were localized at the subcortical area in the cytoplasm and strong immunofluorescence intensity was observed at the plasma membrane, while very weak intensity was detected in the central part of enucleated MII oocytes. In enucleated parthenogenetic PNs, high-density and fibrous microtubules were distributed in the subcortical and central areas, respectively. Pre-enucleated parthenogenetic PNs also showed lower intensity of microtubule immunofluorescence in the central cytoplasm than zygotes. In conclusion, the results of the present study showed that zygote cytoplasm is better as recipient than MII oocyte and parthenogenetic PNs for rat two-cell embryonic cell nuclear transfer to develop beyond four-cell stage. Furthermore, microtubule organization is involved in the development of reconstituted embryos to overcome the two-cell arrest.

Animals↗

Interaction of the essential Drosophila nuclear protein YA with P0/AP3 in the cytoplasm and in vitro: implications for developmental regulation of YA's subcellular location.

The Drosophila nuclear lamina protein YA is essential for the transition from female meiosis to embryo mitosis. Its localization and, hence, function is under developmental and cell cycle controls. YA protein is hyperphosphorylated and cytoplasmic in ovaries. Upon egg activation, YA is partially dephosphorylated and acquires the ability to enter nuclei. Its function is first detected at this time. To investigate the cytoplasmic retention machinery that keeps YA from entering nuclei, we used affinity chromatography and blot overlay assays to identify cytoplasmic proteins that associate with YA. Drosophila P0/AP3, a ribosomal protein that is also an apurinic/apyrimidinic endonuclease, binds to YA in ovary and embryo cytoplasms. P0 and YA bind specifically and directly in vitro and are present in a 20S complex in the cytoplasmic extracts. YA protein can be phosphorylated by MAPK, but not by p34(Cdc2) kinase, in vitro. This phosphorylation increases YA's binding to P0. We propose that the P0-containing 20S cytoplasmic complex retains hyperphosphorylated ovarian YA in the cytoplasm. In response to egg activation, YA is partially dephosphorylated and its binding to the 20S complex is reduced. Hence, some YA dissociates from the complex and enters nuclei. Consistent with this model, decreasing P0 levels partially suppress a hypomorphic Ya mutant allele.

Amino Acid Sequence↗

Escherichia coli maltose-binding protein as a molecular chaperone for recombinant intracellular cytoplasmic single-chain antibodies.

Recombinant single-chain antibodies (scFvs) that are expressed in the cytoplasm of cells are of considerable biotechnological and therapeutic potential. However, the reducing environment of the cytoplasm inhibits the formation of the intradomain disulfide bonds that are essential for correct folding and functionality of these antibody fragments. Thus, scFvs expressed in the cytoplasm are mostly insoluble and inactive.Here, we describe a general approach for stabilizing scFvs for efficient functional expression in the cell cytoplasm in a soluble, active form. The scFvs are expressed as C-terminal fusions with the Escherichia coli maltose-binding protein (MBP). We tested a large panel of scFvs that were derived from hybridomas and from murine and human scFv phage display and expression libraries by comparing their stability and functionality as un-fused versus MBP fused proteins. We found that MBP fused scFvs are expressed at high levels in the cytoplasm of E. coli as soluble and active proteins regardless of the redox state of the bacterial cytoplasm. In contrast, most un-fused scFvs can be produced (to much lower levels) in a functional form only when expressed in trxB(-) but not in trxB(+) E. coli cells. We show that MBP-scFv fusions are more stable than the corresponding un-fused scFvs, and that they perform more efficiently in vivo as cytoplasmic intrabodies in E. coli. Thus, MBP seems to function as a molecular chaperone that promotes the solubility and stability of scFvs that are fused to it.

ATP-Binding Cassette Transporters↗

Cytoplasmic chloride regulates cation channels in the vacuolar membrane of plant cells.

This study is concerned with the characterization of the ionic currents in the vacuolar membrane (tonoplast) of plant cells. Voltage patch-clamp experiments at the whole vacuole and single channel levels were employed to study the effects of cytoplasmic chloride on the tonoplast inward rectifying currents of sugar beet cultured cells. Whole vacuole experiments showed that removal of cytoplasmic chloride induced a decrease in the level of the inward currents, an effect that was reversed upon returning to control levels of cytoplasmic chloride. Substitution of cytoplasmic chloride by any other anion (organic or inorganic) resulted in a reduction in the level of the inward currents. At a given negative tonoplast potential, the inward currents showed a linear relationship with the concentration of cytoplasmic chloride between 10 and 100 mM, with the slope of these relationships increasing as the potential was made more negative. Single channel experiments showed that reduction of cytoplasmic chloride changed the gating mechanism of the channels without affecting the single channel conductance. Reduction of cytoplasmic chloride caused a decrease in the open probability of the tonoplast cation channels by reducing their mean open time and by inducing the appearance of an additional closed state.

Cells, Cultured↗

Differential staining of neutrophils and monocytes: surface and cytoplasmic iron-binding proteins.

Lactoferrin, transferrin, and ferritin were systematically visualized and semiquantified in neutrophils and monocytes/macrophages using indirect immunofluorescence and functional cytochemical techniques. They localized on cell surfaces and within the cytoplasm at the light and electron microscopical levels. In normal subjects, subpopulations of blood neutrophils and monocytes had surface lactoferrin, but little surface transferrin or ferritin was observed on these cells. Most neutrophils had brilliant granular cytoplasmic positivity for lactoferrin; variable fractions of monocytes had weak to moderate diffuse cytoplasmic lactoferrin staining localized most prominently to the cytoplasmic matrix. Most neutrophils had cytoplasmic ferritin, but few had cytoplasmic transferrin, whereas larger subpopulations of monocytes had cytoplasmic staining reactions for both proteins. To analyse maturing cells, the iron nitrilotriacetate-acid ferrocyanide method was adapted for the light microscopical analysis of neutrophils and monocytes/macrophages in soft agar culture. Further, a combined stain that visualizes iron nitrilotriacetate-acid ferrocyanide reactivity and alpha-naphthyl butyrate esterase activity in cells in blood and marrow smears was developed. The relative quantities and subcellular distribution of iron-binding proteins in neutrophils and monocytes/macrophages defined by the present methods can be correlated with biochemical, maturational, and functional properties of these cells.

Bone Marrow↗