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 847 records · Page 47Linked to original sources

Salt Stress-Induced Cytoplasmic Acidification and Vacuolar Alkalization in Nitellopsis obtusa Cells : In VivoP-Nuclear Magnetic Resonance Study.

Time courses of cytoplasmic and vacuolar pH changes under salt stress were monitored by in vivo(31)P-nuclear magnetic resonance spectroscopy in intact cells of Nitellopsis obtusa. When cells were treated with 100 millimolar NaCl for 2 hours, the cytoplasmic pH deceased from 7.2 to 7.0, while the vacuolar pH increased from 4.9 to 5.2. This salt-induced breakdown of the pH gradient between the cytoplasm and the vacuole was also confirmed through direct measurements of change in vacuolar pH with a micro-pH electrode. We speculate that the intracellular pH changes induced by the salt stress mainly results from the inhibition of the H(+)-translocating pyrophosphatase in the vacuolar membrane, since this H(+)-translocating system is sensitive to salt-induced increase in the cytoplasmic [Na(+)] and a simultaneous decrease in the cytoplasmic [K(+)]. Since disturbance of the cytoplasmic pH value should have serious consequences on the homeostasis of living cells, we propose that the salt-induced intracellular pH changes are one of initial and important steps that lead to cell death.

Journal Article↗

Light-Dependent Changes of the Cytoplasmic H and Cl Activity in the Green Alga Eremosphaera viridis.

Ion-sensitive microelectrodes were used to measure Cl(-) and H(+) activities in the cytoplasm of the unicellular green alga Eremosphaera viridis de Bary. In the light, cytoplasmic Cl(-) activity was 2.2 millimolar at most and cytoplasmic H(+) activity was about 5.4.10(-8) molar (pH 7.3). Darkening resulted in a permanent increase of the Cl(-) activity to 3.2 millimolar and in a transient acidification, which was compensated within 3 to 5 minutes. Switching light on again decreased the Cl(-) activity to the light level (2.2 millimolar). Simultaneously, a transient alkalization of the cytoplasm was observed. The transient character of the light-dependent pH changes was probably caused by pH-stat mechanisms, whereas the light-dependent Cl(-) activity changes were compensated to a much smaller degree. Studies with different inhibitors (3-(3,4-dichlorophenyl)-1, 1-dimethylurea, piretanide, venturicidin) indicated a direct relation between the light-driven H(+) flow across the thylakoid membrane and the observed light-dependent Cl(-) and H(+) activity changes in the cytoplasm. It is suggested that light-driven H(+) flux across the thylakoid membrane was in part electrically compensated by a parallel Cl(-) flux. The resulting Cl(-) and H(+) activity changes in the stroma were compensated by Cl(-) and H(+) fluxes across the chloroplast envelope giving rise to the observed Cl(-) and H(+) activity changes in the cytoplasm.

Journal Article↗

Solution structure of the cytoplasmic domain of the human immunodeficiency virus type 1 encoded virus protein U (Vpu).

The HIV-1-specific Vpu protein is an 81 amino acid class I integral membrane phosphoprotein that induces degradation of the virus receptor CD4 in the endoplasmic reticulum and enhances the release of virus particles from infected cells. Vpu is of amphipathic nature and consists of a hydrophobic N-terminal membrane anchor proximal to a polar C-terminal cytoplasmic domain. In our recent work, focussed on the structural analysis of the cytoplasmic tail, we established an alpha-helix-flexible-alpha-helix-turn model. Now we present the experimental solution structure of the Vpu cytoplasmic domain which has been elucidated in aqueous 50% trifluoroethanol solution by 2D 1H NMR spectroscopy, and restrained molecular dynamics and energy minimization calculations. Under these conditions the peptide, Vpu32-81, is predominantly monomeric and adopts a well defined helix-interconnection-helix-turn conformation, in which the four regions are bounded by residues 37-51, 52-56, 57-72 and 73-78. The presence of the cis isomer of Pro-75 manifests itself as a doubling of cross peaks of neighbouring residues in the 2D spectra. A related variant peptide, Vpum32-81, in which the Vpu-phosphoacceptor sites Ser52 and Ser56 were exchanged for Asn, adopts a very similar structure and, taken together, provides evidence that the second helix and the turn form a comparatively rigid region. Both helices are amphipathic in character, but show different charge distributions. In general the cytoplasmic region is N-terminally positively charged, passes through a region of alternating charges in helix 1 and then becomes negatively charged. The flexibility of the interconnection permits orientational freedom of the two helices. The motif found here is the first experimentally refined solution structure of the cytoplasmic domain of Vpu, and it is conceivable that these alpha-helices are important for a previously defined physical interaction with an alpha-helical Vpu-responsive element located within the cytoplasmic tail of CD4.

Amino Acid Sequence↗

The role of the cytoplasmic domain of alpha 6 integrin in the assembly and function of alpha 6 beta 1 and alpha 6 beta 4.

We have studied the role of the cytoplasmic domain of alpha 6 in the assembly and function of the alpha 6 beta 4 integrin, and compared it with the role of alpha 6 in the assembly and function of alpha 6 beta 1, by transfection of cDNAs encoding cytoplasmic mutants of alpha 6 into K562 cells with or without full-length beta 4 cDNA. Des-(1022-1050)-alpha 6, which contains a deletion C-terminal to the GFFKR motif, was expressed in association with beta 1, but associated preferentially with beta 4, whereas the wild-type alpha 6 subunit associated efficiently with beta 1 and beta 4. Des-(1016-1050)-alpha 6, which lacked also the GFFKR sequence, was only expressed at the cell surface when beta 4 was available. Transient expression in COS-7 cells showed that des-(1016-1050)-alpha 6 was retained in the endoplasmic reticulum as a monomer, which suggests that truncation of the cytoplasmic domain reduces the affinity of alpha 6 for beta 1, particularly when the GFFKR sequence is absent. Although the GFFKR motif is not essential for association of alpha 6 with beta 4, it increases the stability of the alpha 6 beta 4 integrin. The cytoplasmic domain of alpha 6 is essential for inside-out and outside-in signaling via the alpha 6 beta 1 receptor, but not for adhesion via alpha 6 beta 4. We show that alpha 6 beta 4 is a constitutively active receptor. Thus, unlike adhesion by most other integrins, adhesion by alpha 6 beta 4 does not seem to depend on any active cellular process. Binding of alpha 6 beta 4 to ligand was only slightly affected by truncation of the alpha 6 cytoplasmic domain N-terminal to the GFFKR sequence and became partially dependent on metabolic energy. These data indicate that truncations of the cytoplasmic domain of the alpha 6 subunit affect the assembly and function of alpha 6 beta 1 more strongly than those of alpha 6 beta 4. This difference may be due to the greater affinity of alpha 6 for beta 4 than for beta 1, which makes alpha 6 beta 4 less susceptible to the effect of truncations.

Amino Acid Sequence↗

Dopamine D2 receptor activates extracellular signal-regulated kinase through the specific region in the third cytoplasmic loop.

To investigate whether the third cytoplasmic loop and the C-terminal cytoplasmic tail of dopamine D(2) receptor (D2R) are involved in extracellular signal-regulated kinase (ERK) activation and subsequent regulation of transcription factors, we established NG108-15 cells stably expressing D2LR and D2SR deleted 40 amino acid residues in the third cytoplasmic loop (NGD2LR-3rd-dele and NGD2SR-3rd-dele) or the C-terminal cytoplasmic tail (NGD2LR-C-dele and NGD2SR-C-dele) and evaluated these receptors' functions using luciferase reporter gene assay. Immunocytochemical studies showed similar intracellular distributions of D2LR-3rd-dele and D2SR-3rd-dele to D2LR and D2SR, respectively. Quinpirole-induced inhibition of forskolin-induced cyclic AMP responsive element (CRE) activation was not affected by the deletion of 40 amino acid residues. However, nuclear factor-kappa B (NF-kappaB) activation by D2R-3rd-dele was largely attenuated compared to that by D2R. Similarly, ERK or serum-responsive element (SRE) activation by quinpirole treatment was totally abolished in NGD2R-3rd-dele cells. Moreover, D2R-C-dele was diffusely distributed or clustered in the cell bodies and lost the receptor functions. Taken together, the 40 amino acid residues in the third cytoplasmic loop are essential for the ERK activation but not for inhibition of adenylyl cyclase through Gi/o proteins. In addition, the C-terminal cytoplasmic tail is essential for membrane association of D2Rs to elicit the receptor functions.

Animals↗

Coordinated alterations in ribosomes and cytoplasmic membrane in sucrose-dependent, spectinomycin-resistant mutants of Escherichia coli.

Alterations in cytoplasmic membrane and ribosomes from sucrose-dependent spectinomycin-resistant (Sucd-Spcr) mutants of Escherichia coli, mutants that are resistant to spectinomycin in the presence of 20% sucrose but sensitive in the absence of sucrose, were studied. The protein composition of cytoplasmic membrane was analyzed by gel electrophoresis on polyacrylamide gel containing 8 M urea and 0.5% sodium dodecyl sulfate, which assured the reproducible separation of 28 protein bands. A major protein band, I-19, was missing in all cytoplasmic membrane preparations from 10 Sucd-Spcr mutants. Besides protein I-19, proteins I-13 and I-24 were missing in some mutants. On the other hand, the protein composition of cytoplasmic membrane from a sucrose-independent spectinomycin-resistant mutant was indistinguishable from that from the wild-type strain. The polypeptide synthetic activity of ribosomes from Sucd-Spcr mutants was resistant to spectinomycin. Studies on a revertant obtained from one of these mutants without any selection for sensitivity to spectinomycin revealed that a single mutation was responsible for both the ribosomal alteration, i.e., spectinomycin resistance, and the lack of protein I-19 in the cytoplasmic membrane. Studies on a transductant obtained with a Sucd-SPcr mutant as the donor also confirmed the single-mutation concept. It was concluded that in Sucd-SPcr mutants an alteration in the ribosomes caused the deletion of protein I-19 from cytoplasmic membrane.

Bacterial Proteins↗

Truncation of the cytoplasmic domain of the simian immunodeficiency virus envelope glycoprotein increases env incorporation into particles and fusogenicity and infectivity.

Growth of macaque simian immunodeficiency virus (SIVmac) in certain cloned human T-cell lines, such as HUT.78, selects for isolates containing a premature stop codon within the cytoplasmic domain of the transmembrane envelope glycoprotein. In contrast, propagation of virus in macaques or in their cultured T cells favors replication of virus containing the full-length envelope glycoprotein. To elucidate the causes of this phenomenon, we used a human immunodeficiency virus pseudotyping system to assess the effects on infectivity of the cytoplasmic domains of envelope glycoproteins obtained from SIVmac1A11 and SIVmac239. These envelopes contain truncated and full-length cytoplasmic domains, respectively. By analyzing human immunodeficiency virus particles containing selectable genes pseudotyped with each glycoprotein or with chimeric derivatives, we found that truncation of the cytoplasmic domain resulted in a significant advantage in viral entry into HUT.78 T cells and CD4+ U87.MG glial cells. Truncation of the cytoplasmic domain significantly enhanced both envelope density on particles and envelope-mediated cell-to-cell fusion. It is likely that one or both of these effects contribute to the observed differences in infectivity and to the selection of virions with short cytoplasmic tails in human T cells.

Amino Acid Sequence↗

The cytoplasmic domain of CD4 is sufficient for its down-regulation from the cell surface by human immunodeficiency virus type 1 Nef.

Human immunodeficiency virus type 1 Nef down-regulates surface expression of murine and human CD4 but not human CD8. We recently reported that the cytoplasmic domain of CD4 is required for its down-regulation by Nef. Using a chimeric molecule composed of the extracellular and transmembrane domains of human CD8 fused to the cytoplasmic domain of human CD4, we show here that the cytoplasmic domain of CD4 is sufficient for down-regulation by Nef. Since the cytoplasmic domain of CD4 is also the site of its association with p56lck, we used a series of CD4 mutants to determine whether the regions of the cytoplasmic domain of CD4 required for down-regulation by Nef are the same as those required for p56lck binding. Our results indicate that the portion of the cytoplasmic domain required for the down-regulation of CD4 by Nef overlaps with the binding site of p56lck, but the cysteine residues which are essential for the association of CD4 with p56lck are not required. This observation raised the possibility that Nef competes with p56lck for binding to CD4. However, under conditions which are considerably milder than those permissive for coimmunoprecipitation of CD4 and p56lck, we found no evidence for an association between Nef and CD4. While a decrease in total CD4 was observed in lysates of cells expressing Nef, the levels of p56lck were not significantly affected. Pulse-chase experiments further revealed a decrease in the half-life of CD4 in Nef-expressing cells. These results show that the decrease in surface CD4 expression induced by Nef is mediated at least in part by a decrease in the half-life of CD4 protein. These results also indicate that a large portion of p56lck is free of CD4 in T cells expressing Nef, which could have a significant effect on T-cell function.

Amino Acid Sequence↗

Epstein-Barr virus recombinant molecular genetic analysis of the LMP1 amino-terminal cytoplasmic domain reveals a probable structural role, with no component essential for primary B-lymphocyte growth transformation.

Previous recombinant Epstein-Barr virus molecular genetic experiments with specifically mutated LMP1 genes indicate that LMP1 is essential for primary B-lymphocyte growth transformation and that the amino-terminal cytoplasmic and first transmembrane domains are together an important mediator of transformation. EBV recombinants with specific deletions in the amino-terminal cytoplasmic domain have now been constructed and tested for the ability to growth transform primary B lymphocytes into lymphoblastoid cell lines. Surprisingly, deletion of DNA encoding EHDLER or GPPLSSS from the full LMP1 amino-terminal cytoplasmic domain (MEHDLERGPPGPRRPPRGPPLSSS) had no discernible effect on primary B-lymphocyte transformation. These two motifs distinguish the LMP1 amino-terminal cytoplasmic domain from other arginine-rich membrane proximal sequences that anchor hydrophobic transmembrane domains. Two deletions which included the ERGPPGPRRPPR motif adversely affected but did not prevent transformation. This arginine- and proline-rich sequence is probably important in anchoring the first transmembrane domain in the plasma membrane, since these mutated LMP1s had altered stability and cell membrane localization. The finding that overlapping deletions of the entire amino-terminal cytoplasmic domain do not ablate transformation is most consistent with a model postulating that the transmembrane and carboxyl-terminal cytoplasmic domains are the likely biochemical effectors of transformation.

Amino Acid Sequence↗

Involvement of the cytoplasmic domain of the hemagglutinin-neuraminidase protein in assembly of the paramyxovirus simian virus 5.

Efficient assembly of enveloped viruses at the plasma membranes of virus-infected cells requires coordination between cytosolic viral components and viral integral membrane glycoproteins. As viral glycoprotein cytoplasmic domains may play a role in this coordination, we have investigated the importance of the hemagglutinin-neuraminidase (HN) protein cytoplasmic domain in the assembly of the nonsegmented negative-strand RNA paramyxovirus simian virus 5 (SV5). By using reverse genetics, recombinant viruses which contain HN with truncated cytoplasmic tails were generated. These viruses were shown to be replication impaired, as judged by small plaque size, reduced replication rate, and low maximum titers when compared to those features of wild-type (wt) SV5. Release of progeny virus particles from cells infected with HN cytoplasmic-tail-truncated viruses was inefficient compared to that of wt virus, but syncytium formation was enhanced. Furthermore, accumulation of viral proteins at presumptive budding sites on the plasma membranes of infected cells was prevented by HN cytoplasmic tail truncations. We interpret these data to indicate that formation of budding complexes, from which efficient release of SV5 particles can occur, depends on the presence of an HN cytoplasmic tail.

Amino Acid Sequence↗

Effects of nafoxidine on the luteinizing hormone surge: temporal distribution of estrogen receptors and induction of cytoplasmic progestin receptors in the hypothalamus-preoptic area, pituitary, and uterus of the immature rat.

The antiestrogen nafoxidine 1-(2-[P-(3,4-dihydro-6-methoxy-2-phenyl-1-naphthyl)phenoxy]pyrrolidine hydrochloride; 2 mg/rat), blocked LH surges induced by Silastic implants containing estradiol (E2) in oil (150 micrograms/ml) in the immature female rat and had no stimulatory effect on gonadotropin secretion by itself. Furthermore, the administration of progesterone (P) to rats primed for 24 h with nafoxidine alone or nafoxidine plus E2 did not lead to premature and enhanced LH surges (facilitation) as it does in E2-primed animals. Pituitary LH content was depleted by 30-50% after E2-induced or P-facilitated LH surges, but was unchanged after the administration of nafoxidine or nafoxidine plus E2. To investigate the cellular mechanisms involved, levels of total cytoplasmic and nuclear estrogen receptors and cytoplasmic progestin receptors in the hypothalamus-preoptic area (HPOA), pituitary, and uterus were measured by [3H]E2 or [3H]R5020 (3H-labeled 17,21-dimethyl-19-nor-4,9-pregnadiene-3,20-dione) exchange assays at various times after the administration of E2 and /or nafoxidine. The ability of nafoxidine to bind in vitro to cytoplasmic or nuclear estrogen receptors was, respectively, 4% and 2% (HPOA), 5% and 6% (pituitary), and 1% and 2% (uterus) relative to E2 (100%). After the injection of nafoxidine or the insertion of E2 implants, cytoplasmic estrogen receptors were depleted with a similar time course and remained depressed for at least 48 h in both the HPOA and pituitary. In the uterus, the antiestrogen prevented the replenishment of cytoplasmic estrogen receptors observed in response to E2. Nuclear estrogen receptor levels in the HPOA and pituitary peaked 1 h after E2 and subsequently declined to a plateau from 24-48 h (at 2-4 times the levels found in untreated rats). After nafoxidine, accumulation of these receptors in the nucleus was more gradual and prolonged. Absolute levels of estrogen receptors translocated to the nucleus by E2 or nafoxidine were comparable. E2 treatment led to a substantial induction of cytoplasmic progestin receptors (approximately 2-fold in the HPOA, approximately 4-fold in the pituitary, and approximately 7-fold in the uterus after 48 h), and this process was considerably inhibited by nafoxidine. These results support the notions that antagonism by nafoxidine of estrogen action may be due to a defective association of the antiestrogen-receptor complex with nuclear sites, ad progestin receptor induction may be a prerequisite for the facilitation of gonadotropin surges by P.

Animals↗

Colocalization of cytoplasmic dynein with dynactin and CLIP-170 at microtubule distal ends.

Cytoplasmic dynein is a minus end-directed microtubule motor responsible for centripetal organelle movement and several aspects of chromosome segregation. Our search for cytoplasmic dynein-interacting proteins has implicated the dynactin complex as the cytoplasmic dynein 'receptor' on organelles and kinetochores. Immunofluorescence microscopy using a total of six antibodies generated against the p150Glued, Arp1 and dynamitin subunits of dynactin revealed a novel fraction of dynactin-positive structures aligned in linear arrays along the distal segments of interphase microtubules. Dynactin staining revealed that these structures colocalized extensively with CLIP-170. Cytoplasmic dynein staining was undetectable, but extensive colocalization with dynactin became evident upon transfer to a lower temperature. Overexpression of the dynamitin subunit of dynactin removed Arp1 from microtubules but did not affect microtubule-associated p150Glued or CLIP-170 staining. Brief acetate treatment, which has been shown to affect lysosomal and endosomal traffic, also dispersed the Golgi apparatus and eliminated the microtubule-associated staining pattern. The effect on dynactin was rapidly reversible and, following acetate washout, punctate dynactin was detected at microtubule ends within 3 minutes. Together, these findings identify a region along the distal segments of microtubules where dynactin and CLIP-170 colocalize. Because CLIP-170 has been reported to mark growing microtubule ends, our results indicate a similar relationship for dynactin. The functional interaction between dynactin and cytoplasmic dynein further suggests that this these regions represent accumulations of cytoplasmic dynein cargo-loading sites involved in the early stages of minus end-directed organelle transport.

Animals↗

Evaluation of cytoplasmic genetic effects in beef cattle using an animal model.

Mixed model techniques were used to evaluate the importance of cytoplasmic genetic effects on beef cattle performance. Birth weight (BWT), preweaning average daily gain (ADG), weaning weight (WT205), postweaning gain (PG), ultrasonic backfat thickness (FAT) and predicted milk yield (MILK) data were collected in two herds of Hereford cattle located at Plymouth and Raleigh, North Carolina. Cytoplasmic lines were determined based on the foundation female in the maternal lineage of each animal. An animal model was used to account for all nuclear genetic variation among animals within herds. Direct breeding values were estimated for all animals with records and their parents for all traits. For MILK, permanent environmental effects were estimated for animals with multiple records. For preweaning traits, maternal breeding values and permanent maternal environmental effects also were estimated. In all analyses, F-tests for cytoplasmic effects were not significant. Probability values approached significance (P = .15 to P = .10) only for PG and FAT at Plymouth. Assumptions regarding the ratios of genetic and environmental variances and covariances had no effect on F-tests. Results contrast with earlier analyses of the same data in which nuclear genetic effects were accounted for by including sire and maternal grandsire in the statistical model. This study failed to show that cytoplasmic genetic effects were important sources of variation in performance; residual additive genetic effects were confounded with cytoplasmic lines for these herds. Because cytoplasmic sources may be regarded as founder effects, further research is needed in other populations.

Animals↗

Evaluation of line and breed of cytoplasm effects on performance of purebred Brangus cattle.

Substantial differences between reciprocally crossed Bos taurus x Bos indicus calves for birth, weaning, and yearling weights have been reported. To determine whether cytoplasmic inheritance is responsible for a portion of these differences, field records for birth and weaning weight (n = 7,353) and postweaning average daily gain (n = 2,746) from registered Brangus calves were analyzed. An animal model that included maternal effects was fit for each trait. Breed of cytoplasmic origin was fit as a fixed effect and coded as Angus, Brahman, or unknown. Cytoplasmic line within each breed of origin was treated as a random effect. Variance components for random effects were estimated using derivative-free REML procedures. Line of cytoplasm accounted for less than .002% of the phenotypic variance in all three traits. Estimates for cytoplasmic breed of origin effects were small in magnitude, and contrasts tested (Angus vs Brahman and Angus vs Unknown) were not significant (P > .10). Estimates of heritability of direct (maternal) effects were .36 (.20), .41 (.27), and .21 (.08) for birth weight, weaning weight, and postweaning average daily gain, respectively. Estimates of genetic correlations between direct and maternal effects ranged from -.27 for postweaning average daily gain to -.58 for birth weight. No evidence for breed or line within breed of cytoplasmic origin effects was detected in these data.

Analysis of Variance↗

Estimation of additive maternal and cytoplasmic genetic variances in animal models.

Two pathways for maternal genetic effects to act on production traits are additive maternal and cytoplasmic. Estimation of these variances have generally assumed that the correct maternal pathway is known. A method is described that allows simultaneous estimation of additive maternal and cytoplasmic genetic variances as well as additive direct genetic variances and error variances using an animal model. Data were simulated assuming an additive maternal model, cytoplasmic model, or both. The method was tested by analyzing the data under the true or incorrect maternal model using REML with an animal model that accounted for additive genetic relationships. Additive direct, additive maternal, cytoplasmic, and error variances were correctly partitioned when estimated under the true model. However, when additive maternal or cytoplasmic genetic effects were ignored in the model used for analysis, estimates of additive direct variance were significantly inflated. Also, under an additive maternal genetic model, a small cytoplasmic variance was estimated although none was present in the data.

Analysis of Variance↗

Population replacement in Culex fatigans by means of cytoplasmic incompatibility. 2. Field cage experiments with overlapping generations.

Three experiments were carried out in field cages to test the principle of "transport" of a desirable gene or chromosome into a wild Culex fatigans population as a result of the sterility in cross-matings associated with cytoplasmic incompatibility. Cycling populations of Delhi origin were established in the cages and daily releases were made of the IS31B strain, which has Paris cytoplasm and carries a male-linked translocation. It was shown that, if sufficient releases were made to establish a majority of the Paris cytoplasmic type, complete replacement by this cytoplasmic type subsequently occurred. However, as a result of partial compatibility of males of the Delhi population with Paris females, "recombinant" males with Paris cytoplasm and no translocation were produced. In an experiment in which a continuous low rate of "immigration" of a strain of Delhi origin was simulated, a gradual increase of the Paris cytoplasm nontranslocated type occurred, and renewed IS31B releases were necessary after 5 months to restore the predominance of this type. The results are compared with computer predictions and discussed in relation to the transport of genes for filaria refractoriness or chromosome translocations into wild populations.

Animals↗

Mutants of Escherichia coli defective in membrane phospholipid synthesis. Effect of cessation of net phospholipid synthesis on cytoplasmic and outer membranes.

The effect of cessation of net phospholipid synthesis on the cytoplasmic and outer membranes of Escherichia coli was investigated in a mutant strain defective in the first enzyme of phospholipid synthesis, the sn-glycerol-3-phosphate (glycerol-P) acyltransferase. The glycerol-P (glycerol) auxotropic phenotype of this strain resulted from an altered membranous glycerol-P acyltransferase activity with an apparent Km for glycerol-P 10 times higher than that of the parental activity. When net phospholipid synthesis was halted during glycerol deprivation, both soluble and cell envelope protein synthesis continued. Fractionation of the membranes derived from glycerol-supplemented and glycerol-deprived cultures by isopycnic banding in sucrose gradients revealed that both the cytoplasmic and outer membranes of the deprived culture banded at higher buoyant densities. The protein/phospholipid ratio of both the cytoplasmic and outer membranes increased approximately 60% during the period of glycerol deprivation. The distribution of two cytoplasmic membrane activities, NADH oxidase and 1-acylglycerol-P acyltransferase, and an outer membrane activity, phospholipase A1, showed that the total membranes derived from glycerol-deprived cultures were separated cleanly into cytoplasmic and outer membrane fractions. Both cytoplasmic and outer membrane proteins were synthesized and integrated into their respective membranous structures when net phospholipid synthesis was halted. Hence, the biosynthesis of membrane phospholipid and membrane protein are not tightly coupled. Further, these data suggest that cellular control mechanisms exist which maintain the protein content of both membranous structures below the point where they are saturated with protein.

Bacterial Proteins↗

Evidence that newly synthesized esterified cholesterol is deposited in existing cytoplasmic lipid inclusions.

Esterified cholesterol (EC) and triglyceride (TG) can be stored in cells as cytoplasmic inclusions. The physical state of the EC in these lipid droplets varies from liquid to liquid crystalline, depending on a number of factors, including the amount of TG co-deposited in the inclusion. The lipid in these droplets undergoes turnover via hydrolysis and resynthesis. We determined whether newly synthesized lipid is incorporated into existing cytoplasmic droplets, forms a discrete cytoplasmic droplet, or forms a small inclusion that fuses with an existing droplet. This was accomplished by monitoring the physical state of the lipid within the cytoplasmic inclusions following sequential deposition of TG and EC. Fu5AH cells were initially grown in media containing oleic acid to produce TG-rich, isotropic inclusions. The cells were then incubated with medium containing free cholesterol-phospholipid dispersions to promote synthesis and deposition of EC. To inhibit cytoplasmic TG hydrolysis, the lipase inhibitor, diethylumbelliferyl phosphate (UBP), was added at the time of cholesterol enrichment. The phase behavior of lipid droplets isolated from the lipid-rich cells was determined using polarizing light flow cytometry and microscopy. An anisotropic droplet population (EC-rich inclusions) was not detected, although there was an increase in cellular EC mass and no change in cellular TG mass. Therefore, under conditions where there is no turnover of cytoplasmic TG, newly synthesized EC is incorporated into existing TG inclusions.

Animals↗