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Developmental incompatibility between cell nucleus and cytoplasm as revealed by nuclear transplantation experiments in teleost of different families and orders.

Teleosts from different families and orders were used as materials for nuclear transplantation experiments. (1) The nuclei of goldfish (Carassius auratus, family Cyprinidae, order Cypriniformes) were transplanted into the enucleated egg cytoplasm of loach (Paramisgurnus dabryanus, family Cobitidae, order Cypriniformes) and vice-versa. (2) The nuclei of Tilapia (oreochromis nilotica, order Perciformes) were transplanted into the enucleated egg cytoplasm of goldfish (Carassius auratus, order Cypriniformes). The chromosome number of the nucleus donor fish is different from that of the cytoplasmic recipient fish in each of the two combinations. In the first case, only a few early nucleo-cytoplasmic hybrid (NCH) larval fish were obtained in each combination. In second case, even though a high percentage of NCH blastulas were also obtained, the majority of them died at the same developmental stage, except a few which survived until early gastrula stage. The examination of the metaphase chromosome figures of the NCH blastulas or embryos obtained in all three combinations indicated that they were of nucleus-donor type. The developmental rates of all the NCH eggs were similar to those of cytoplasmic-recipient type. Scanning electronmicroscopy examination showed that the morphology of NCH blastula cells, which were obtained from the combination of Tilapia nucleus and goldfish cytoplasm, manifested obviously abnormal features and the cells were arrested at different stages of cell disintegration. Two-dimension polyacrylamide gel electrophoretograms of the homogenates of Tilapia, goldfish and their NCH blastula cells showed that the protein synthetic pattern of NCH blastula was similar to that of Tilapia nucleus type. The results of experiments which failed to obtain NCH adult fish in all three combinations can be explained as a result of developmental incompatibility between the donor nucleus and the enucleated recipient egg cytoplasm, which were from distantly related fish species. And the chromosome numbers of all the component fish of the three combinations which were examined in the experiment and shown to be quite different from each other in the tested fish, should not be overlooked as one of the essential factors causing the developmental incompatibility in NCH fish in this experiment.

Animals↗

[Effect of thyroid hormones on the nuclear-cytoplasmic transport of RNA].

The regulation of gene expression by hormones can be implemented at different levels: mRNA transcription, processing, transport from the nucleus into the cytoplasm, and translation. In the authors' earlier papers it was shown that the thyroxin hormone-receptor complex (HRC) increased chromatin matrix activity and induced new sites of transcription initiation. The present work was concerned with a study of the role of the thyroxin HRC in the regulation of the mechanism of 3H-RNA transport from the nucleus into the cytoplasm. An idea of the involvement of the HRC cytoplasmic thyroxin in RNA transport resulted from the detection in 30-40 S of RNP particles from rat liver nuclear proteins similar to the thyroxin cytoplasmic receptor by the antigen determinants. These data combined with others on the stimulation of 3H-RNA discharge from isolated nuclei under the influence of the thyroxin cytoplasmic HRC led to a conclusion that the thyroxin cytoplasmic HRC was involved in the regulation of gene expression by the thyroid hormones not only at the stage of transcription but also at the post-transcription stage, namely at the stage of RNA nuclear-cytoplasmic transport.

Animals↗

Heavy metal action on the dry mass content and surface area of nuclei and cytoplasm during differentiation of cortex cells in pea (Pisum sativum L.) roots.

The cortex cells of pea roots (Pisum sativum L.) grown for 144 h in the presence of cadmium, chromium and lead at the concentration 10(-4) M were the object of the present studies. Applied metals reduced dry mass content and concentration of nuclei in meristematic and differentiation zones. Chromium only enhanced nuclear mass concentration in the differentiation zone. The metals also made dry mass content and concentration of cytoplasm reduce, but they diminished mostly the concentration of cytoplasm in the meristematic zone and its dry mass in differentiation zone. Stimulation of cytoplasmic dry mass concentration was visible in the 1st mm (Cr) and 7th mm (Cd). Moreover, chromium caused a marked increase of cytoplasmic dry mass content in the 3rd mm of root. The studied metals reduced nuclear size, calculated as surface area, in the meristematic and differentiation zones. The increment of nuclear dimensions was observed only in the 1-3rd mm (Pb), 3rd (Cr) and 7th mm (Cd). In the presence of the applied metals the surface area of cytoplasm increased only in the 3rd mm and in 5th mm (chromium only). The present observations have shown that the toxicity of studied metals is as follows; Cd greater than Pb greater than Cr (nucleus - dry mass content and concentration, cytoplasmic area), Pb greater than Cd greater than Cr (cytoplasmic dry mass content and concentration and Cd greater than Cr greater than Pb (nuclear dimensions).

Cadmium↗

Cytoplasmic regulation of the duration of cleavage in amphibian eggs.

Relations between a cytoplasmic species specificity and the duration of cleavage cycles were investigated by reciprocal injections of egg cytoplasm. Xenogenic cytoplasm induces an early or delayed cleavage of the recipient egg depending on the chronological specificity of the injected cell cytoplasm. Activity of the so-called cleavage timing system (CTS) was first detected in the cytoplasm of maturing oocytes at the stage of germinal vesicle breakdown (GVBD). This specific cytoplasmic property was not dependent on the maturation promoting factor (MPF). Relations between the CTS and other cytoplasmic components which are known to induce cleavage are discussed.

Animals↗

Uptake and apparent digestion of cytoplasmic organelles by protein bodies (protein storage vacuoles) in mung bean cotyledons.

The large protein bodies of the storage parenchyma cells of mung bean (Vigna radiata) cotyledons contain vesicles measuring 0.2 to 2.0 mum in diameter. The vesicles contain ribosomes, ribosomes, membranous elements which may be derived from the endoplasmic reticulum and occasionally Golgi bodies and mitochondria. The vesicles can be seen by transmission electron microscopy in thin sections of plastic embedded specimens and in replicas of freeze-fractured preparations. Serial sections show that the vesicles are completely separated from the protein body membrane and are not invaginations of that membrane. Vesicles with cytoplasmic structures are seen most frequently in 2 to 4 day old seedlings. The vesicles may be formed when undulations of the protein body membrane are so deep as to permit the pinching-off of a portion of the cytoplasm, resulting in its subsequent isolation from the cytoplasm within the protein body. The digestion of the storage protein in the protein body is accompanied by the disappearance of the ribosomes and the membranous elements in the vesicles. We interpret this disappearance of the cytoplasmic structures in the vesicles as being due to their digestion by the protein body hydrolases (ribonuclease, proteinase and lipolytic enzymes). The uptake of cytoplasmic structures by the protein bodies continues after the reverse proteins have been digested. Cytochemical staining shows that the protein bodies and especially the vesicles are rich in acid phosphatase, a known marker of lytic activity in cells. The evidence presented here indicates that the protein bodies are the intracellular sites at which the digestion of cytoplasmic structure occurs. Protein bodies should therefore be considered not only as compartments for the hydrolysis of the stored protein, but also as autophagic organelles involved in the degradation of cytoplasmic macromolecules. The term protein bodies is well established, but the term protein storage vacuoles may describe these organelles more precisely.

Cytoplasm↗

Identification of hybridomas derived from mouse CD5+ B lymphocytes by fluorescent staining for cytoplasmic CD5 expression.

The production of hybridomas derived from CD5+ B lymphocytes is important for studying the immunoglobulin gene repertoire and antibody specificity of this B-lymphocyte subpopulation. However, hybridomas derived from these lymphocytes invariably lose surface membrane expression of CD5 following hybridization. This impedes the unequivocal assignment of the generated hybridomas to the CD5+ B-lymphocyte subpopulation from unsorted, or partially sorted, cells. Recent studies have shown that mRNA transcripts of the CD5 gene and the protein product can be detected in the cytoplasm of some mouse hybridomas, indicating that although surface expression has been lost, they may have been generated from CD5+ B lymphocytes. These studies, however, have been unable to discount completely the possibility that aberrant cytoplasmic expression of the CD5 gene occurred as a direct consequence of the hybridization process. To confirm that cytoplasmic CD5 expression in the hybridomas is in fact directly related to the B-lymphocyte origin we have generated hybridomas from FACS-sorted CD5+ and CD5- murine splenic B lymphocytes, and determined their surface and cytoplasmic CD5 expression by fluorescence-activated cell sorting. Our findings reveal that all hybridomas derived from CD5+ B lymphocytes (nine hybridomas) were negative for surface but positive for cytoplasmic CD5 expression, whereas all hybridomas derived from CD5- B lymphocytes (nine hybridomas) were negative for both surface and cytoplasmic CD5 expression. This finding shows that staining for cytoplasmic CD5 expression provides an accurate method of determining the cellular origin of murine B-lymphocyte hybridomas.

Animals↗

Integrin alpha v beta 8. Interaction with vitronectin and functional divergence of the beta 8 cytoplasmic domain.

The integrin beta 8 subunit was identified by cloning and sequencing of the cDNA and has been shown to associate with the alpha v subunit (Moyle, M., Napier, M. A., and McLean, J. W. (1991) J. Biol. Chem. 266, 19650-19658). We now present initial data on its functional properties. We produced a recombinant secreted form of alpha v beta 8 and used it to raise monoclonal antibodies that recognize the alpha v beta 8 complex or the beta 8 subunit alone on the surface of melanoma cells and on beta 8-transfected human embryonic kidney (293) cells. Affinity chromatography experiments showed that secreted alpha v beta 8 bound to vitronectin but not to fibronectin, collagen, or fibrinogen. Supporting evidence that intact full-length alpha v beta 8 could also bind to vitronectin-Sepharose was provided by performing affinity chromatography with the melanoma cell line MeWo, which normally expresses the intact beta 8 subunit. By studying the adhesive properties of melanoma cells and beta 8-transfected 293 cells, we found that alpha v beta 8 by itself does not promote cell adhesion on a vitronectin-coated substrate. To test the respective functional activities of the beta 8 extracellular and cytoplasmic domains, we analyzed chimeric beta 8/beta 3 subunit constructs. The beta 3 subunit was chosen because full-length beta 3, when transfected into 293 cells, strongly supports cell adhesion. We found that a chimeric integrin containing the beta 3 extracellular domain combined with the beta 8 transmembrane and cytoplasmic domains did not promote 293 cell adhesion. Conversely, a chimeric integrin construct combining the beta 8 extracellular domain with the beta 3 transmembrane and cytoplasmic domains did promote adhesion of transfected 293 cells. This suggests that the beta 8 cytoplasmic domain does not interact with the cytoskeleton and with cytoplasmic signaling pathways in an adhesion-promoting fashion. We conclude that the beta 8 cytoplasmic domain, which is structurally unrelated to the conserved cytoplasmic domains of other beta subunits, is functionally distinct.

Amino Acid Sequence↗

Effects of alkaline buffers on cytoplasmic pH in lymphocytes.

OBJECTIVE: To study experimentally possible adverse effects of bicarbonate on cytoplasmic pH. DESIGN: Open, randomized control trial of white blood cells from human volunteers. SETTING: Experimental laboratory in a large university hospital. SUBJECTS: Lymphocytes prepared from human blood. INTERVENTIONS: The fluorescent intracellular probe 2',7'-bis-(carboxyethyl)-5,6-carboxyfluorescein acetoxymethyl ester (BCECF-AM) was used to study the influence on cytoplasmic pH after the addition of different alkaline buffers to lymphocytes with normal as well as decreased initial intracellular pH. MEASUREMENTS AND MAIN RESULTS: In normal lymphocytes, sodium bicarbonate caused a marked, dose-dependent acidification of the cytoplasm followed by a slow, often unpredictable increase. Ringer's acetate solution decreased the intracellular pH dose-dependently this acidification effect continued throughout the measurements. In contrast, trometamol (tris) and Carbicarb both caused a pronounced dose-dependent and lasting alkalinization of the cytoplasm. Tris buffer mixture (Tribonate) produced a slight initial dose-dependent acidification, followed by a slow increase in cytoplasmic pH to values above those recorded during control measurements. Lymphocytes that were preincubated in acetate showed similar results after addition of tris buffer mixture or sodium bicarbonate. Lymphocytes with intracellular acidosis due to preincubation in an acid buffer demonstrated a more pronounced and dose-dependent decrease of cytoplasmic pH immediately after addition of the bicarbonate-containing buffers (sodium bicarbonate and tris buffer mixture). The decrease was only partly compensated for over the next 10 mins. Only the buffers that were not producing CO2 could fully compensate for the severe extra- and intracellular acidosis imposed on the lymphocytes by preincubation in an acid medium. CONCLUSION: Use of bicarbonate-containing buffers often results in an initial decrease of cytoplasmic pH.

Buffers↗

Cytoplasmic elongation and rupture in megakaryoblastic leukemia cells via activation of adhesion and motility by staurosporine on fibronectin-bound substratum.

Human megakaryoblastic leukemia Meg-01 cells were attached to fibronectin (FN)-coated substratum, on which remarkable spreading and cytoplasmic elongation was induced by treatment with a protein kinase inhibitor, staurosporine (stp). This effect was inhibited by RGDS and was also not seen on FN-lacking substratum. The extended cytoplasm had swollen terminals and nodes, which contained GpIIb and beta-thromboglobulin, occasionally included alpha granules, and tended to form particles (2-5 microm) after rupture of the narrowed cytoplasm. Among other protein kinase modulators tested, only K252a promoted the elongation, while calphostin, herbimycin, TPA, and calyculin suppressed it. The cells began to migrate soon after addition of stp, with attachment to the substratum held at some sites during the migration. This tethered movement seemed to cause the cytoplasmic elongation and the rupture into particles. The elongation was retarded by pretreating the cells with cytochalasin A and Clostridium C3 toxin but not with demecolcine. Actin microfilaments in the stp-treated Meg-01 cells accumulated in the filopodia and periphery of the extended cytoplasm, in which vinculin was colocalized as adhesion plaques. The microtubules were longitudinally oriented through the cytoplasmic extension and showed no ring profile in the nodes and particles. Thus, stp in the presence of FN appears to stimulate reorganization of actin-based cytoskeleton and formation of focal contacts in Meg-01 cells. This leads to the activation of cell adhesion and motility, and then cytoplasmic elongation and rupture into particles.

Animals↗

Targeting of a lysosomal membrane protein: a tyrosine-containing endocytosis signal in the cytoplasmic tail of lysosomal acid phosphatase is necessary and sufficient for targeting to lysosomes.

Lysosomal acid phosphatase (LAP) is synthesized as a transmembrane protein with a short carboxy-terminal cytoplasmic tail of 19 amino acids, and processed to a soluble protein after transport to lysosomes. Deletion of the membrane spanning domain and the cytoplasmic tail converts LAP to a secretory protein, while deletion of the cytoplasmic tail as well as substitution of tyrosine 413 within the cytoplasmic tail against phenylalanine causes accumulation at the cell surface. A chimeric polypeptide, in which the cytoplasmic tail of LAP was fused to the ectoplasmic and transmembrane domain of hemagglutinin is rapidly internalized and tyrosine 413 of the LAP tail is essential for internalization of the fusion protein. A chimeric polypeptide, in which the membrane spanning domain and cytoplasmic tail of LAP are fused to the ectoplasmic domain of the Mr 46 kd mannose 6-phosphate receptor, is rapidly transported to lysosomes, whereas wild type receptor is not transported to lysosomes. We conclude that a tyrosine containing endocytosis signal in the cytoplasmic tail of LAP is necessary and sufficient for targeting to lysosomes.

Acid Phosphatase↗

The influenza virus hemagglutinin cytoplasmic tail is not essential for virus assembly or infectivity.

The influenza A virus hemagglutinin (HA) glycoprotein contains a cytoplasmic tail which consists of 10-11 amino acids, of which five residues re conserved in all subtypes of influenza A virus. As the cytoplasmic tail is not needed for intracellular transport to the plasma membrane, it has become virtually dogma that the role of the cytoplasmic tail is in forming protein-protein interactions necessary for creating an infectious budding virus. To investigate the role of the HA cytoplasmic tail in virus replication, reverse genetics was used to obtain an influenza virus that lacked an HA cytoplasmic tail. The rescued virus contained the HA of subtype A/Udorn/72 in a helper virus (subtype A/WSN/33) background. Biochemical analysis indicated that only the introduced tail- HA was incorporated into virions and these particles lacked a detectable fragment of the helper virus HA. The tail- HA rescued virus assembled and replicated almost as efficiently as virions containing wild-type HA, suggesting that the cytoplasmic tail is not essential for the virus assembly process. Nonetheless, a revertant virus was isolated, suggesting that possession of a cytoplasmic tail does confer an advantage.

Amino Acid Sequence↗

Residues of the cytoplasmic domain of MotA essential for torque generation in the bacterial flagellar motor.

The MotA protein of Escherichia coli is a component of the flagellum that functions, together with MotB, in transmembrane proton conduction. MotA and MotB are believed to form the stator of the flagellar motor. They are integral membrane proteins; MotA has a large (ca 22 kDa) domain in the cytoplasm, and MotB a much smaller one (ca 3 kDa). Recent work suggests that cytoplasmically located parts of MotA and/or MotB might be present at the active site for torque generation in the motor. To test the proposal that the cytoplasmic domain of MotA functions in torque generation, and to identify the amino acid residues most important for function, we have carried out a mutational analysis of this domain. Using random mutagenesis, many mutations of cytoplasmic residues of MotA were isolated, which either abolish or impair torque generation. In most cases the residues affected are not conserved, and many of the replacements involve loss or gain of a proline residue, which suggests that these mutations disrupt function by altering the protein conformation rather than by directly affecting residues of an active site. Using site-directed mutagenesis, the conserved residues in the cytoplasmic domain of MotA were replaced, either singly or, in the case of charged residues, in various combinations. The results identify four residues of MotA that are important for motor function. These are Arg90 and Glu98, located in the cytoplasmic domain, and Pro173 and Pro222, located at the interface between the cytoplasmic domain and the membrane-spanning domain. Possible roles for these residues in torque generation are discussed.

Amino Acid Sequence↗

Vesicular stomatitis virus glycoprotein containing the entire green fluorescent protein on its cytoplasmic domain is incorporated efficiently into virus particles.

The envelope glycoprotein (G) of vesicular stomatitis virus (VSV) contains a short cytoplasmic domain of 29 amino acids. To determine whether VSV particle assembly could accommodate a G protein with a large cytoplasmic domain, we constructed a gene called G/GFP encoding the VSV G protein with the 27-kDa green fluorescent protein linked to its cytoplasmic domain. This gene was inserted into the infectious clone of VSV and we recovered a recombinant virus expressing G/GFP from this extra gene. This VSV-G/GFP virus grew to titers equivalent to that of wild-type virus and was stable upon passaging. The G/GFP protein formed mixed trimers containing an average of two wild-type G proteins and one G/GFP protein. This heterotrimeric protein was expressed on the cell surface, and was incorporated into virus particles with almost the same efficiency as wild-type VSV G protein. These results indicate that there is substantial space available between the viral membrane and the nucleocapsid that can accommodate such a large cytoplasmic domain. The green fluorescent virus particles were readily visualized by fluorescence microscopy and had a normal morphology by electron microscopy. To determine whether virus assembly could occur efficiently when all G proteins contained the GFP cytoplasmic domain, a VSV recombinant in which the G gene was completely replaced by the VSV-G/GFP gene was recovered. This virus rapidly lost expression of the GFP protein sequence through introduction of a stop codon within the sequence encoding the G cytoplasmic domain, indicating strong selection against homotrimeric G protein bearing such a large cytoplasmic domain.

Animals↗

Shedding of peripheral cytoplasm - a mechanism of liver cell atrophy in human amyloidosis.

A liver biopsy specimen from a case of primary amyloidosis was investigated by electron microscopy. The cytoplasmic periphery of the hepatocytes showed degenerativechanges which are interpreted as indicating shedding of peripheral parts of the cytoplasm. Two main variants of this process could be discerned: 1) Protrusion and sequestration of hernia-like blebs of cytoplasm, and 2) shedding of vesicles derived from degenerated endoplasmic reticulum. In the latter case transient defects of the plasma membrane seem to be relevance. Endoplasmic reticulum and cytoplasmic ground substance appeared to be shed preferentially, whereas mitochondria are retained within the cell. As a consequence the fractional volume of the mitochondria in the cytoplasm of atrophic cells is markedly increased. Shedding of peripheral cytoplasm, therefore, seems to be an effective mechanism enabeling the cell to adapt the mass and the composition of its cytoplasm to an unfavourable environment.

Amyloidosis↗

Structural heterogeneity of the cytoplasmic and outer membranes of Escherichia coli.

The cytoplasmic and outer membranes of gram-negative bacteria can be isolated from spheroplasts, and separated on sucrose density gradients. Lysis of spheroplasts causes extensive membrane fragmentation and since the characteristics of the fragments obtained by different lysis procedures need not be identical, the influence of the disruption method on membrane composition has been examined. Spheroplasts of Escherichia coli J5 were lysed by osmotic shock, which did not significantly separate the cytoplasmic and outer membranes, but resulted in mixed membrane vesicles. Lysis in the French press and by sonication caused extensive membrane fragmentation and separation. Sonication, however, also caused some fusion between fragments of the outer and the cytoplasmic membranes; this intermembrane fusion increased with sonication time. When the cytoplasmic and outer membranes were well separated and intermembrane fusion was minimal or absent, the cytoplasmic and outer membrane fragments were heterogeneous with respect to density and ovarll phospholipid, protein and lipopolysaccharide composition. In addition, cytoplasmic, but not outer, membrane fragments were also heterogeneous with respect to protein composition. It is concluded, therefore, that membrane fragments obtained from the cytoplasmic and outer membranes are heterogeneous independently of the lysis procedures used to obtain these fragments. Possible reasons for this heterogeneity are discussed.

Bacterial Proteins↗

The effects of ropy-1 mutation on cytoplasmic organization and intracellular motility in mature hyphae of Neurospora crassa.

We have used light and electron microscopy to document the cytoplasmic effects of the ropy (ro-1) mutation in mature hyphae of Neurospora crassa and to better understand the role(s) of dynein during hyphal tip growth. Based on video-enhanced DIC light microscopy, the mature, growing hyphae of N. crassa wild type could be divided into four regions according to cytoplasmic organization and behavior: the apical region (I) and three subapical regions (II, III, and IV). A well-defined Spitzenkörper dominated the cytoplasm of region I. In region II, vesicles ( approximately 0.48 micro m diameter) and mitochondria maintained primarily a constant location within the advancing cytoplasm. This region was typically void of nuclei. Vesicles exhibited anterograde and retrograde motility in regions III and IV and followed generally parallel paths along the longitudinal axis of the cell. A small population of mitochondria displayed rapid anterograde and retrograde movements, while most maintained a constant position in the advancing cytoplasm in regions III and IV. Many nuclei occupied the cytoplasm of regions III and IV. In ro-1 hyphae, discrete cytoplasmic regions were not recognized and the motility and/or positioning of vesicles, mitochondria, and nuclei were altered to varying degrees, relative to the wild type cells. Immunofluorescence microscopy revealed that the microtubule cytoskeleton was severely disrupted in ro-1 cells. Transmission electron microscopy of cryofixed cells confirmed that region I of wild-type hyphae contained a Spitzenkörper composed of an aggregation of small apical vesicles that surrounded entirely or partially a central core composed, in part, of microvesicles embedded in a dense granular to fibrillar matrix. The apex of ro-1 the hypha contained a Spitzenkörper with reduced numbers of apical vesicles but maintained a defined central core. Clearly, dynein deficiency in the mutant caused profound perturbation in microtubule organization and function and, consequently, organelle dynamics and positioning. These perturbations impact negatively on the organization and stability of the Spitzenkörper, which, in turn, led to severe reduction in growth rate and altered hyphal morphology.

Cytoskeleton↗

Regulation of polyribosome formation and protein synthesis in the uterus. Effect of ovariectomy and administration of oestradiol-17beta on the amino acid-incorporation activity in vitro and the cytoplasmic concentration in vivo of polyribosomal preparation.

1. The hormonal regulation of cytoplasmic protein synthesis in the uterus is described. Polyribosomal preparation from uteri of normal or ovariectomized rats was isolated by procedure 3 and assayed for [(14)C]leucine-incorporation activity in the cell-free system, as described by Teng & Hamilton (1967). 2. Ovariectomy of normal animals caused, 3 weeks after surgery, a 50-60% increase in the amino acid-incorporation activity in vitro of uterine polyribosomal preparation, but a 90-95% decrease in the cytoplasmic concentration in vivo of the preparation. 3. Administration of 10mug. of oestradiol-17beta to ovariectomized rats at zero time caused, 10-12hr. later, a 100% stimulation in amino acid-incorporation activity in vitro of the uterine polyribosomal preparation. From 12hr. to 36hr. after hormone administration, the activity in vitro of the preparation decreased. If a second dose of hormone was administered at 36hr., the activity in vitro of the preparation continued to decrease, and approached at 48hr. and 72hr. the lower activity observed for the preparation from normal animals. The cytoplasmic concentration of polyribosomal preparation increased by 600-700% under these experimental conditions. If a second dose of oestradiol-17beta was not administered at 36hr., the initially elevated cytoplasmic concentration of the preparation decreased by 50% from 36hr. to 72hr., and the activity in vitro of the preparation was not fully depressed to the ;normal' value. 4. Pretreatment of ovariectomized animals with actinomycin D or cycloheximide abolished 80-90% of the stimulatory effects of hormone treatment on the amino acid-incorporation activity in vitro and cytoplasmic concentration in vivo of uterine polyribosomal preparation. 5. Two major conclusions are drawn from the results reported: that during early oestrogen action new polyribosomes having amino acid-incorporation properties different from those of the old ones appear and accumulate in the cytoplasm of the uterus; and that the regulation of cytoplasmic protein synthesis in the organ by oestrogen is of an indirect nature, with dual effects of the hormone on genetic transcription resulting in turn in a regulation of the rate and amount of genetic translation.

Journal Article↗

The p60 tumor necrosis factor (TNF) receptor-associated kinase (TRAK) binds residues 344-397 within the cytoplasmic domain involved in TNF signaling.

The p60 form of the tumor necrosis factor (TNF) receptor lacks motifs characteristic of tyrosine or serine/threonine protein kinases. Our recent observations have indicated that a p60 TNF receptor-associated kinase (p60-TRAK) from U-937 cells physically interacts with and causes the phosphorylation of the cytoplasmic domain of the TNF receptor. To define which region of the cytoplasmic domain is necessary for physical interaction with p60-TRAK, we constructed a series of deletions (grouped into three sets delta 1-delta 5, delta 6-delta 12, and delta 13-delta 16) of the p60 cytoplasmic domain, expressed them as glutathione S-transferase (GST) fusion proteins, and used them in affinity precipitations, followed by in vitro kinase assays. Our detailed analysis indicated that a serine-, threonine-, and proline-rich region (residues 243-274, delta 2) and the N-terminal half of the cytoplasmic domain (residues 243-323, delta 3) neither associated with p60-TRAK nor underwent phosphorylation. We found that out of 222 residues (205-426) in the cytoplasmic domain, only 54 (344-397, delta 12) were sufficient for binding p60-TRAK and for phosphorylation of the cytoplasmic domain. A region of approximately 30 residues (397-426) at the C-terminal end was found to interfere with optimal binding of the p60-TRAK activity. Thus, our results indicate that the minimal region of the cytoplasmic domain necessary for interacting with p60-TRAK and for phosphorylation resides within the domain previously reported to be needed for signaling the cytotoxic effect of TNF.

Binding Sites↗