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Biomedical subjects

P S Gromov

Publications and source records attributed to P S Gromov.

At least 19 recordsLinked to original sources

Human rab11a: transcription, chromosome mapping and effect on the expression levels of host GTP-binding proteins.

Rab11a is a member of the rab-branch of the ras-like small GTP-binding protein superfamily that is associated with both constitutive and regulated secretory pathways. Using a direct procedure for cDNA cloning of small ras-related GTPases, that is based on the screening of eukaryotic cDNA expression libraries using [alpha-32P]GTP as a probe, we have isolated two cDNA clones encoding rab11a. Both clones share identical coding sequences, but differ in the length and sequence of their 3' untranslated regions (3'-UTR). Northern blot hybridisation analysis of various human tissues revealed indeed two mRNA species with lengths of 1.0 and 2.3 kb, respectively. Sequence analysis of the cDNAs identified two different putative polyadenylation signals (AATAAA) at positions 927 and 2302 of the larger transcript. In addition, the 3'-UTR of the larger transcript exhibited several AU-rich elements (ARE) that are believed to control gene expression by regulating the rate of mRNA degradation. Southern blots of human DNA digested with several rare restriction enzymes, and separated by pulse-field gel electrophoresis, yielded the same macro-restriction fragment pattern when hybridised with probes that discriminate between the two transcripts. Taken together, these findings imply that the two mRNA species originate from a single gene, which we have mapped to 15q21.3-q22.31, by the use of different polyadenylation sites. As expected, both rab11a-cDNAs yielded the same protein product when transiently expressed in COS-1 cells, and surprisingly, upregulated the proteome expression profile (de novo synthesis or posttranslational modification of preexisting proteins) of a few other, yet unknown GTP-binding proteins.

Amino Acid Sequence↗

Identification of isoprenyl modified proteins metabolically labeled with [3H]farnesyl- and [3H]geranylgeranyl-pyrophosphate.

Here we describe a direct approach for two-dimensional (2-D) gel mapping of proteins that are modified by post-translational isoprenylation in mammalian cells. Briefly, transformed human amnion cells (AMA) and transfected COS-1 cells were metabolically labeled with either [3H]farnesyl-pyrophosphate or [3H]geranylgeranyl-pyrophosphate following treatment with lovastatin, which blocks the synthesis of mevalonic acid. The proteins were then separated by 2-D gel electrophoresis and electrotransferred to nitrocellulose filters. The membranes were immersed in dimethyl ether, containing 10% of 2,5-diphenyloxazole prior to fluorography. Over 40 [3H]farnesyl-labeled proteins and over 25 [3H]geranylgeranylated proteins were identified on the 2-D autoradiograms. Several [3H]farnesyl-labeled proteins exhibited the same coordinates (M(r) and pI) as their [3H]geranylgeranylated counterparts, raising the possibility that they may be substrates for both farnesyl and geranylgeranyl transferase(s). The approach offers high resolution of both farnesylated and geranylgeranylated proteins and it may serve as a powerful tool for the identification of hitherto unknown prenylated proteins as well as for the determination of prenylated protein levels, type of isoprenoid modification, and possible changes in protein prenyltransferase activity.

Amnion↗

A novel approach for expression cloning of small GTPases: identification, tissue distribution and chromosome mapping of the human homolog of rheb.

We report a novel approach for identifying monomeric GTP-binding proteins that is based on probing cDNA expression libraries with [alpha-32P]GTP. In short, a nitrocellulose replica from a plated cDNA expression library is treated with 2% SDS to block the GTP-binding activity of various G proteins expressed by E. coli, thus allowing the direct identification of positive clones. Using this procedure we have cloned several small GTP-binding proteins from human keratinocytes including the human homolog of rheb, a novel member of the ras-related GTP-binding proteins. Human rheb cDNA shares 90% identity with the rat counterpart and it is highly upregulated in transformed human cells of various origin. Northern analysis showed that human rheb is ubiquitously expressed, with the highest levels observed in skeletal and cardiac muscle, and not in brain, as it is the case for rat rheb. The human RHEB gene was mapped to chromosome 10q11.

Amino Acid Sequence↗

[Study of protein products of gene expression in cells with altered chromosome sets for genetic mapping].

Two-dimensional electrophoresis was used for analyzing proteins in hybrid cells that contained single human chromosomes (chromosome 5, chromosome 21, or chromosomes 5 and 21) against the background of the mouse genome. By comparing the protein patterns of hybrid and parent cells (about 1000 protein fractions for each kind of cell), five fractions among proteins of hybrid cells were supposedly identified as human proteins. The genes of two of them are probably located on chromosome 5, and those of other three, on chromosome 21. Moreover, analysis of proteins in fibroblasts of patients with the cri-du-chat syndrome (5p-) revealed a decrease in the content of two proteins, as compared with those in preparations of diploid fibroblasts. This fact was regarded as evidence that two corresponding genes are located on the short arm of chromosome 5. Methodological problems associated with the use of protein pattern analysis in cells with altered chromosome sets for the purposes of genetic mapping are discussed.

Animals↗

Identification of two molecular chaperons (HSX70, HSC70) in mature human erythrocytes.

Two-dimensional gel electrophoresis of cytosolic proteins from mature human erythrocytes combined with immunoblotting revealed the presence of a group of heat shock proteins (HSPs) that included two molecular chaperons of the HSP70 family (HSX70, inducible; HSC70, constitutively expressed) and HSP90. As expected for cells devoid of organelles, erythrocytes do not contain stress proteins that are localized either in the mitochondria (HSP60, glucose-regulated protein (GRP 75) or in the endoplasmic reticulum (GRP78 or Ig heavy chain-binding protein, endoplasmin). Since red cells are unable to replace proteins whose structure has been damaged by environmental changes the results are taken to imply a role for chaperons in monitoring, protecting, and maintaining the structure and stability of erythrocyte proteins.

Electrophoresis, Gel, Two-Dimensional↗

Endogenous proteolysis of the human erythrocyte membrane as studied by two-dimensional gel electrophoresis and electron spin resonance.

1. Endogenous proteolysis in human erythrocyte membranes was studied in human erythrocyte membranes incubated at 37 degrees C by monitoring changes in 2-D electrophoretic pattern of membrane polypeptides and in the spectra of maleimide-spin labeled membranes. 2. A strong effect of exogenous proteases derived from contaminating other blood elements was found, resulting in formation of specific spots on 2-D electropherograms, requiring very careful leukocyte removal in investigations of red cell membrane protein composition and proteolysis. 3. Studies of the effects of protease inhibitors and Ca2+ confirmed a complex pattern of endogenous red cell membrane proteolysis ("self-digestion") involving many substrates and enzymes. 4. A promoting effect of high concentrations (150 mM) of Ca2+ on endogenous red cell membrane proteolysis was found.

Blood Proteins↗

[Characteristics of endogenous proteolysis in preparations of human erythrocyte membranes].

Endoproteolytic activity in human erythrocyte membrane preparations has been examined at 37 degrees C by one- and two-dimensional electrophoresis. Two-dimensional mapping has shown that the presence of leukocyte enzymes in erythrocytes prepared in a regular manner (centrifugation) cannot be excluded. Sedimentation in the 1.5% dextran 500,000 with the following erythrocyte purification on HBS-cellulose has made it possible to prepare erythrocyte membranes characterized by low level endoproteolytic activity without leukocyte enzymes. The marker peptide has been found. It is likely to be a specific product of the enzyme activity of membrane localization.

Cell Fractionation↗

[Two-dimensional map of membrane proteins from human erythrocytes].

Human erythrocyte membrane proteins were analyzed by a modified two-dimensional electrophoresis performed according to O'Farrell. This method was used to construct a two-dimensional map of human erythrocyte membrane proteins. The map plotted in the coordinates "relative molecular mass versus relative electrophoretic mobility during IEF" was used for the characterization of 189 proteins. The position of major membrane proteins in the map was determined on the basis of their Mr, pI as well as literature data. Carboanhydrase was positioned by coelectrophoresis. A comparative analysis of erythrocyte membrane and cytosol preparations by two-dimensional protein mapping revealed that some of erythrocyte proteins have dual localization.

Electrophoresis, Gel, Two-Dimensional↗

[Detection of the interstrain polymorphism of heart muscle proteins in mice using two-dimensional electrophoresis].

Cardiac muscle proteins of four inbred murine strains were analyzed by one- and two-dimensional electrophoresis. Of those, 27 and 161 protein fractions were characterized in terms of molecular mass and relative electrophoretic mobility. The protein fractions were identified as corresponding to creatine phosphokinase, myoglobin and an albumin-like protein. Six polypeptides characterized by interlinear polymorphism were identified.

Animals↗

[Study of human erythrocyte membrane proteins by 2-dimensional electrophoresis].

Fractionation of human erythrocyte membrane proteins was performed using a modification of two-dimensional gel electrophoresis described by P. O'Farrel with isoelectric point plotted against molecular mass. All major erythrocyte proteins, including high molecular weight proteins, such as spectrin and band 3 protein, identified by one-dimensional sodium dodecyl sulfate gel electrophoresis, were visualized by silver staining of two-dimensional gels. All in all about 50 polypeptides were distinguished on two-dimensional electrophoretic patterns. Preliminary protein map was developed.

Blood Protein Electrophoresis↗

[Electrophoretic analysis of the characteristics of the protein composition of leukocytes from Down's syndrome patients].

Protein with a molecular mass of 53000 daltons undetectable in healthy persons was identified by electrophoresis in peripheral blood leukocytes of patients with Down's syndrome. The protein was completely extracted with 0.4 N HCl from leukocyte homogenates and was found to be identical, as regards electrophoretic mobility, to protein detected in two patients with chronic myeloblastic leukemia. The causes of discrepancy between theoretically expected and electrophoresis-revealed differences in protein composition of normal and trisomal cells.

Adolescent↗

[Effect of the supranucleosomal chromatin organization on histone-DNA interrelations].

It has been demonstrated by the method of competitive displacement of own chromatin histone by excess total histone that chromatin dispersity influence the strength of histone-DNA interactions in a medium of physiological ionic strength. Histone NI was removed from chromatin after the quantity of total histone added to chromatin was equivalent to that existing in chromatin. The proportion of histones H2A and H2B removed from chromatin was increased after mechanical of ultrasonic degradation of chromatin at 5-20-fold excess of total extra-histone. In some histone preparations, the removal of histones H2A and H2B was not detectable at even 200-fold excess of total histone. This may be explained by strengthening histone-DNA interactions in superhelical loops of chromatin.

Animals↗

[Histone competition for DNA and its possible role in the self-assembly of eu- and heterochromatin].

Electrophoretic analysis of histones bound to DNA and remaining free in the mixtures of DNA with the total histone of chromatin in a medium of physiological ionic strength has shown that even the minimal weight excess of the total histone with reference to DNA (1.1:1) leads to the formation of nucleohistone impoverished in HI fraction because of histone competition for DNA. Within the histone/DNA ratio equal to 1.4, H3, H4, H2A and H2B are bound to DNA without competition, i.e. at a ratio in which they are added to DNA. Provided the histone/DNA ratio is higher in the mixture, there form nucleohistones enriched with H3 and H4 fractions. The role of histone competition for DNA in eu- and heterochromatin assembly is discussed.

Animals↗

[Changes in the protein composition of chromatin in the presence of supplementary total histone].

Relationships have been studied between call thymus chromatin isolated in a medium of low ionic strength (0.7 mM Na-phosphate buffer, pH 7) and total histone which was added in different amounts (up to a 40-fold excess) with respect to chromatin DNA. The maximum protein/DNA ratio in chromatin-histone complexes being formed was 3.27. It has been demonstrated for the first time that with an elevation in the amount of supplementary total histone there took place a release of natural histones of chromatin, first of HI and then of H2A and H2B. It is concluded that supplementary histone interacts with DNA, modifying its interplay and chromatin protein even though the dissociation is not fixed yet.

Chemical Phenomena↗

On mechanisms determining the interrelationships between DNA and histone components of chromatin.

The relative affinity of histones for DNA was studied by the analysis of competitive histone binding to DNA in whole histone/DNA mixtures at physiological and low ionic strengths as well as in water. Use of polyphosphate in similar experiments, as a model of DNA deprived of hydrophobic functional groups allowed us to reject the hypothesis that hydrophobic DNA-histone interaction plays a decisive role in the determination of the relative affinity of histones for DNA, because the orders of histone preference for DNA and for polyphosphate were the same. The relative histone affinity for DNA does not depend on the secondary structure of DNA or on the ionic strength of salt solutions, though the differences in the histone affinities for DNA decrease on lowering the salt concentration. The binding orders of the first and the last molecules of histone type to DNA, studied at various DNA/histone ratios in the medium of physiological ionic strength, are the following: H3+H4, H2A+H2B, H1 and H3+H4, H2A, H2B, H1. In water the binding orders of the first and the last histone molecules to DNA are identical: H3+H4, H2A, H2B+H1. It is concluded that the relative histone affinity for DNA in water/salt solutions is determined by non-ionic interactions between histones bound to DNA. The folding of DNA induced by histone-histone interaction seems to lead to the increase in the correlation between amino acid residues in the histone regions bound to DNA and the ionic DNA-histone interaction becoming stronger.

Animals↗

[Is the binding strength of histone fractions with DNA different?].

The dissociation of histones H1, H2B and H2A from DNA was shown for the first time in the medium of physiological ionic strength (0.15M NaCl + 0.7 mM Na-phosphate buffer, pH 7.0) by treating the whole histone--DNA complex with high concentrations of whole histone from calf thymus chromatin. The histones can be separated into three groups according to the strength of their binding to DNA: H1 < H2B + H2A < H3 + H4. It is suggested that histone octamer is not a conservative formation and the histone content of nucleosomes may change under physiological conditions being affected by competition of chromatin components for DNA.

Animals↗