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Biomedical subjects

C Cochet

Publications and source records attributed to C Cochet.

At least 109 records · Page 6Linked to original sources

Oligomeric structure and catalytic activity of G type casein kinase. Isolation of the two subunits and renaturation experiments.

Casein kinase G purified from bovine tissue is an oligomeric cyclic nucleotide-independent protein kinase made of two different monomers, namely an alpha (Mr = 38 kilodaltons) and a self-phosphorylatable beta (Mr = 27 kilodaltons) subunit. Treatment of the native enzyme under denaturing conditions (0.5 M NaCl, 4 M LiCl, and 20 to 35% formamide) resulted in a progressive selective removal of the beta subunit following gel filtration and a correlated loss of activity of the corresponding renatured enzyme. Mild digestion with papain resulted in a proteolytic alteration limited to the beta monomer with a concomitant partial loss of the enzyme activity. Isolation of the alpha and beta casein kinase G subunits was achieved by preparative reversed polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate. Renaturation of the proteins following sodium dodecyl sulfate removal by acetone and/or Triton X-100 treatment allowed reconstitution of a functional casein kinase G. Whereas the isolated alpha subunit was found to exhibit a weak catalytic activity, addition of the beta subunit was required for recovery of a maximal casein kinase activity. The process was dose-dependent and reached a plateau for an alpha:beta subunit molar ratio of approximately 1 to 1. These data suggest that while the casein kinase G alpha subunit bears the catalytic site, stoichiometric combination with the beta subunit is required for optimal enzymatic activity. A possible role of the beta subunit as a regulatory component of casein kinase G activity in the intact cell remains to be examined.

Animals↗

Gene mapping of the gibbon. Its position in primate evolution.

Comparative karyotyping of the Hylobatidae has revealed only very few chromosome homoeologies with other primates. Their position in the phylogenetic tree thus remains uncertain. With the hope that comparative gene mapping might allow overcoming these difficulties, somatic cell hybrids were obtained by fusion of fibroblasts from a Hylobates (Nomascus) concolor and cells from a HPRT-Chinese hamster cell line. Of 34 investigated enzyme markers, 20 could be mapped, and 7 syntenies were established. When compared with man, there were 7 synteny disruptions. These results strongly suggest that the Hylobatidae diverged from the common stem leading to the Pongidae after the Cercopithecoidae had diverged.

Animals↗

Polyamine-mediated protein phosphorylations: a possible target for intracellular polyamine action.

Polyamines are well-known ubiquitous components of living cells. Although these polycations have been implicated in the regulation of major cellular functions such as DNA, RNA and protein synthesis occurring during cellular proliferation and/or differentiation processes, their mechanism of action at the molecular level has remained obscure. On the other hand, protein phosphorylation has emerged as a regulatory process of prime importance in cellular regulation. Data have recently been presented suggesting that polyamines may express at least part of their biological action through an effect upon selective protein phosphorylation systems. Two types of polyamine-sensitive protein kinases have been characterized in the last few years. The best known in molecular terms is the widespread casein kinase G (also termed casein kinase II), which represents a multifunctional protein kinase, at present classified as a messenger-independent activity. The other is a polyamine-dependent nuclear ornithine decarboxylase kinase characterized in Physarum polycephalum and several mammalian tissues. Both protein kinases are activated by polyamines in vitro at concentrations compatible with a physiological role, by a mechanism which most likely also involves an effect through the protein substrate conformation. Preliminary evidence suggests that both kinases may be implicated in the regulation of DNA-dependent RNA polymerase activities, although several other potential substrates have been suggested for casein kinase G. Another suggestion is that these kinases may also participate in the post-translational regulation of ornithine decarboxylase, the rate-limiting step in the polyamine biosynthetic pathway. A novel class of protein kinase activities may thus be defined as polyamine-mediated phosphorylation systems for which polyamines may function as intracellular messenger. Although their biological significance remains to be fully established, especially with regard to the definition of their specific intracellular target(s) and subsequent biological functions, these systems will be interesting to consider in future studies aimed at understanding the role of polyamines in cell regulation.

Adrenal Cortex↗

Characterization of a cyclic nucleotide-independent protein kinase highly active in human adrenocortical carcinoma.

Study of the protein kinase activity pattern of four human adrenocortical carcinoma showed that in all the samples examined a histone kinase (HK III) activity was present at high level, whereas it was barely detectable in normal tissue. HK III was separated from other known adrenocortical protein kinases by diethylaminoethyl cellulose chromatography. Isolated HK III exhibited a histone (H2B) protamine-phosphotranferase selectivity and used adenosine triphosphate but not guanosine triphosphate as phosphate donor. Serine was identified as the only target amino acid phosphorylated in the protein substrate. HK III showed an apparent molecular weight of 65,000 upon gel filtration and an apparent sedimentation coefficient of 3.7S. HK III activity was cyclic adenosine 3':5'-monophosphate independent and was not influenced by calcium, calmodulin, polyamines, and heparin. The significance of HK III activity in adrenocortical carcinoma extracts at a high level as compared to that of normal tissue remains to be clarified with regard both to its possible relationship with tumoral cell growth and differentiation processes and to its potential interest as a marker of human tumoral tissue activity.

Adrenal Cortex Neoplasms↗

New gene assignments in the baboon and new chromosome homoeologies with man.

Eight new gene assignments were demonstrated in the baboon (Papio papio, PPA) by cosegregation analysis of twelve hybrid clones obtained by fusion between PPA fibroblasts and a mouse cell line deficient in thymidine kinase. The following markers and syntenic groups were assigned: SOD1 to PPA3, GLO-ME1 to PPA-4, PGM2 to PPA5, CKBB-SORD to PPA7, LDHB to PPA11 and LDHA to PPA14. These localizations are in agreement wit hthe following homoeologies with the human karyotype: PPA3-HSA21, PPA4-HSA6, PPA5-HSA4, PPA7-HSA14 and 15, PPA11-HSA12, PPA14-HSA11.

Animals↗

[Tiapride and pain in amputees].

Missing limb pain remains a preoccupying and worrisome problem for amputees. Approximately one-third of amputees experience missing limb pain. Although it often abates with time, this pain disables the patient in the first few months following amputation. We carried out a therapeutic trial of oral tablets of tiapride, which was given to twenty patients in three daily doses of 50 to 100 mg each. Tiapride was the sole medication in most instances. Analgesia appeared after an interval of 24 hours to 15 days. Clinical tolerance was excellent. Efficiency in terms of resolution of pain is observed in most cases.

Adult↗

Selective inhibition of a cyclic nucleotide independent protein kinase (G type casein kinase) by quercetin and related polyphenols.

The effect of quercetin and a number of structurally related phenolic compounds upon the activity of three different purified protein kinases was examined. Whereas the catalytic subunit of a cyclic AMP-dependent protein kinase and an A type (using only ATP) cyclic nucleotide-independent casein kinase (CKA) were not affected, a G type (using GTP as well as ATP) casein kinase (CKG) was selectively inhibited by several bioflavonoid structures. Kinetic studies showed that quercetin behaved as a competitive inhibitor toward the nucleotidic substrate and exhibited a high affinity for the ATP (Ki = 0.75 microM) and GTP (Ki = 0.22 microM) site of the enzyme. Considering the CKG inhibitory potency of a series of flavonoid, cinnamic acid and coumarin derivatives, it is suggested that the biological activity lays upon a common structural feature involving a phenolic ring bearing a side chain with conjugated double bonds and an oxygenated function, as found in the coumaroyl residue. These observations suggest that quercetin and related compounds may lead to a shift in intracellular protein phosphorylations by selectively inhibiting a particular type of protein kinase activity (CKG). It remains to be established whether this process may contribute to the mechanism of action of flavonoids upon cellular metabolism, particularly in the case of malignant cells.

Adrenal Cortex↗

Gene mapping of Microcebus murinus (Lemuridae): a comparison with man and Cebus capucinus (Cebidae).

The karyotype of microcebus murinus (MIM) (lemuridae) is considered by Dutrillaux (1979) as the closest to the karyotype ancestral to all primates. A large number of homoeologies exists between the banding patterns of MIM chromosomes and those of man (HSA). We report a comparison of the gene maps of these two species which confirms most of these homoeologies. Fifteen cell hybrids were obtained by fusing MIM fibroblasts and an HPRT- Chinese hamster cell line. Twenty-seven enzyme markers were investigated. The following assignments were demonstrated: NP to chromosome MIM 2, homoeologous to HSA 14; the syntenic group PGD-ENO1-PGM1 to MIM 3, homoeologous to HSA 1p; LDHA to MIM 5, homoeologous to HSA 11; Me1 to MIM 6, homoeologous to HSA 6; the syntenic group LDHB-CS-PEPB-ENO2-TPI to MIM 7, homoeologous to HSA 12; the syntenic group AK1-AK3 to MIM 10, which we considered to be homoeologous to HSA 9 (we do not consider MIM 9 to be homoeologous to HSA 9, as does Dutrillaux, 1979); GOT1 to MIM 15, homoeologous to HSA 10; the syntenic group HPRT-G6PD-PGK-GLA to MIM X. Synteny dissociation in three hybrids suggests closer linkage between G6PD and HPRT than between PGK-GLA and HPRT. Three syntenic groups, known in man, were confirmed in MIM but could not be assigned with full confidence: ACP1-MDH1, MP1-PKM2, and PEPD-GPI. GUK1 and PEPC, known to be syntenic in man, were found to be asyntenic in MIM and could not be assigned. PGM2 and SOD1 could not be assigned. A comparison of these gene assignments with those known in Cebus capucinus showed a remarkable homoeology for six chromosomes of the two species.

Animals↗

Comparative gene mapping of the baboon (Papio papio) and man.

Seven new gene assignments were demonstrated in the baboon (Papio papio) by cosegregation analysis of twelve cell hybrids obtained between PPA fibroblasts and a mouse cell line deficient in thymidine kinase. The following markers and syntenic groups were localized : GUSB on PPA3 ; NP-MPI-PKM2-IDH2 on PPA7; ADA on PPA10 and IDH1 on PPA12. These results are consistent with the following homoeologies of PPA and HSA chromosomes : PPA3-HSA7 ; PPA7-HSA14 and 15 ; PPA10-HSA20 and PPA12-HSA2q

Animals↗

Cyclic nucleotide independent casein kinase (G type) in bovine adrenal cortex: purification and properties of two molecular forms.

Two soluble cyclic nucleotide independent protein kinase (ATP: protein-phosphotransferase, EC 2.7.1.37) activities have been purified from bovine adrenal cortex cytosol. Both purified enzymes exhibit the best affinity for acidic substrates such as casein and can use GTP as well as ATP as phosphoryl donor. They can thus be classified as casein kinase of the G type as previously proposed (Cochet C. et al., (1980) Endocrinology 106, 750-757). Whereas the two moieties could be separated using their different affinities toward a phosphocellulose resin, both purified enzymes appeared indistinguishable on the basis of several molecular and catalytic properties. Both G type casein kinase moieties have an identical sedimentation behavior (5.5 S in the presence of 0.5 M NaCl), yield similar patterns upon electrophoresis under denaturing conditions with three major protein components (42 000, 38 000 and 27 000), and show an ability to undergo self-phosphorylation mostly on the 27 000 component. Both enzymes have the same protein and nucleotide (ATP and GTP) substrate specificity, show similar increases in activity in the presence of polyamines and Mg2+ (optimum at 50 mM) and similar inhibition by NaCl above 0.2 M. The only difference between the two forms of casein kinase (i.e., affinity for phosphocellulose) could not be explained by a different degree of self-phosphorylation or by a limited proteolytic process during handling and purification. These results suggest that the two active moieties may represent isoenzymatic forms of the G type casein kinase activity in bovine adrenal cortex cytosol.

Adenosine Triphosphate↗

Comparative gene mapping of man and Cebus capucinus: a study of 23 enzymatic markers.

A total 23 enzymatic markers were analyzed in cell hybrids obtained between Cebus capucinus (CCA) fibroblasts and a Chinese hamster cell line. The following markers, or syntenic groups, could be localized in CCA chromosomes homologous to human chromosomes or chromosome segments: PGD-ENO1-PGM1, MDH1, IDH1, PGM2, PGM3-ME1, AK3, TPI-LDHB-PEPB, GPI, and SOD1. The following syntenic groups were observed but could not be localized: GUK1-FH and MPI-PKM2. The following loci could not be localized with full confidence: LDHA, NP, PEPD, ITP, and PGK.

Animals↗

[Localization of the gene for phosphoglycolate phosphatase (PGP) on the chromosome 16 by interspecific hybridization (author's transl)].

Eight primary man-mouse (C11D/TK-) hybrids, twenty three primary and seven secondary man-hamster (CH/HGPRT-) were analyzed for human phosphoglycolate phosphatase (PGP) and for human chromosomes. The following results were obtained: 1. A positive correlation is observed between the chromosome 16 and PGP. 15 hybrids are chr.16+PGP+, 14 hybrids are chr.16-PGP- and 4 hybrids are chr.16-PGP+. 2. The percentage of dissociation between PGP and the chr.16 is low (12%) in comparison with the high percentage of dissociation between PGP and the other autosomes (between 37% and 65%). 3. Excepted the chromosome 16, the other autosomes are observed in hybrids PGP-. These different results indicate the localization of the gene for human PGP on the chromosome 16. The dissociation results chr.16-PGP+ are explained by the breakage of the chr.16 in the hybrids.

Animals↗