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A A Choglay

Publications and source records attributed to A A Choglay.

2 recordsLinked to original sources

Identification and characterization of a human mitochondrial homologue of the bacterial co-chaperone GrpE.

We have identified a novel human cDNA with a predicted protein sequence that has 28% amino acid identity with the E. coli Hsp70 co-chaperone GrpE and designated it HMGE. Even with this low level of amino acid identity the human sequence could be efficiently modelled on the X-ray structure of the E. coli protein, suggesting that there may be significant functional conservation. Indeed, HMGE expressed in E. coli as a GST fusion protein co-purified with the E. coli Hsp70 protein DnaK in the absence of ATP. DnaK could be released from the GST-HMGE with a Mg-ATP wash. Subcellular fractionation and immunocytochemistry studies using antisera raized against HMGE show that it is a mitochondrial protein. In contrast to studies of rat GrpE, however, HMGE also appears to bind the constitutive cytosolic Hsp70, Hsc70, in addition to mitochondrial Hsp70, Mt-Hsp70. We have previously shown that Hsc70 nucleotide-exchange is rate limiting in the presence of the DnaJ-protein, HSJ1b. However, HMGE was found to inhibit the HSJ1b-enhanced Hsc70 ATPase activity and may mediate this inhibition by binding the DnaJ-protein, HSJ1b. This is the first description of a direct interaction between a DnaJ protein and GrpE-like protein. These studies suggest that the structure of GrpE has been conserved throughout evolution and that the conserved structure can interact with several forms of Hsp70, but that HMGE cannot form part of the reaction cycle for cytosolic Hsc70.

Amino Acid Sequence↗

Procollagen binding to sphingomyelin.

The interactions of [3H]procollagen I with various phospholipids were studied by density gradient centrifugation. At physiological conditions of pH, ionic strength, and temperature, there was no evidence for procollagen binding to phosphatidylcholine, phosphatidylethanolamine, phosphatidylinositol, or phosphatidylserine liposomes. In contrast, procollagen I bound strongly to sphingomyelin liposomes in a reversible and saturable manner, with an apparent dissociation constant (Kd) of 2.6 nM. Binding occurred over a range of temperatures (4-37 degrees C) and was relatively unaffected by salt concentrations up to 1.2 M NaCl. Binding was observed in phosphate buffers, but not in the presence of high concentrations of Tris or Hepes. Bovine serum albumin had no effect on procollagen binding to sphingomyelin, and neither did unlabeled type I collagen, with or without the nonhelical telopeptides. Procollagen II and denatured procollagen I also bound to sphingomyelin. Procollagen binding to sphingomyelin at 35 degrees C was considerably reduced when small amounts of phosphatidylcholine were present, although binding was partially restored when the temperature was reduced below the corresponding phase transition temperature. Purified unlabeled procollagen COOH-terminal propeptides successfully competed for binding, and 125I-labeled COOH-terminal propeptides bound to sphingomyelin in the absence of procollagen. Weaker binding to sphingomyelin, mediated by the collagen triple helical region, was also observed; but this was dominated by the sphingomyelin-COOH-terminal propeptide interaction. The data suggest a novel mechanism for matrix vesicle-mediated biomineralization.

Animals↗