Literature DB >> 1910317

Calcium-dependent autophosphorylation of the glucose-regulated protein, Grp78.

T Leustek1, H Toledo, N Brot, H Weissbach.   

Abstract

The characteristics of phosphorylation of the 78-kDa glucose-regulated protein (Grp78), also known as the immunoglobulin heavy chain binding protein, were studied in vitro and in vivo. The purified protein from either calf liver or bovine kidney cells (MDBK) could be phosphorylated in vitro with [gamma-32P]ATP, in a reaction that is stimulated by Ca2+ and inhibited by the Ca(2+)-chelator ethylene glycol bis(beta-aminoethyl ether)N,N'-tetraacetic acid (EGTA). In the presence of EGTA, excess Ca2+ increased the rate of phosphorylation about 18-fold. Based on EGTA/Ca2+ titrations, the optimal Ca2+ concentration for phosphorylation was estimated to be 10-50 microM. Other divalent cations such as Mg2+, Mn2+, and Zn2+ were found to be inhibitory as was the Ca2+ antagonist lanthanum (La3+). The in vivo phosphorylation of Grp78 was studied in MDBK cells labeled with 32Pi. In the presence of inducers of Grp78 synthesis, such as ionomycin, tunicamycin, or 2-deoxyglucose, there was a large increase in the level of Grp78 in the cells but a decrease in the amount of phosphorylated protein. Two-dimensional gel analysis of Grp78 purified from bovine liver and MDBK cells identified at least four isoforms. After in vivo and in vitro phosphorylation of Grp78 all the acidic isoforms contained radioactivity but not the most basic isoform. Phosphoamino acid analysis of Grp78 showed that serine and threonine were phosphorylated in vivo and only threonine was phosphorylated in vitro.

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Year:  1991        PMID: 1910317     DOI: 10.1016/0003-9861(91)90469-y

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  11 in total

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Journal:  Experientia       Date:  1994-11-30

4.  The medial-Golgi ion pump Pmr1 supplies the yeast secretory pathway with Ca2+ and Mn2+ required for glycosylation, sorting, and endoplasmic reticulum-associated protein degradation.

Authors:  G Dürr; J Strayle; R Plemper; S Elbs; S K Klee; P Catty; D H Wolf; H K Rudolph
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5.  CXL146, a Novel 4H-Chromene Derivative, Targets GRP78 to Selectively Eliminate Multidrug-Resistant Cancer Cells.

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7.  Dissociation of glucose-regulated protein Grp78 and Grp78-IgE Fc complexes by ATP.

Authors:  H Toledo; A Carlino; V Vidal; B Redfield; M Y Nettleton; J P Kochan; N Brot; H Weissbach
Journal:  Proc Natl Acad Sci U S A       Date:  1993-03-15       Impact factor: 11.205

Review 8.  BiP and its nucleotide exchange factors Grp170 and Sil1: mechanisms of action and biological functions.

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Review 9.  ADP-ribosylation of the molecular chaperone GRP78/BiP.

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10.  Interactions of liver Grp78 and Escherichia coli recombinant Grp78 with ATP: multiple species and disaggregation.

Authors:  A Carlino; H Toledo; D Skaleris; R DeLisio; H Weissbach; N Brot
Journal:  Proc Natl Acad Sci U S A       Date:  1992-03-15       Impact factor: 11.205

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