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PMID: 3032621 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The calcium channel antagonists receptor from rabbit skeletal muscle. Reconstitution after purification and subunit characterization.

European journal of biochemistry ·Vol. 164 ·No. 3 ·1987-05-04 ·Pages 525-31

Barhanin J, Coppola T, Schmid A, Borsotto M, Lazdunski M

Abstract

The Ca2+ channel antagonists receptor from rabbit skeletal muscle was purified to homogeneity. Following reconstitution into phosphatidylcholine vesicles, binding experiments with (+)[3H]PN 200-110, (-)[3H]D888 and d-cis-[3H]diltiazem demonstrated that receptor sites for the three most common Ca2+ channel markers copurified with binding stoichiometries close to 1:1:1. Sodium dodecyl sulfate gel analysis of the purified receptor showed that it is composed of only one protein of Mr 170,000 under non-reducing conditions and of two polypeptides of Mr 140,000 and 32,000 under disulfide-reducing conditions. Iodination of the protein of Mr 170,000 and immunoblots experiments with antisera directed against the different components demonstrated that the Ca2+ channel antagonists receptor is a complex of Mr 170,000 composed of a polypeptide chain of Mr 140,000 associated to one polypeptide chain of Mr 32,000 by disulfide bridges. One of the problems concerning this subunit structure of the putative Ca2+ channel was the presence of smaller polypeptide chains of Mr 29,000 and 25,000. Peptide mapping of these polypeptide chains and analysis of their cross-reactivity with sera directed against the proteins of Mr 170,000 and 32,000 demonstrated that they were degradative products of the Mr 32,000 component. Both the large (140 kDa) and the small (32 kDa) component of the putative Ca2+ channel are heavily glycosylated. At least 20-22% of their mass were removed by enzymatic deglycosylation. Finally the possibility that both the 140-kDa and 32-kDa components originate from a single polypeptide chain of Mr 170,000 which is cleaved by proteolysis upon purification is discussed.

MeSH Terms
Animals Calcium Channels Electrophoresis, Disc Glycosylation Immunochemistry Muscles/analysis Peptide Mapping Rabbits Receptors, Nicotinic/isolation & purification
Chemicals
Calcium Channels Receptors, Nicotinic
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Barhanin J
Coppola T
Schmid A
Borsotto M
Lazdunski M
Article Info
Journal
European journal of biochemistry
Abbr.
Eur J Biochem
ISSN
0014-2956
Published
1987-05-04
Pages
525-31
Language
English
Region
England
NLM ID
0107600
Subset
IM
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