Published November 25, 1990 | Version v1
Journal article

A novel adenylylation process in liver plasma membrane-bound proteins

  • 1. Instituto de Investigaciones Biomedicas, Madrid (Spain)

Description

Rat liver plasma membrane contains five distinct polypeptides of apparent molecular mass of 130, 120, 110, 100, and 86 kDa which are labeled upon incubation with [alpha-32P]ATP as well as with [gamma-32P]ATP. Covalently bound adenosine 5'-monophosphate to some of the polypeptides was identified using nonhydrolyzable analogues of ATP. Chase experiments of alpha-32P-nucleotide-labeled polypeptides with different nonradiolabeled phosphocompounds and sensitivity to different inhibitors demonstrate that the 86-kDa polypeptide is a phosphoesterase, forming a catalytic intermediate. On the other hand, the comparative slow rate of turnover of the polypeptides of higher molecular mass (130, 120, 110, and 100 kDa) suggests that the bound AMP could play a regulatory rather than a catalytic role. Using the nonhydrolyzable ATP analogue [alpha, beta-methylene]ATP and dilution experiments with Triton X-100-solubilized membranes, it has been possible to identify the 130-kDa adenylylated polypeptide as a possible target of an adenylylating system. These polypeptides, except the 86-kDa phosphoesterase, are affected in their electrophoretic mobility in the absence of beta-mercaptoethanol. An intercatenary disulfide bond(s) appear(s) to link the polypeptide(s) of 120 kDa and/or 110 kDa in a dimeric structure of apparent molecular mass of 240 kDa. All five polypeptides labeled with [alpha-32P]ATP are glycoproteins bound to the cell plasma membrane

Additional details

Publishing Information

Journal Title
Journal of Biological Chemistry
Journal Volume
265
Journal Issue
33
Series
J. Biol. Chem.
Journal Page Range
20653-20661
ISSN
0021-9258
CODEN
JBCHA