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Common structure of the catalytic sites of mammalian and bacterial toxin ADP-ribosyltransferases

Authors :
Joel Moss
Ian J. Okazaki
Source :
ADP-Ribosylation: Metabolic Effects and Regulatory Functions ISBN: 9781461361206
Publication Year :
1994
Publisher :
Springer US, 1994.

Abstract

The amino acid sequences of several bacterial toxin ADP-ribosyltransferases, rabbit skeletal muscle transferases, and RT6.2, a rat T-cell NAD glycohydrolase, contain three separate regions of similarity, which can be aligned. Region I contains a critical histidine or arginine residue, region II, a group of closely spaced aromatic amino acids, and region III, an active-site glutamate which is at times seen as part of an acidic amino acid-rich sequence. In some of the bacterial ADP-ribosyltransferases, the nicotinamide moiety of NAD has been photo-crosslinked to this glutamate, consistent with its position in the active site. The similarities within these three regions, despite an absence of overall sequence similarity among the several transferases, are consistent with a common structure involved in NAD binding andADP-ribose transfer. (Mol Cell Biochem 138: 177–181, 1994)

Details

ISBN :
978-1-4613-6120-6
ISBNs :
9781461361206
Database :
OpenAIRE
Journal :
ADP-Ribosylation: Metabolic Effects and Regulatory Functions ISBN: 9781461361206
Accession number :
edsair.doi...........eeb8402d61559d23a266af3a5ba0ec5c