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Crystal Structure of LexA

Authors :
Maia M. Cherney
Richard A. Pfuetzner
John W. Little
Mark Paetzel
Yu Luo
Natalie C. J. Strynadka
Steve Mosimann
Elizabeth A. Frey
Baek Kim
Source :
Cell. 106:585-594
Publication Year :
2001
Publisher :
Elsevier BV, 2001.

Abstract

LexA repressor undergoes a self-cleavage reaction. In vivo, this reaction requires an activated form of RecA, but it occurs spontaneously in vitro at high pH. Accordingly, LexA must both allow self-cleavage and yet prevent this reaction in the absence of a stimulus. We have solved the crystal structures of several mutant forms of LexA. Strikingly, two distinct conformations are observed, one compatible with cleavage, and the other in which the cleavage site is approximately 20 A from the catalytic center. Our analysis provides insight into the structural and energetic features that modulate the interconversion between these two forms and hence the rate of the self-cleavage reaction. We suggest RecA activates the self-cleavage of LexA and related proteins through selective stabilization of the cleavable conformation.

Details

ISSN :
00928674
Volume :
106
Database :
OpenAIRE
Journal :
Cell
Accession number :
edsair.doi.dedup.....f6d77a6f8c27101bfd24b47d9da92b4f