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Extended substrate recognition in caspase-3 revealed by high resolution X-ray structure analysis

Type of Publication
Year of Publication
2006
Authors

R. Ganesan; P.R.E. Mittl; S. Jelakovic; M.G. Gruetter

Abstract

Caspases are cysteine proteases involved in the signalling cascades of programmed cell death in which caspase-3 plays a central role, since it propagates death signals from intrinsic and extrinsic stimuli to downstream targets. The atomic resolution (1.06 angstrom) crystal structure of the caspase-3 DEVD-cmk complex reveals the structural basis for substrate selectivity in the S4 pocket. A low-barrier hydrogen bond is observed between the side-chains of the P4 inhibitor aspartic acid and Asp179 of the N-terminal tail of the symmetry related p12 subunit. Site-directed mutagenesis of Asp179 confirmed the significance of this residue in substrate recognition. In the 1.06 angstrom crystal structure, a radiation damage induced rearrangement of the inhibitor methylketone moiety was observed. The carbon atom that in a substrate would represent the scissile peptide bond carbonyl carbon clearly shows a tetrahedral coordination and resembles the postulated tetrahedral intermediate of the acylation reaction. (c) 2006 Elsevier Ltd. All rights reserved.

DOI

10.1016/j.jmb.2006.04.051

Volume

359

Notes

Times Cited: 30 Ganesan, Rajkumar/B-1093-2008 31

Pagination

1378-1388

Number
5
ISSN Number

0022-2836

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