Analysis of the functional coupling between calmodulin's calcium binding and peptide recognition properties

被引:33
作者
Mirzoeva, S
Weigand, S
Lukas, TJ
Shuvalova, L
Anderson, WF
Watterson, DM
机构
[1] Northwestern Univ, Dept Mol Pharmacol, Chicago, IL 60611 USA
[2] Northwestern Univ, Biol Chem & Drug Discovery Program, Chicago, IL 60611 USA
关键词
D O I
10.1021/bi9821263
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The enhancement of calmodulin's (CaM) calcium binding activity by an enzyme or a recognition site peptide and its diminution by key point mutations at the protein recognition interface (e.g,, E84K-CaM), which is more than 20 Angstrom away from the nearest calcium ligation structure, can be described by an expanded version of the Adair-Klotz equation for multiligand binding. The expanded equation can accurately describe the calcium binding events and their variable linkage to protein recognition events can be extended to other CaM-regulated enzymes and can potentially be applied to a diverse array of ligand binding systems with allosteric regulation of ligand binding, whether by other ligands or protein interaction. The 1.9 Angstrom resolution X-ray crystallographic structure of the complex between E84K-CaM and RS20 peptide, the CaM recognition site peptide from vertebrate smooth muscle and nonmuscle forms of myosin light chain kinase, provides insight into the structural basis of the functional communication between CaM's calcium ligation structures and protein recognition surfaces. The structure reveals that the complex adapts to the effect of the functional mutation by discrete adjustments in the helix that contains E84, This helix is on the amino-terminal side of the helix-loop-helix structural motif that is: the first to be occupied in CaM's calcium binding mechanism. The results reported here are consistent with a sequential and cooperative model of CaM's calcium binding activity in which the two globular and flexible central helix domains are functionally linked, and provide insight into how CaM's calcium binding activity and peptide recognition properties are functionally coupled.
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页码:3936 / 3947
页数:12
相关论文
共 60 条
[1]   REPLACEMENTS OF PRO86 IN PHAGE-T4 LYSOZYME EXTEND AN ALPHA-HELIX BUT DO NOT ALTER PROTEIN STABILITY [J].
ALBER, T ;
BELL, JA ;
DAOPIN, S ;
NICHOLSON, H ;
WOZNIAK, JA ;
COOK, S ;
MATTHEWS, BW .
SCIENCE, 1988, 239 (4840) :631-635
[2]   IDENTIFICATION OF THE CALMODULIN-BINDING DOMAIN OF SKELETAL-MUSCLE MYOSIN LIGHT CHAIN KINASE [J].
BLUMENTHAL, DK ;
TAKIO, K ;
EDELMAN, AM ;
CHARBONNEAU, H ;
TITANI, K ;
WALSH, KA ;
KREBS, EG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1985, 82 (10) :3187-3191
[3]  
Brunger A. T., 1992, X PLOR VERSION 3 1 S
[4]   Functional consequences of truncating amino acid side chains located at a calmodulin-peptide interface [J].
Chin, D ;
Sloan, DJ ;
Quiocho, FA ;
Means, AR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (09) :5510-5513
[5]   Methionine to glutamine substitutions in the C-terminal domain of calmodulin impair the activation of three protein kinases [J].
Chin, D ;
Means, AR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (48) :30465-30471
[6]  
CRAIG TA, 1987, J BIOL CHEM, V262, P3278
[7]   MOLECULAR AND STRUCTURAL BASIS OF TARGET RECOGNITION BY CALMODULIN [J].
CRIVICI, A ;
IKURA, M .
ANNUAL REVIEW OF BIOPHYSICS AND BIOMOLECULAR STRUCTURE, 1995, 24 :85-116
[8]   THE ENERGETICS AND DYNAMICS OF MOLECULAR RECOGNITION BY CALMODULIN [J].
EHRHARDT, MR ;
URBAUER, JL ;
WAND, AJ .
BIOCHEMISTRY, 1995, 34 (09) :2731-2738
[9]   ACCURATE BOND AND ANGLE PARAMETERS FOR X-RAY PROTEIN-STRUCTURE REFINEMENT [J].
ENGH, RA ;
HUBER, R .
ACTA CRYSTALLOGRAPHICA SECTION A, 1991, 47 :392-400
[10]  
FARRAR YJK, 1993, J BIOL CHEM, V268, P4120