Identification of the protein binding region of S-trityl-L-cysteine, a new potent inhibitor of the mitotic kinesin Eg5

被引:101
作者
Brier, S
Lemaire, D
DeBonis, S
Forest, E
Kozielski, F
机构
[1] UJF, CNRS, CEA, LSMP, F-38027 Grenoble 01, France
[2] UJF, CNRS, CEA, LMES, F-38027 Grenoble 01, France
关键词
D O I
10.1021/bi049264e
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
Human Eg5, a mitotic motor of the kinesin superfamily, is involved in the formation and maintenance of the mitotic spindle. The recent discovery of small molecules that inhibit HsEg5 by binding to its catalytic motor domain leading to mitotic arrest has attracted more interest in Eg5 as a potential anticancer drug target. We have used hydrogen-deuterium exchange mass spectrometry and directed mutagenesis to identify the secondary structure elements that form the binding sites of new Eg5 inhibitors, in particular for S-trityl-L-Cysteine, a potent inhibitor of Eg5 activity in vitro and in cell-based assays. The binding of this inhibitor modifies the deuterium incorporation rate of eight peptides that define two areas within the motor domain: Tyr125-Glu145 and Ile202-Leu227. Replacement of the Tyr125-Glu145 region with the equivalent region in the Neurospora crassa conventional kinesin heavy chain prevents the inhibition of the Eg5 ATPase activity by S-trityl-L-Cysteine. We show here that S-trityl-L-Cysteine and monastrol both bind to the same region on Eg5 by induced fit in a pocket formed by helix alpha3-strand beta5 and loop L5-helix alpha2, and both inhibitors trigger similar local conformational changes within the interaction site. It is likely that S-trityl-L-Cysteine and monastrol inhibit HsEg5 by a similar mechanism. The common inhibitor binding region appears to represent a "hot spot" for HsEg5 that could be exploited for further inhibitor screening.
引用
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页码:13072 / 13082
页数:11
相关论文
共 37 条
[1]   Characterization of the interface structure of enzyme-inhibitor complex by using hydrogen-deuterium exchange and electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry [J].
Akashi, S ;
Takio, K .
PROTEIN SCIENCE, 2000, 9 (12) :2497-2505
[2]   Amide H/2H exchange reveals communication between the cAMP and catalytic subunit-binding sites in the RIα subunit of protein kinase A [J].
Anand, GS ;
Hughes, CA ;
Jones, JM ;
Taylor, SS ;
Komives, EA .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 323 (02) :377-386
[3]   Phosphorylation by p34(cdc2) protein kinase regulates binding of the kinesin-related motor HsEg5 to the dynactin subunit p150(Glued) [J].
Blangy, A ;
Arnaud, L ;
Nigg, EA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (31) :19418-19424
[4]   Phosphorylation by p34(cdc2) regulates spindle association of human Eg5, a kinesin-related motor essential for bipolar spindle formation in vivo [J].
Blangy, A ;
Lane, HA ;
dHerin, P ;
Harper, M ;
Kress, M ;
Nigg, EA .
CELL, 1995, 83 (07) :1159-1169
[5]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[6]  
COLE SPC, 1994, CANCER RES, V54, P5902
[7]   Conformational changes of the ferric uptake regulation protein upon metal activation and DNA binding; first evidence of structural homologies with the diphtheria toxin repressor [J].
de Peredo, AG ;
Saint-Pierre, C ;
Latour, JM ;
Michaud-Soret, I ;
Forest, E .
JOURNAL OF MOLECULAR BIOLOGY, 2001, 310 (01) :83-91
[8]  
DeBonis S, 2004, MOL CANCER THER, V3, P1079
[9]   Interaction of the mitotic inhibitor monastrol with human kinesin Eg5 [J].
DeBonis, S ;
Simorre, JP ;
Crevel, I ;
Lebeau, L ;
Skoufias, DA ;
Blangy, A ;
Ebel, C ;
Gans, P ;
Cross, R ;
Hackney, DD ;
Wade, RH ;
Kozielski, F .
BIOCHEMISTRY, 2003, 42 (02) :338-349
[10]   Mass spectrometric determination of isotopic exchange rates of amide hydrogens located on the surfaces of proteins [J].
Dharmasiri, K ;
Smith, DL .
ANALYTICAL CHEMISTRY, 1996, 68 (14) :2340-2344