Structural and Enzymatic Insights into the ATP Binding and Autophosphorylation Mechanism of a Sensor Histidine Kinase

被引:50
作者
Trajtenberg, Felipe [1 ]
Grana, Martin [2 ]
Ruetalo, Natalia [1 ]
Botti, Horacio [1 ]
Buschiazzo, Alejandro [1 ,3 ]
机构
[1] Inst Pasteur Montevideo, Unit Prot Crystallog, Montevideo 11400, Uruguay
[2] Inst Pasteur Montevideo, Unit Bioinformat, Montevideo 11400, Uruguay
[3] Inst Pasteur, Dept Struct Biol & Chem, F-75015 Paris, France
关键词
SIGNAL-TRANSDUCTION; DOMAIN; CHEA; PHOSPHORYLATION; DEPHOSPHORYLATION; SPECIFICITY; CATALYSIS;
D O I
10.1074/jbc.M110.147843
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
DesK is a sensor histidine kinase (HK) that allows Bacillus subtilis to respond to cold shock, triggering the adaptation of membrane fluidity via transcriptional control of a fatty acid desaturase. It belongs to the HK family HPK7, which includes the nitrogen metabolism regulators NarX/Q and the antibiotic sensor LiaS among other important sensor kinases. Structural information on different HK families is still scarce and several questions remain, particularly concerning the molecular features that determine HK specificity during its catalytic autophosphorylation and subsequent response-regulator phosphotransfer reactions. To analyze the ATP-binding features of HPK7 HKs and dissect their mechanism of autophosphorylation at the molecular level, we have studied DesK in complex with ATP using high resolution structural approaches in combination with biochemical studies. We report the first crystal structure of an HK in complex with its natural nucleotidic substrate. The general fold of the ATP-binding domain of DesK is conserved, compared with well studied members of other families. Yet, DesK displays a far more compact structure at the ATP-binding pocket: the ATP lid loop is much shorter with no secondary structural organization and becomes ordered upon ATP loading. Sequence conservation mapping onto the molecular surface, semi-flexible protein-protein docking simulations, and structure-based point mutagenesis allow us to propose a specific domain-domain geometry during autophosphorylation catalysis. Supporting our hypotheses, we have been able to trap an autophosphorylating intermediate state, by protein engineering at the predicted domain-domain interaction surface.
引用
收藏
页码:24892 / 24903
页数:12
相关论文
共 43 条
[1]   Molecular basis of thermosensing:: a two-component signal transduction thermometer in Bacillus subtilis [J].
Aguilar, PS ;
Hernandez-Arriaga, AM ;
Cybulski, LE ;
Erazo, AC ;
de Mendoza, D .
EMBO JOURNAL, 2001, 20 (07) :1681-1691
[2]   The membrane fluidity sensor DesK of Bacillus subtilis controls the signal decay of its cognate response regulator [J].
Albanesi, D ;
Mansilla, MC ;
de Mendoza, D .
JOURNAL OF BACTERIOLOGY, 2004, 186 (09) :2655-2663
[3]   Structural plasticity and catalysis regulation of a thermosensor histidine kinase [J].
Albanesi, Daniela ;
Martin, Mariana ;
Trajtenberg, Felipe ;
Mansilla, Maria C. ;
Haouz, Ahmed ;
Alzari, Pedro M. ;
de Mendoza, Diego ;
Buschiazzo, Alejandro .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (38) :16185-16190
[4]   THE CCP4 SUITE - PROGRAMS FOR PROTEIN CRYSTALLOGRAPHY [J].
BAILEY, S .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1994, 50 :760-763
[5]   Structure of CheA, a signal-transducing histidine kinase [J].
Bilwes, AM ;
Alex, LA ;
Crane, BR ;
Simon, MI .
CELL, 1999, 96 (01) :131-141
[6]   Nucleotide binding by the histidine kinase CheA [J].
Bilwes, AM ;
Quezada, CM ;
Croal, LR ;
Crane, BR ;
Simon, MI .
NATURE STRUCTURAL BIOLOGY, 2001, 8 (04) :353-360
[7]   Version 1.2 of the Crystallography and NMR system [J].
Brunger, Axel T. .
NATURE PROTOCOLS, 2007, 2 (11) :2728-2733
[8]   Spontaneous subunit exchange and biochemical evidence for trans-autophosphorylation in a dimer of Escherichia coli histidine kinase (EnvZ) [J].
Cai, SJ ;
Inouye, M .
JOURNAL OF MOLECULAR BIOLOGY, 2003, 329 (03) :495-503
[9]   Structural Insight into Partner Specificity and Phosphoryl Transfer in Two-Component Signal Transduction [J].
Casino, Patricia ;
Rubio, Vicente ;
Marina, Alberto .
CELL, 2009, 139 (02) :325-336
[10]   Bacillus subtilis DesR functions as a phosphorylation-activated switch to control membrane lipid fluidity. [J].
Cybulski, LE ;
del Solar, G ;
Craig, PO ;
Espinosa, M ;
de Mendoza, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (38) :39340-39347