Title of article :
The structures of T87I phosphono-CheY and T87I/Y106W phosphono-CheY help to explain their binding affinities to the FliM and CheZ peptides
Author/Authors :
McAdams، نويسنده , , Kenneth and Casper، نويسنده , , Eric S. and Matthew Haas، نويسنده , , R. and Santarsiero، نويسنده , , Bernard D. and Eggler، نويسنده , , Aimee L. and Mesecar، نويسنده , , Andrew and Halkides، نويسنده , , Christopher J.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
9
From page :
105
To page :
113
Abstract :
CheY is a response regulator in bacterial chemotaxis. Escherichia coli CheY mutants T87I and T87I/Y106W CheY are phosphorylatable on Asp57 but unable to generate clockwise rotation of the flagella. To understand this phenotype in terms of structure, stable analogs of the two CheY-P mutants were synthesized: T87I phosphono-CheY and T87I phosphono-CheY. Dissociation constants for peptides derived from flagellar motor protein FliM and phosphatase CheZ were determined for phosphono-CheY and the two mutants. The peptides bind phosphono-CheY almost as strongly as CheY-P; however, they do not bind T87I phosphono-CheY or T87I/Y106W phosphono-CheY, implying that the mutant proteins cannot bind FliM or CheZ tightly in vivo. The structures of T87I phosphono-CheY and T87I/Y106W phosphono-CheY were solved to resolutions of 1.8 and 2.4 إ, respectively. The increased bulk of I87 forces the side-chain of Y106 or W106, into a more solvent-accessible conformation, which occludes the peptide-binding site.
Keywords :
fluorescence , Calorimetry , chemotaxis , Two component systems , Chemical modification , Structure/function studies , Crystallography , protein phosphorylation
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2008
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1630022
Link To Document :
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