Title of article :
Coupled Motions in the SH2 and Kinase Domains of Csk Control Src Phosphorylation
Author/Authors :
Lilly Wong، نويسنده , , Scot A. Lieser، نويسنده , , Osamu Miyashita، نويسنده , , Meghan Miller، نويسنده , , Kjetil Taskén، نويسنده , , Angel E. Garcia and José N. Onuchic، نويسنده , , Joseph A. Adams، نويسنده , , Virgil L. Woods Jr، نويسنده , , Patricia A. Jennings، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
13
From page :
131
To page :
143
Abstract :
The C-terminal Src kinase (Csk) phosphorylates and down-regulates Src family tyrosine kinases. The Csk-binding protein (Cbp) localizes Csk close to its substrates at the plasma membrane, and increases the specific activity of the kinase. To investigate this long-range catalytic effect, the phosphorylation of Src and the conformation of Csk were investigated in the presence of a high-affinity phosphopeptide derived from Cbp. This peptide binds tightly to the SH2 domain and enhances Src recognition (lowers Km) by increasing the apparent phosphoryl transfer rate in the Csk active site, a phenomenon detected in rapid quench flow experiments. Previous studies demonstrated that the regulation of Csk activity is linked to conformational changes in the enzyme that can be probed with hydrogen–deuterium exchange methods. We show that the Cbp peptide impacts deuterium incorporation into its binding partner (the SH2 domain), and into the SH2-kinase linker and several sequences in the kinase domain, including the glycine-rich loop in the active site. These findings, along with computational data from normal mode analyses, suggest that the SH2 domain moves in a cantilever fashion with respect to the small lobe of the kinase domain, ordering the active site for catalysis. The binding of a small Cbp-derived peptide to the SH2 domain of Csk modifies these motions, enhancing Src recognition.
Keywords :
Cbp , Csk , deuterium exchange , kinase , mass spectrometry
Journal title :
Journal of Molecular Biology
Serial Year :
2005
Journal title :
Journal of Molecular Biology
Record number :
1245154
Link To Document :
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