>
Fa   |   Ar   |   En
   Segmental Helical Motions and Dynamical Asymmetry Modulate Histidine Kinase Autophosphorylation  
   
نویسنده mechaly a.e. ,sassoon n. ,betton j.-m. ,alzari p.m.
منبع plos biology - 2014 - دوره : 12 - شماره : 1
چکیده    Histidine kinases (hks) are dimeric receptors that participate in most adaptive responses to environmental changes in prokaryotes. although it is well established that stimulus perception triggers autophosphorylation in many hks,little is known on how the input signal propagates through the hamp domain to control the transient interaction between the histidine-containing and atp-binding domains during the catalytic reaction. here we report crystal structures of the full cytoplasmic region of cpxa,a prototypical hk involved in escherichia coli response to envelope stress. the structural ensemble,which includes the michaelis complex,unveils hk activation as a highly dynamic process,in which hamp modulates the segmental mobility of the central hk α-helices to promote a strong conformational and dynamical asymmetry that characterizes the kinase-active state. a mechanical model based on our structural and biochemical data provides insights into hamp-mediated signal transduction,the autophosphorylation reaction mechanism,and the symmetry-dependent control of hk kinase/phosphatase functional states. © 2014 mechaly et al.
آدرس institut pasteur,unité de microbiologie structurale and cnrs umr 3528,paris, France, institut pasteur,unité de microbiologie structurale and cnrs umr 3528,paris, France, institut pasteur,unité de microbiologie structurale and cnrs umr 3528,paris, France, institut pasteur,unité de microbiologie structurale and cnrs umr 3528,paris, France
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved