TY - JOUR
T1 - The mechanism of Hsp70 chaperones
T2 - (entropic) pulling the models together
AU - Goloubinoff, Pierre
AU - Rios, Paolo De Los
PY - 2007/8
Y1 - 2007/8
N2 - Hsp70s are conserved molecular chaperones that can prevent protein aggregation, actively unfold, solubilize aggregates, pull translocating proteins across membranes and remodel native proteins complexes. Disparate mechanisms have been proposed for the various modes of Hsp70 action: passive prevention of aggregation by kinetic partitioning, peptide-bond isomerase, Brownian ratcheting or active power-stroke pulling. Recently, we put forward a unifying mechanism named 'entropic pulling', which proposed that Hsp70 uses the energy of ATP hydrolysis to recruit a force of entropic origin to locally unfold aggregates or pull proteins across membranes. The entropic pulling mechanism reproduces the expected phenomenology that inspired the other disparate mechanisms and is, moreover, simple.
AB - Hsp70s are conserved molecular chaperones that can prevent protein aggregation, actively unfold, solubilize aggregates, pull translocating proteins across membranes and remodel native proteins complexes. Disparate mechanisms have been proposed for the various modes of Hsp70 action: passive prevention of aggregation by kinetic partitioning, peptide-bond isomerase, Brownian ratcheting or active power-stroke pulling. Recently, we put forward a unifying mechanism named 'entropic pulling', which proposed that Hsp70 uses the energy of ATP hydrolysis to recruit a force of entropic origin to locally unfold aggregates or pull proteins across membranes. The entropic pulling mechanism reproduces the expected phenomenology that inspired the other disparate mechanisms and is, moreover, simple.
UR - http://www.scopus.com/inward/record.url?scp=34547146401&partnerID=8YFLogxK
U2 - 10.1016/j.tibs.2007.06.008
DO - 10.1016/j.tibs.2007.06.008
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C2 - 17629485
AN - SCOPUS:34547146401
SN - 0968-0004
VL - 32
SP - 372
EP - 380
JO - Trends in Biochemical Sciences
JF - Trends in Biochemical Sciences
IS - 8
ER -