Palleros D R, Reid K L, Shi L, Welch W J, Fink A L
Department of Chemistry and Biochemistry, University of California, Santa Cruz 95064.
Nature. 1993 Oct 14;365(6447):664-6. doi: 10.1038/365664a0.
The molecular chaperone proteins, particularly Hsp60 and Hsp70, have been implicated in essential cell functions under both normal and stress conditions (reviewed in refs 1-5). Members of the family of heat-shock proteins of M(r) 70K, Hsp70, bind to unfolded proteins and short peptides. Addition of Mg-ATP results in the dissociation of the substrate polypeptides from the chaperone, but as ATP-gamma S (an ATP analogue that is only slowly hydrolysable) cannot substitute for ATP in this reaction, it has been concluded that ATP hydrolysis is necessary to dissociate Hsp70-substrate protein complexes. By independently measuring the rates of ATP hydrolysis and substrate protein dissociation, we show here that Mg-ATP binding but not Mg-ATP hydrolysis is essential for substrate dissociation. We also show that there is an absolute requirement for K+ for the effect of Mg-ATP: only the combination of K+ and Mg-ATP will cause the conformational change in Hsp70 that is necessary for substrate dissociation. Moreover, in the absence of K+, Mg-ATP favours complex formation. We consider these results in terms of a G-protein-like model.
分子伴侣蛋白,尤其是热休克蛋白60(Hsp60)和热休克蛋白70(Hsp70),在正常和应激条件下均参与细胞的重要功能(参考文献1 - 5中有综述)。分子量为70K的热休克蛋白家族成员Hsp70可与未折叠的蛋白质及短肽结合。添加Mg - ATP会导致底物多肽与伴侣蛋白解离,但由于ATP - γS(一种水解缓慢的ATP类似物)在此反应中不能替代ATP,因此得出结论:ATP水解对于解离Hsp70 - 底物蛋白复合物是必要的。通过独立测量ATP水解速率和底物蛋白解离速率,我们在此表明,Mg - ATP结合而非Mg - ATP水解对于底物解离至关重要。我们还表明,Mg - ATP发挥作用对K⁺有绝对需求:只有K⁺和Mg - ATP的组合才会引起Hsp70构象变化,而这是底物解离所必需的。此外,在没有K⁺的情况下,Mg - ATP有利于复合物的形成。我们根据类似G蛋白的模型来考虑这些结果。