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THE ROLE OF AIP IN THE FUNCTIONAL CYCLE OF THE DNAK CHAPERONE SYSTEM

机译:AIP在DNAK分子伴侣系统功能循环中的作用。

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Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation and promote protein folding. For the Escherichia coli homolog DnaK, we have characterized the ATP hydrolysis cycle as well as the effects of the DnaJ and GrpE cofactors on substrate interaction to reach conclusions on the functional cycle. DnaK ATPase was stimulated by substrates (ninefold) and DnaJ (13-fold) through stimulation of the rate limiting step, gamma-phosphate cleavage (approximately tenfold slower than ADP release). Substrates stimulate ATPase after binding with high affinity (KA < 10 mu M) to preformed DnaK-ATP complexes. The rapid binding kinetics lead to the conclusion that ATP-bound DnaK is the primary form initiating interaction with substrates for chaperone activity: The resulting DnaK-ATP-substrate complexes, however, are also characterized by rapid dissociation of bound substrate, but can be stabilized by hydrolysis of ATP (stimulated either by the substrate itself or DnaJ through their effects on the rate-limiting step). Stimulation of the gamma-phosphate cleavage reaction by DnaJ is much more efficient (complete conversion of bound ATP to ADP within five seconds) than that by substrates, indicating the special and important role for DnaJ in stabilization of DnaK-substrate interactions. [References: 36]
机译:Hsp70分子伴侣以ATP依赖性方式与蛋白质底物相互作用,以防止聚集并促进蛋白质折叠。对于大肠杆菌同系物DnaK,我们已经表征了ATP水解循环以及DnaJ和GrpE辅因子对底物相互作用的影响,以得出功能循环的结论。 DnaK ATPase被底物(九倍)和DnaJ(13倍)通过速率限制步骤,γ-磷酸酶裂解(比ADP释放慢约十倍)来刺激。底物以高亲和力(KA <10μM)与预先形成的DnaK-ATP复合物结合后刺激ATPase。快速的结合动力学得出以下结论:ATP结合的DnaK是引发与底物相互作用的分子伴侣的主要形式:然而,所得DnaK-ATP-底物复合物的特征还在于结合的底物的快速解离,但可以稳定通过ATP水解(受底物本身或DnaJ通过其对限速步骤的影响而刺激)。 DnaJ刺激γ-磷酸酶裂解反应的效率(在五秒钟之内将结合的ATP完全转化为ADP)要比底物刺激得多,这表明DnaJ在稳定DnaK-底物相互作用中具有特殊而重要的作用。 [参考:36]

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