Lu Yuanming, Hu Qian, Yang Cuixia, Gao Feng
Department of Clinical Research Center, No. 6 Hospital, Shanghai Jiaotong University, Shanghai 200233, People's Republic of China.
Cell Stress Chaperones. 2006 Summer;11(2):148-53. doi: 10.1379/csc-152r.1.
Autophosphorylation of Hsp70 is detected in the process of substrate refolding in the presence of adenosine triphosphate (ATP) in the reaction mixture. But to date, the role and mechanism of Hsp70 autophosphorylation have not been elucidated. In this study we determined the site of histidine phosphorylation of Hsp70 as an intermediate in the process of phosphate transfer reaction by site-directed mutagenesis. We selected two possible sites (ie, His89 and His227) of intermediate histidine phosphorylation based on our hypothesis of the transfer of gamma-phosphoryl groups and replacement by glycine and serine. Although an acid labile autophosphorylation intermediate of Hsp70 and its cytidine diphosphate-dependent dephosphorylation were detected in wild-type Hsp70, they were markedly suppressed in the H89S mutation of Hsp70, but not on the H227S mutation. The ATPase activity and ATP synthesis activity of Hsp70 were almost completely suppressed in the H89S and H89G mutations. The role of His89 in the phosphate transfer reaction of Hsp70 is discussed.
在反应混合物中存在三磷酸腺苷(ATP)的情况下,在底物重折叠过程中检测到Hsp70的自磷酸化。但迄今为止,Hsp70自磷酸化的作用和机制尚未阐明。在本研究中,我们通过定点诱变确定了Hsp70组氨酸磷酸化位点,作为磷酸转移反应过程中的一个中间体。基于我们对γ-磷酰基转移和被甘氨酸及丝氨酸取代的假设,我们选择了中间组氨酸磷酸化的两个可能位点(即His89和His227)。尽管在野生型Hsp70中检测到了Hsp70的酸不稳定自磷酸化中间体及其依赖二磷酸胞苷的去磷酸化,但在Hsp70的H89S突变体中它们被显著抑制,而在H227S突变体中则没有。Hsp70的ATP酶活性和ATP合成活性在H89S和H89G突变体中几乎完全被抑制。本文讨论了His89在Hsp70磷酸转移反应中的作用。