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F(1)-ATP酶表观负协同性的起源

Origin of apparent negative cooperativity of F(1)-ATPase.

作者信息

Ono Sakurako, Hara Kiyotaka Y, Hirao Jun, Matsui Tadashi, Noji Hiroyuki, Yoshida Masasuke, Muneyuki Eiro

机构信息

Chemical Resources Laboratory, Tokyo Institute of Technology, Nagatsuta 4259, 226-8503 Yokohama, Japan.

出版信息

Biochim Biophys Acta. 2003 Oct 17;1607(1):35-44. doi: 10.1016/j.bbabio.2003.08.006.

Abstract

In order to get insight into the origin of apparent negative cooperativity observed for F(1)-ATPase, we compared ATPase activity and ATPMg binding of mutant subcomplexes of thermophilic F(1)-ATPase, alpha((W463F)3)beta((Y341W)3)gamma and alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma. For alpha((W463F)3)beta((Y341W)3)gamma, apparent K(m)'s of ATPase kinetics (4.0 and 233 microM) did not agree with apparent K(m)'s deduced from fluorescence quenching of the introduced tryptophan residue (on the order of nM, 0.016 and 13 microM). On the other hand, in case of alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma, which lacks noncatalytic nucleotide binding sites, the apparent K(m) of ATPase activity (10 microM) roughly agreed with the highest K(m) of fluorescence measurements (27 microM). The results indicate that in case of alpha((W463F)3)beta((Y341W)3)gamma, the activating effect of ATP binding to noncatalytic sites dominates overall ATPase kinetics and the highest apparent K(m) of ATPase activity does not represent the ATP binding to a catalytic site. In case of alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma, the K(m) of ATPase activity reflects the ATP binding to a catalytic site due to the lack of noncatalytic sites. The Eadie-Hofstee plot of ATPase reaction by alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma was rather linear compared with that of alpha((W463F)3)beta((Y341W)3)gamma, if not perfectly straight, indicating that the apparent negative cooperativity observed for wild-type F(1)-ATPase is due to the ATP binding to catalytic sites and noncatalytic sites. Thus, the frequently observed K(m)'s of 100-300 microM and 1-30 microM range for wild-type F(1)-ATPase correspond to ATP binding to a noncatalytic site and catalytic site, respectively.

摘要

为了深入了解嗜热F(1)-ATP酶中观察到的明显负协同性的起源,我们比较了嗜热F(1)-ATP酶突变亚复合物alpha((W463F)3)beta((Y341W)3)gamma和alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma的ATP酶活性及ATP-Mg结合情况。对于alpha((W463F)3)beta((Y341W)3)gamma,ATP酶动力学的表观K(m)值(4.0和233 microM)与从引入的色氨酸残基荧光猝灭推导的表观K(m)值(在nM量级,0.016和13 microM)不一致。另一方面,对于缺乏非催化核苷酸结合位点的alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma,ATP酶活性的表观K(m)值(10 microM)大致与荧光测量的最高K(m)值(27 microM)相符。结果表明,对于alpha((W463F)3)beta((Y341W)3)gamma,ATP结合到非催化位点的激活作用主导了整体ATP酶动力学,且ATP酶活性的最高表观K(m)值并不代表ATP结合到催化位点。对于alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma,由于缺乏非催化位点,ATP酶活性的K(m)值反映了ATP结合到催化位点。与alpha((W463F)3)beta((Y341W)3)gamma相比,alpha((K175A/T176A/W463F)3)beta((Y341W)3)gamma的ATP酶反应的伊迪-霍夫斯泰 plot图即使不是完全直线也相当线性,表明野生型F(1)-ATP酶中观察到的明显负协同性是由于ATP结合到催化位点和非催化位点。因此,野生型F(1)-ATP酶中经常观察到的100 - 300 microM和1 - 3 microM范围的K(m)值分别对应于ATP结合到非催化位点和催化位点。

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