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ATP合酶的αβ复合物:α3β3寡聚体和α1β1原体。

The alpha beta complexes of ATP synthase: the alpha 3 beta 3 oligomer and alpha 1 beta 1 protomer.

作者信息

Kagawa Y, Ohta S, Harada M, Kihara H, Ito Y, Sato M

机构信息

Department of Biochemistry, Jichi Medical School, Tochigi, Japan.

出版信息

J Bioenerg Biomembr. 1992 Oct;24(5):441-5. doi: 10.1007/BF00762360.

Abstract

The basic structures of the catalytic portion (F1, alpha 3 beta 3 gamma delta epsilon) of ATP synthase are the alpha 3 beta 3 hexamer (oligomer with cooperativity) and alpha 1 beta 1 heterodimer (protomer). These were reconstituted from the alpha and beta subunits of thermophilic F1 (TF1), and the alpha 3 beta 3 hexamer was crystallized. On electrophoresis, both the dimer and hexamer showed bands with ATPase activity. Using the dimer and hexamer, we studied the nucleotide-dependent rapid molecular dynamics. The formation of the hexamer required neither nucleotide nor Mg. The hexamer was dissociated into the dimer in the presence of MgADP, while the dimer was associated into the hexamer in the presence of MgATP. The hexamer, like mitochondrial F1 and TF1, showed two kinds of ATPase activity: one was cooperative and was inhibited by only one BzADP per hexamer, and the other was inhibited by three BzADP per hexamer.

摘要

ATP合酶催化部分(F1,α3β3γεδ)的基本结构是α3β3六聚体(具有协同性的寡聚体)和α1β1异二聚体(原体)。这些是由嗜热F1(TF1)的α和β亚基重构而成的,并且α3β3六聚体被结晶。在电泳中,二聚体和六聚体均显示出具有ATP酶活性的条带。利用二聚体和六聚体,我们研究了核苷酸依赖性快速分子动力学。六聚体的形成既不需要核苷酸也不需要镁。在MgADP存在下,六聚体解离成二聚体,而在MgATP存在下,二聚体缔合成六聚体。与线粒体F1和TF1一样,六聚体表现出两种ATP酶活性:一种是协同性的,每个六聚体仅被一个BzADP抑制,另一种被每个六聚体三个BzADP抑制。

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