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嗜热芽孢杆菌PS3中ATP合酶亚基c的一种新的溶液结构,提示H⁺转运存在局部构象变化。

A new solution structure of ATP synthase subunit c from thermophilic Bacillus PS3, suggesting a local conformational change for H+-translocation.

作者信息

Nakano Takayuki, Ikegami Takahisa, Suzuki Toshiharu, Yoshida Masasuke, Akutsu Hideo

机构信息

Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Mol Biol. 2006 Apr 21;358(1):132-44. doi: 10.1016/j.jmb.2006.01.011. Epub 2006 Jan 25.

Abstract

In F(o)F(1)-ATP synthase, an oligomer ring of F(o)c subunits acts as a rotary proton channel of the F(o)-proton motor. On the basis of the solution structure of the Escherichia coli F(o)c (EF(o)c) monomer, the rotation of the C-terminal helix coupled with the reorientation of the essential Asp61 side-chain on deprotonation was proposed to drive rotation of the whole c-ring. We have determined the NMR structure of F(o)c from thermophilic Bacillus PS3, TF(o)c, in an organic solvent mixture (chloroform/methanol (3:1, v/v)). Our results showed that, independent of pH, the carboxyl group of the essential Glu56 of TF(o)c protrudes toward the outside of the hairpin, a third orientation that differs from either of the two orientations in EF(o)c. Therefore, it would be inappropriate to draw conclusions about the mechanism of c-ring rotation on the basis of the conformations observed only for EF(o)c. The appearance of different hairpin structures shows that there are multiple energy minima for the hairpin structure in terms of helix rotation and axial displacement. The multiple energy minima may also provide a base for the different oligomeric states in the c-ring structure. A rotation mechanism of the F(o) motor coupled with H(+)-translocation is discussed on the basis of these results and the recently reported crystal structure of the c-ring from Ilyobacter tartaricus Na(+)-ATPase.

摘要

在F(o)F(1)-ATP合酶中,F(o)c亚基的寡聚体环充当F(o)-质子马达的旋转质子通道。基于大肠杆菌F(o)c(EF(o)c)单体的溶液结构,有人提出C末端螺旋的旋转与去质子化时关键的天冬氨酸61侧链的重新定向相结合,以驱动整个c环的旋转。我们已经在有机溶剂混合物(氯仿/甲醇(3:1,v/v))中确定了嗜热芽孢杆菌PS3的F(o)c即TF(o)c的核磁共振结构。我们的结果表明,与pH无关,TF(o)c关键的谷氨酸56的羧基向发夹外侧突出,这是一种不同于EF(o)c中两种取向的第三种取向。因此,仅基于仅观察到的EF(o)c构象来推断c环旋转机制是不合适的。不同发夹结构的出现表明,就螺旋旋转和轴向位移而言,发夹结构存在多个能量最小值。这些多个能量最小值也可能为c环结构中的不同寡聚状态提供基础。基于这些结果以及最近报道的来自嗜碱栖热菌Na(+)-ATP酶的c环晶体结构,讨论了F(o)马达与H(+)-转运耦合的旋转机制。

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