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一种新型质子在 F(1)F(o)-ATP 合酶转子环中的配位。

A new type of proton coordination in an F(1)F(o)-ATP synthase rotor ring.

机构信息

Department of Structural Biology, Max-Planck Institute of Biophysics, Frankfurt, Germany.

出版信息

PLoS Biol. 2010 Aug 3;8(8):e1000443. doi: 10.1371/journal.pbio.1000443.

Abstract

We solved the crystal structure of a novel type of c-ring isolated from Bacillus pseudofirmus OF4 at 2.5 A, revealing a cylinder with a tridecameric stoichiometry, a central pore, and an overall shape that is distinct from those reported thus far. Within the groove of two neighboring c-subunits, the conserved glutamate of the outer helix shares the proton with a bound water molecule which itself is coordinated by three other amino acids of outer helices. Although none of the inner helices contributes to ion binding and the glutamate has no other hydrogen bonding partner than the water oxygen, the site remains in a stable, ion-locked conformation that represents the functional state present at the c-ring/membrane interface during rotation. This structure reveals a new, third type of ion coordination in ATP synthases. It appears in the ion binding site of an alkaliphile in which it represents a finely tuned adaptation of the proton affinity during the reaction cycle.

摘要

我们解析了来自地芽孢杆菌 OF4 的一种新型 c 环的晶体结构,分辨率为 2.5埃,揭示了一个具有十三聚体组成、中央孔和独特形状的圆柱体,与迄今为止报道的结构明显不同。在两个相邻 c 亚基的沟槽中,外螺旋的保守谷氨酸与结合的水分子共享质子,而水分子本身由外螺旋的另外三个氨基酸配位。尽管内螺旋没有参与离子结合,并且谷氨酸除了水分子的氧之外没有其他氢键供体,但该位点仍然保持在稳定的、离子锁定的构象中,代表了在旋转过程中 c 环/膜界面处的功能状态。该结构揭示了 ATP 合酶中一种新的、第三种离子配位方式。它出现在一种嗜碱性微生物的离子结合位点中,代表了在反应循环中质子亲和力的精细调节适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b68a/2914638/5a7ffa7e63ae/pbio.1000443.g001.jpg

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