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Structure of the c14 Rotor Ring of the Proton Translocating Chloroplast ATP Synthase

机译:质子易位叶绿体ATP合酶c14转子环的结构

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摘要

The structure of the membrane integral rotor ring of the proton translocating F1F0 ATP synthase from spinach chloroplasts was determined to 3.8 Å resolution by x-ray crystallography. The rotor ring consists of 14 identical protomers that are symmetrically arranged around a central pore. Comparisons with the c11 rotor ring of the sodium translocating ATPase from Ilyobacter tartaricus show that the conserved carboxylates involved in proton or sodium transport, respectively, are 10.6–10.8 Å apart in both c ring rotors. This finding suggests that both ATPases have the same gear distance despite their different stoichiometries. The putative proton-binding site at the conserved carboxylate Glu61 in the chloroplast ATP synthase differs from the sodium-binding site in Ilyobacter. Residues adjacent to the conserved carboxylate show increased hydrophobicity and reduced hydrogen bonding. The crystal structure reflects the protonated form of the chloroplast c ring rotor. We propose that upon deprotonation, the conformation of Glu61 is changed to another rotamer and becomes fully exposed to the periphery of the ring. Reprotonation of Glu61 by a conserved arginine in the adjacent a subunit returns the carboxylate to its initial conformation.
机译:通过X射线晶体学测定,来自菠菜叶绿体的质子移位F1F0 ATP合酶的膜整体转子环的结构达到3.8Å分辨率。转子环由14个相同的原角组成,这些原角围绕中心孔对称排列。与来自焦油杆菌的钠转运ATP酶的c11转子环的比较表明,在两个c环转子中,参与质子或钠运输的保守的羧酸盐分别相距10.6–10.8Å。这一发现表明,尽管它们的化学计量不同,但两种ATPase的齿轮距离相同。叶绿体ATP合酶中保守的羧酸盐Glu 61 的假定质子结合位点不同于Iloyobacter中的钠结合位点。与保守的羧酸盐相邻的残基显示出增加的疏水性和减少的氢键。晶体结构反映了叶绿体c环转子的质子化形式。我们建议在去质子化时,Glu 61 的构象会更改为另一个旋转异构体,并完全暴露于环的外围。 Glu 61 在相邻的亚基中被保守的精氨酸进行质子化,使羧酸盐恢复其初始构象。

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