首页> 外文期刊>The Journal of biological chemistry >Obstruction of Transmembrane Helical Movements in Subunit a Blocks Proton Pumping by F1Fo ATP Synthase
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Obstruction of Transmembrane Helical Movements in Subunit a Blocks Proton Pumping by F1Fo ATP Synthase

机译:锁模亚单元锁定液体截止件F1FO ATP合酶泵送的闭球运动

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Subunit a plays a key role in promoting H+ transport-coupled rotary motion of the subunit c ring in F1Fo ATP synthase. H+ binding and release occur at Asp-61 in the middle of the second transmembrane helix (TMH) of Fo subunit c. H+ are thought to reach cAsp61 via aqueous half-channels formed by TMHs 2–5 of subunit a. Movements of TMH4 and TMH5 have been proposed to facilitate protonation of cAsp61 from a half channel centered in a four helix bundle at the periplasmic side of subunit a. The possible necessity of these proposed TMH movements was investigated by assaying ATP driven H+ pumping function before and after cross-linking paired Cys substitutions at the center of TMHs within subunit a. The cross-linking of the Cys pairs aG218C/I248C in TMH4 and TMH5, and aL120C/H245C in TMH2 and TMH5, inhibited H+ pumping by 85–90%. H+ pumping function was largely unaffected by modification of the same Cys residues in the absence of cross-link formation. The inhibition is consistent with the proposed requirement for TMH movements during the gating of periplasmic H+ access to cAsp61. The cytoplasmic loops of subunit a have been implicated in gating H+ release to the cytoplasm, and previous cross-linking experiments suggest that the chemically reactive regions of the loops may pack as a single domain. Here we show that Cys substitutions in these domains can be cross-linked with retention of function and conclude that these domains need not undergo large conformational changes during enzyme function.
机译:亚基A在促进F1FO ATP合成酶中促进亚基C环的H +传送耦合旋转运动来发挥关键作用。 H +结合和释放在Fo亚单位C的第二跨膜螺旋(TMH)中间的ASP-61处发生。 H +被认为通过由亚基A的TMHS 2-5形成的水半沟道到达CASP61。已经提出了TMH4和TMH5的运动,以便于从亚基A的周质侧为中心的半螺旋束中的半通道的质子化。通过测定ATP驱动的H +泵浦功能,在亚基A内的TMHS中心的交联成对的Cys取代之前和之后来研究这些提出的TMH运动的可能性。 Cys对Ag218C / I248C在TMH4和TMH5和TMH2和TMH5中的AL120C / H245C中的交联,抑制H +泵送85-90%。 H +泵送功能在很大程度上不受相同的Cys残留物在没有交联形成的情况下的影响。抑制与在Periplasms H +对CasP61的接入期间的TMH运动的提出要求一致。亚基A的细胞质环与细胞质牵引H +释放,并且先前的交联实验表明环路的化学反应区域可以作为单个结构域包装。在这里,我们表明这些域中的Cys取代可以与函数的保留交联,并得出结论,这些域在酶功能期间不需要进行大的构象变化。

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