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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Interactions of rotor subunits in the chloroplast ATP synthase modulated by nucleotides and by Mg2+
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Interactions of rotor subunits in the chloroplast ATP synthase modulated by nucleotides and by Mg2+

机译:核苷酸和Mg2 +调节叶绿体ATP合酶中转子亚基的相互作用

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摘要

ATP synthases – rotary nano machines – consist of two major parts, FO and F1, connected by two stalks: the central and the peripheral stalk. In spinach chloroplasts, the central stalk (subunits γ, ε) forms with the cylinder of subunits III the rotor and transmits proton motive force from FO to F1, inducing conformational changes of the catalytic centers in F1. The ε subunit is an important regulator affecting adjacent subunits as well as the activity of the whole protein complex. Using a combination of chemical cross-linking and mass spectrometry, we monitored interactions of subunit ε in spinach chloroplast ATP synthase with III and γ. Onto identification of interacting residues in subunits ε and III, one cross-link defined the distance between ε-Cys6 and III-Lys48 to be 9.4 A at minimum. ε-Cys6 was competitively cross-linked with subunit γ. Altered cross-linking yields revealed the impact of nucleotides and Mg2+ on cross-linking of subunit ε. The presence of nucleotides apparently induced a displacement of the N-terminus of subunit ε, which separated ε-Cys6 from both, III-Lys48 and subunit γ, and thus decreasing the yield of the cross-linked subunits ε and γ as well as ε and III. However, increasing concentrations of the cofactor Mg2+ favoured cross-linking of ε-Cys6 with subunit γ instead of III-Lys48 indicating an approximation of subunits γ and ε and a separation from III-Lys48.
机译:ATP合成酶-旋转纳米机器-由两个主要部分(FO和F1)组成,它们通过两个茎杆相连:中央茎杆和外围茎杆。在菠菜叶绿体中,中央茎(亚基γ,ε)与亚基III的圆柱体形成转子,并将质子原动力从FO传递至F1,从而引起F1中催化中心的构象变化。 ε亚基是影响相邻亚基以及整个蛋白复合物活性的重要调节剂。使用化学交联和质谱的结合,我们监测了菠菜叶绿体ATP合酶中亚基ε与III和γ的相互作用。在鉴定亚基ε和III中相互作用的残基时,一个交联定义ε-Cys6和III-Lys48之间的距离最小为9.4A。 ε-Cys6与亚基γ竞争性交联。交联产率的变化揭示了核苷酸和Mg2 +对亚基ε交联的影响。核苷酸的存在显然诱导了亚基ε的N末端的位移,从而使ε-Cys6与III-Lys48和亚基γ分离,从而降低了交联的亚基ε和γ以及ε的产率和III。然而,增加的辅助因子Mg2 +的浓度有利于ε-Cys6与亚基γ而不是III-Lys48的交联,表明亚基γ和ε接近,并且与III-Lys48分离。

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