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首页> 外文期刊>Molecular Microbiology >A tridecameric c ring of the adenosine triphosphate (ATP) synthase from the thermoalkaliphilic Bacillus sp strain TA2.A1 facilitates ATP synthesis at low electrochemical proton potential
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A tridecameric c ring of the adenosine triphosphate (ATP) synthase from the thermoalkaliphilic Bacillus sp strain TA2.A1 facilitates ATP synthesis at low electrochemical proton potential

机译:来自热嗜碱芽孢杆菌菌株TA2.A1的三磷酸腺苷三磷酸腺苷(ATP)合酶的十三环c环在低电化学质子势能下促进ATP的合成

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摘要

Despite the thermodynamic problem imposed on alkaliphilic bacteria of synthesizing adenosine triphosphate (ATP) against a large inverted pH gradient and consequently a low electrochemical proton potential, these bacteria still utilize a proton-coupled F1F0-ATP synthase to synthesize ATP. One potential solution to this apparent thermodynamic problem would be the operation of a larger oligomeric c ring, which would raise the ion to ATP ratio, thus facilitating the conversion of a low electrochemical potential into a significant phosphorylation potential. To address this hypothesis, we have purified the oligomeric c ring from the thermoalkaliphilic bacterium Bacillus sp. strain TA2.A1 and determined the number of c-subunits using a novel mass spectrometry method, termed 'laser-induced liquid bead ion desorption' (LILBID). This technique allows the mass determination of non-covalently assembled, detergent-solubilized membrane protein complexes, and hence enables an accurate determination of c ring stoichiometries. We show that the Bacillus sp. strain TA2.A1 ATP synthase harbours a tridecameric c ring. The operation of a c ring with 13 subunits renders the thermodynamic problem of ATP synthesis at alkaline pH less severe and may represent a strategy for ATP synthesis at low electrochemical potential.
机译:尽管在大的反向pH梯度下合成三磷酸腺苷(ATP)并因此具有较低的电化学质子势能对嗜碱细菌施加了热力学问题,但这些细菌仍利用质子偶联的F1F0-ATP合酶来合成ATP。解决这一明显的热力学问题的一种可能的解决方法是使用较大的低聚环,这将提高离子与ATP的比例,从而促进将低电化学势转化为明显的磷酸化势。为了解决这个假设,我们从嗜热碱杆菌芽孢杆菌中纯化了寡聚C环。应变TA2.A1,并使用一种称为“激光诱导的液珠离子解吸”(LILBID)的新型质谱方法确定了c亚基的数量。该技术可以对非共价组装的去污剂溶解的膜蛋白复合物进行质量测定,因此可以准确测定c环化学计量。我们证明了芽孢杆菌。菌株TA2.A1 ATP合酶带有一个十三聚体c环。具有13个亚基的c环的操作使碱性pH下ATP合成的热力学问题不太严重,并且可能代表了在低电化学势下进行ATP合成的策略。

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