首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Dodecamer rotor ring defines H+/ATP ratio for ATP synthesis of prokaryotic V-ATPase from Thermus thermophilus
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Dodecamer rotor ring defines H+/ATP ratio for ATP synthesis of prokaryotic V-ATPase from Thermus thermophilus

机译:Dodecamer转子环为嗜热栖热菌原核V-ATPase的ATP合成定义了H + / ATP比

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摘要

ATP synthesis by V-ATPase from the thermophilic bacterium Thermus thermophilus driven by the acid-base transition was investigated. The rate of ATP synthesis increased in parallel with the increase in proton motive force (PMF) >110 mV, which is composed of a difference in proton concentration (ΔpH) and the electrical potential differences (ΔΨ) across membranes. The optimum rate of synthesis reached 85 s−1, and the H+/ATP ratio of 4.0 ± 0.1 was obtained. ATP was synthesized at a considerable rate solely by ΔpH, indicating ΔΨ was not absolutely required for synthesis. Consistent with the H+/ATP ratio, cryoelectron micrograph images of 2D crystals of the membrane-bound rotor ring of the V-ATPase at 7.0-Å resolution showed the presence of 12 Vo-c subunits, each composed of two transmembrane helices. These results indicate that symmetry mismatch between the rotor and catalytic domains is not obligatory for rotary ATPases/synthases.
机译:研究了由嗜酸细菌嗜热栖热菌(Thermus thermophilus)的V-ATPase在酸碱转变的驱动下合成ATP。 ATP的合成速率随质子动力(PMF)> 110 mV的增加而增加,质子动力的增加由质子浓度的差异(pH)和跨膜的电势差异(Δdifferences)组成。最佳合成速率达到85 s -1 ,H + / ATP比为4.0±0.1。仅通过ΔpH以相当大的速率合成了ATP,这表明Δ绝对不是合成所必需的。与H + / ATP比值一致,V-ATPase膜结合的转子环的二维晶体在7.0-Å分辨率下的低温电子显微照片显示存在12个Vo-c亚基由两个跨膜螺旋组成。这些结果表明,转子和催化域之间的对称性不匹配对于旋转ATPase /合酶不是必须的。

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