首页> 美国卫生研究院文献>Biophysical Journal >Voltage dependence of proton pumping by bacteriorhodopsin is regulated by the voltage-sensitive ratio of M1 to M2.
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Voltage dependence of proton pumping by bacteriorhodopsin is regulated by the voltage-sensitive ratio of M1 to M2.

机译:细菌视紫红质对质子泵浦的电压依赖性由M1与M2的电压敏感比调节。

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摘要

The voltage dependence of light-induced proton pumping was studied with bacteriorhodopsin (bR) from Halobacterium salinarum, expressed in the plasma membrane of oocytes from Xenopus laevis in the range -160 mV to +60 mV at different light intensities. Depending on the applied field, the quenching effect by blue light, which bypasses the normal photo and transport cycle, is drastically increased at inhibiting (negative) potentials, and is diminished at pump current increasing (positive) potentials. At any potential, two processes with different time constants for the M --> bR decay of approximately 5 ms (tau1) and approximately 20 ms (tau2) are obtained. At pump-inhibiting potentials, a third, long-lasting process with tau3 approximately 300 ms at neutral pH is observed. The fast processes (tau1, tau2) can be assigned to the decay of M2 in the normal pump cycle, i.e., to the reprotonation of the Schiff base via the cytoplasmic side, whereas tau3 is due to the decay of M1 without net pumping, i.e., the reprotonation of the Schiff base via the extracellular side. The results are supported by determination of photocurrents induced by bR on planar lipid films. The pH dependence of the slow decay of M1 is fully in agreement with the interpretation that the reprotonation of the Schiff base occurs from the extracellular side. The results give strong evidence that an externally applied electrical field changes the ratio of the M1 and the M2 intermediate. As a consequence, the transport cycle branches into a nontransporting cycle at negative potentials. This interpretation explains the current-voltage behavior of bR on a new basis, but agrees with the isomerisation, switch, transfer model for vectorial transport.
机译:用盐沼嗜盐杆菌的细菌视紫红质(bR)研究了光诱导质子泵浦的电压依赖性,该盐在非洲爪蟾卵母细胞的质膜中在不同的光强度下在-160 mV至+60 mV的范围内表达。取决于所施加的场,绕过正常的光和传输周期的蓝光的猝灭效应在抑制(负)电势下急剧增加,而在泵电流增加(正)电势下则减弱。在任何可能的情况下,对于M-> bR衰减,大约有5 ms(tau1)和约20 ms(tau2)的时间常数,都会获得两个过程。在泵抑制电位下,观察到第三次持久过程,其中tau3在中性pH下约为300毫秒。快速过程(tau1,tau2)可以归因于正常泵浦周期中M2的衰变,即通过细胞质侧席夫碱的质子化,而tau3是由于M1衰变而没有净泵浦,即,席夫碱通过细胞外侧的质子化。通过测定平面脂质膜上bR诱导的光电流来支持该结果。 M1缓慢衰变的pH依赖性与以下解释完全一致:席夫碱的质子化发生在细胞外。结果提供了强有力的证据,表明外部施加的电场会改变M1和M2中间体的比例。结果,运输周期在负电势处分支为非运输周期。这种解释在新的基础上解释了bR的电流-电压行为,但与矢量运输的异构化,转换,转移模型相吻合。

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