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羰基氰化物间氯苯腙和缬氨霉素联合作用对跨磷脂囊泡膜的H⁺、Na⁺和K⁺转运速率的增强作用:温度跃升研究

Enhancement of rates of H+, Na+ and K+ transport across phospholipid vesicular membrane by the combined action of carbonyl cyanide m-chlorophenylhydrazone and valinomycin: temperature-jump studies.

作者信息

Prabhananda B S, Kombrabail M H

机构信息

Chemical Physics Group, Tata Institute of Fundamental Research, Bombay, India.

出版信息

Biochim Biophys Acta. 1995 May 4;1235(2):323-35. doi: 10.1016/0005-2736(95)80021-7.

Abstract

Enhancement of delta pH relaxation rate by the combined action of valinomycin (VAL) and carbonyl cyanide m-chlorophenylhydrazone (CCCP) has been studied under a variety of concentration conditions in soyabean phospholipid (SBPL) vesicles after creating a pH gradient across the vesicular membrane delta pH by temperature jump. After taking note of the changes by VAL and CCCP induced membrane disorder (using nigericin and monensin mediated delta pH decay as probes) the following could be inferred about the mechanism of enhancement of delta pH decay rate: (i) in solutions containing KCl, the rate limiting species have been identified to be (a) Val-K(+)-CCCP-, at low [Val]0 and [CCCP]0 (with translocation rate constant k2 approximatley 3.2 x 10(3) s-1); (b) CCCPH, at high [Val]0 (with translocation rate constant k1 approximately 2 x 10(5) s-1); (c) the neutral valinomycin species Val, at high [CCCP]0. (ii) In solutions containing NaCl, in our concentration range, the rate limiting species are Val-Na(+)-CCCP-. (iii) The apparent dissociation constant K*M of Val-M+ decreases with pH in SBPL vesicles but is independent of pH in vesicles prepared from PC + 6% PA. (iv) The differences in the ionic strength dependencies of kinetic data shows that the environments of Na+ and K+ binding sites on VAL are different. (v) In vesicle solutions containing 100 mM MCl, the cation selectivity of VAL (towards K+ in preference to Na+) is reduced when CCCP- is already bound to it in the membrane. The CCCP- dissociation constant of Val-M(+)-CCCP- is smaller with M+ = Na+ (approximatley 0.22 mM at 100 mM NaCl) when compared to that with M+ = K+ (approximately 2 mM at 100 mM KCl). Attributing these differences to the differences in electrostatic interaction between CCCP- and M+ in Val-M(+)-CCCP-, we can say that CCCP- binds closer to the Na+ binding site than to the K+ binding site on VAL.

摘要

通过温度跃迁在大豆磷脂(SBPL)囊泡膜上建立pH梯度ΔpH后,研究了缬氨霉素(VAL)和羰基氰化物间氯苯腙(CCCP)联合作用对ΔpH弛豫速率的增强作用。在注意到VAL和CCCP诱导的膜无序变化(使用尼日利亚菌素和莫能菌素介导的ΔpH衰减作为探针)后,可对ΔpH衰减速率增强的机制做出以下推断:(i)在含有KCl的溶液中,已确定限速物种为(a)低[Val]0和[CCCP]0时的Val-K(+)-CCCP-(转运速率常数k2约为3.2×10(3) s-1);(b)高[Val]0时的CCCPH(转运速率常数k1约为2×10(5) s-1);(c)高[CCCP]0时的中性缬氨霉素物种Val。(ii)在含有NaCl的溶液中,在我们的浓度范围内,限速物种为Val-Na(+)-CCCP-。(iii)在SBPL囊泡中,Val-M+的表观解离常数K*M随pH降低,但在由PC + 6% PA制备的囊泡中与pH无关。(iv)动力学数据的离子强度依赖性差异表明,VAL上Na+和K+结合位点的环境不同。(v)在含有100 mM MCl的囊泡溶液中,当CCCP-已在膜中与VAL结合时,VAL对阳离子的选择性(优先选择K+而非Na+)降低。与M+ = K+(100 mM KCl时约为2 mM)相比,Val-M(+)-CCCP-的CCCP-解离常数在M+ = Na+时较小(100 mM NaCl时约为0.22 mM)。将这些差异归因于Val-M(+)-CCCP-中CCCP-与M+之间静电相互作用的差异,我们可以说CCCP-在VAL上更靠近Na+结合位点而非K+结合位点。

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