首页> 美国卫生研究院文献>Biophysical Journal >Interactions between H+ and Ca2+ near cardiac L-type calcium channels: evidence for independent channel-associated binding sites.
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Interactions between H+ and Ca2+ near cardiac L-type calcium channels: evidence for independent channel-associated binding sites.

机译:心脏L型钙通道附近H +和Ca2 +之间的相互作用:独立的通道相关结合位点的证据。

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摘要

Monovalent and divalent ions are known to affect voltage-gated ion channels by the screening of, and/or binding to, negative charges located on the surface of cell membranes within the vicinity of the channel protein. In this investigation, we studied gating shifts of cardiac L-type calcium channels induced by extracellular H+ and Ca2+ to determine whether these cations interact at independent or competitive binding sites. At constant pHo (7.4), Cao-induced gating shifts begin to approach a maximum value (approximately equal to 17 mV) at concentrations of extracellular calcium of > or = 40 mM. A fraction of the calcium-dependent gating shift could be titrated with an effective pKa = 6.9 indicating common and competitive access to H+ and Ca2+ ions for at least one binding site. However, if pHo is lowered when Cao is > or = 40 mM, additional shifts in gating are measured, suggesting a subpopulation of sites to which Ca2+ and H+ bind independently. The interdependence of L-channel gating shifts and Cao and pHo was well described by the predictions of surface potential theory in which two sets of binding sites are postulated; site 1 (pKa = 5.5) is accessible only to H+ ions and site 2 (pKa = 6.9) is accessible to both Ca2+ and H+ ions. Theoretical computations generated with this model are consistent with previously determined data, in which interactions between these two cations were not studied, in addition to the present experiments in which interactions were systematically probed.
机译:已知一价和二价离子通过筛选和/或结合位于通道蛋白附近细胞膜表面的负电荷来影响电压门控离子通道。在这项研究中,我们研究了细胞外H +和Ca2 +诱导的心脏L型钙通道的门控转移,以确定这些阳离子在独立或竞争性结合位点是否相互作用。在恒定的pHo(7.4)下,当细胞外钙的浓度大于或等于40 mM时,Cao诱导的门控位移开始接近最大值(大约等于17 mV)。钙依赖性门控位移的一小部分可以用有效pKa = 6.9进行滴定,这表明至少一个结合位点可以共同且竞争地获取H +和Ca2 +离子。但是,如果当Cao>或= 40 mM时pHo降低,则将测量门控的其他变化,这表明Ca2 +和H +独立结合的位点亚群。 L通道门控位移与Cao和pHo的相互依赖性通过表面电势理论的预测得到了很好的描述,其中假设了两组结合位点。位点1(pKa = 5.5)仅可用于H +离子,位点2(pKa = 6.9)可用于Ca2 +和H +离子。用该模型产生的理论计算结果与先前确定的数据一致,其中不对这两个阳离子之间的相互作用进行研究,此外,还对系统研究相互作用的本实验进行了研究。

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