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皮肤肌肉纤维中的电位和钾离子活性。反对简单唐南平衡的证据。

Potential and K+ activity in skinned muscle fibers. Evidence against a simple Donnan equilibrium.

作者信息

Godt R E, Baumgarten C M

出版信息

Biophys J. 1984 Feb;45(2):375-82. doi: 10.1016/S0006-3495(84)84161-2.

Abstract

It has been suggested that potentials measured with conventional microelectrodes in chemically or mechanically skinned muscle fibers arise from a Donnan equilibrium due to myofilament fixed charges. This hypothesis was tested in mechanically skinned frog (Rana pipiens) semitendinosus fibers by measuring the distribution potential (Ed) between fiber and bath with 3 M KCl-filled microelectrodes and the K+ activity gradient (aik/aok) with K+ ion-selective microelectrodes (KISE). If skinned fibers are a Donnan system, Ed should become more positive as pH is decreased, altering the fixed charge on the myofilaments. Consistent with this expectation, Ed was -4.4, -0.6, and +4.8 mV in ATP-containing solutions and -6.5, -2.2, and +8.4 mV in ATP-free solutions at pH 7, 6, and 5, respectively. Donnan equilibrium also requires that all mobile ionic species be in electrochemical equilibrium. In ATP-containing solutions, this was true for K+ at pH 7. At pH 5, however, KISE indicated that K+ was not in equilibrium; average Ed was 5.9 mV positive to the K+ equilibrium potential, and aik/aok was 1.04, while the Donnan prediction was 0.83. In contrast, KISE measurements in ATP-free solutions indicated that K+ was in equilibrium at all pH studied. Skinned fibers in ATP-containing media are not equilibrium systems because ATPase reactions occur. Under our conditions, frog myofibrils hydrolyze 0.4 and 0.08 mumol ATP/min X mg myofibrillar protein at pH 7 and 5, respectively. It is suggested that in the presence of ATP, Ed is a superposition of Donnan and diffusion potentials, the latter arising from differences in the mobilities of anionic substrate and products that diffuse through the charged myofilament lattice. A coupling to diffusion of K+, the predominant counter ion, is required for macroscopic electroneutrality. This coupling may be the origin of the nonequilibrium K+ distribution.

摘要

有人提出,在化学或机械去膜的肌纤维中,用传统微电极测量的电位是由于肌丝固定电荷产生的唐南平衡所致。通过用3M KCl填充的微电极测量纤维与浴之间的分布电位(Ed)以及用K⁺离子选择性微电极(KISE)测量K⁺活度梯度(aik/aok),在机械去膜的青蛙(豹蛙)半腱肌纤维中对这一假设进行了检验。如果去膜纤维是一个唐南系统,随着pH值降低,Ed应该变得更正,从而改变肌丝上的固定电荷。与这一预期一致,在含ATP的溶液中,pH值为7、6和5时,Ed分别为-4.4、-0.6和+4.8 mV,在无ATP的溶液中分别为-6.5、-2.2和+8.4 mV。唐南平衡还要求所有可移动离子物种处于电化学平衡。在含ATP的溶液中,pH值为7时K⁺符合这一情况。然而,在pH值为5时,KISE表明K⁺并不处于平衡状态;平均Ed比K⁺平衡电位正5.9 mV,aik/aok为1.04,而唐南预测值为0.83。相比之下,在无ATP溶液中的KISE测量表明,在所研究的所有pH值下K⁺都处于平衡状态。含ATP介质中的去膜纤维不是平衡系统,因为会发生ATP酶反应。在我们的条件下,青蛙肌原纤维在pH值为7和5时分别以每分钟每毫克肌原纤维蛋白水解0.4和0.08 μmol ATP。有人提出,在有ATP存在的情况下,Ed是唐南电位和扩散电位的叠加,后者源于通过带电肌丝晶格扩散的阴离子底物和产物迁移率的差异。为了实现宏观电中性,需要与主要抗衡离子K⁺的扩散相耦合。这种耦合可能是K⁺非平衡分布的起源。

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本文引用的文献

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The colorimetric determination of phosphorus.磷的比色测定法。
Biochem J. 1932;26(2):292-7. doi: 10.1042/bj0260292.
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The Donnan equilibrium.唐南平衡
Prog Biophys Biophys Chem. 1956;6:57-84.

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