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

机译:皮肤肌肉纤维中的电位和K +活性。一个简单的唐南均衡的证据。

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摘要

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.
机译:已经有人提出,由于肌丝的固定电荷,在化学或机械上蒙皮的肌纤维中用常规的微电极测得的电势是由Donnan平衡引起的。通过用3 M KCl填充微电极测量纤维和镀液之间的分布电势(Ed)和K +离子选择性微电极(aik / aok)的K +活性梯度(aik / aok),在机械剥皮的青蛙(Rana pipiens)半腱肌纤维中测试了该假设。 KISE)。如果带皮的纤维是Donnan系统,则随着pH值的降低,Ed应变得更正,从而改变肌丝上的固定电荷。与此预期一致,在含ATP的溶液中,在pH 7、6和5下,Ed分别为-4.4,-0.6和+4.8 mV,在无ATP的溶液中为-6.5,-2.2和+8.4 mV。唐南平衡还要求所有可移动的离子物种均处于电化学平衡状态。在含ATP的溶液中,对于pH值为7的K +而言,情况确实如此。然而,在pH值为5时,KISE表明K +不处于平衡状态。平均Ed对K +平衡电位为5.9 mV正,aik / aok为1.04,而Donnan预测为0.83。相反,在不含ATP的溶液中进行的KISE测量表明,在所有研究的pH下K +处于平衡状态。包含ATP的介质中的皮肤纤维不是平衡系统,因为会发生ATPase反应。在我们的条件下,青蛙肌原纤维在pH 7和5时分别水解0.4和0.08μmolATP / min X mg肌原纤维蛋白。建议在ATP存在下,Ed是Donnan和扩散势的叠加,后者是由阴离子底物和通过带电的肌丝晶格扩散的产物的迁移率差异引起的。宏观电子中性要求与主要的抗衡离子K +的扩散耦合。这种耦合可能是非平衡K +分布的起源。

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