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内向整流钾通道中观察到的最大电导。

A conductance maximum observed in an inward-rectifier potassium channel.

作者信息

Lu Z, MacKinnon R

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

J Gen Physiol. 1994 Sep;104(3):477-86. doi: 10.1085/jgp.104.3.477.

Abstract

One prediction of a multi-ion pore is that its conductance should reach a maximum and then begin to decrease as the concentration of permeant ion is raised equally on both sides of the membrane. A conductance maximum has been observed at the single-channel level in gramicidin and in a Ca(2+)-activated K+ channel at extremely high ion concentration (> 1,000 mM) (Hladky, S. B., and D. A. Haydon. 1972. Biochimica et Biophysica Acta. 274:294-312; Eisenmam, G., J. Sandblom, and E. Neher. 1977. In Metal Ligand Interaction in Organic Chemistry and Biochemistry. 1-36; Finkelstein, P., and O. S. Andersen. 1981. Journal of Membrane Biology. 59:155-171; Villarroel, A., O. Alvarez, and G. Eisenman. 1988. Biophysical Journal. 53:259a. [Abstr.]). In the present study we examine the conductance-concentration relationship in an inward-rectifier K+ channel, ROMK1. Single channels, expressed in Xenopus oocytes, were studied using inside-out patch recording in the absence of internal Mg2+ to eliminate blockade of outward current. Potassium, at equal concentrations on both sides of the membrane, was varied from 10 to 1,000 mM. As K+ was raised from 10 mM, the conductance increased steeply and reached a maximum value (39 pS) at 300 mM. The single-channel conductance then became progressively smaller as K+ was raised beyond 300 mM. At 1000 mM K+, the conductance was reduced to approximately 75% of its maximum value. The shape of the conductance-concentration curve observed in the ROMK1 channel implies that it has multiple K(+)-occupied binding sites in its conduction pathway.

摘要

多离子通道的一个预测是,当膜两侧渗透离子的浓度同等升高时,其电导应达到最大值,然后开始下降。在极高离子浓度(>1000 mM)下,在短杆菌肽和Ca(2+)激活的K+通道的单通道水平上观察到了电导最大值(Hladky, S. B., and D. A. Haydon. 1972. 《生物化学与生物物理学报》. 274:294 - 312;Eisenmam, G., J. Sandblom, and E. Neher. 1977. 《有机化学与生物化学中的金属配体相互作用》. 1 - 36;Finkelstein, P., and O. S. Andersen. 1981. 《膜生物学杂志》. 59:155 - 171;Villarroel, A., O. Alvarez, and G. Eisenman. 1988. 《生物物理杂志》. 53:259a. [摘要])。在本研究中,我们研究了内向整流K+通道ROMK1中的电导 - 浓度关系。在非洲爪蟾卵母细胞中表达的单通道,在没有内部Mg2+以消除外向电流阻断的情况下,使用内向外膜片钳记录进行研究。膜两侧浓度相等的钾离子浓度在10到1000 mM之间变化。当钾离子浓度从10 mM升高时,电导急剧增加,并在300 mM时达到最大值(39 pS)。当钾离子浓度超过300 mM时,单通道电导逐渐变小。在1000 mM钾离子浓度下,电导降低到其最大值的约75%。在ROMK1通道中观察到的电导 - 浓度曲线形状表明,其传导途径中有多个被钾离子占据的结合位点。

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