Antonenko Y N, Smith D, Kinnally K W, Tedeschi H
Department of Biological Sciences, State University of New York at Albany 12222.
Biochim Biophys Acta. 1994 Sep 14;1194(2):247-54. doi: 10.1016/0005-2736(94)90306-9.
Exposure of patch-clamped mitoplasts to alkaline pH induces a reversible conductance increase (Antonenko, Yu. N., Kinnally, K.W. and Tedeschi, H. (1991) J. Membr. Biol. 124, 151-158) which is due to an increase in open probability of a channel activity of 15 pS and larger transitions. The present study defines in more detail some of the characteristics of the channel activity involved in this conductance increase. The results suggest the presence of two channels one slightly cation-selective of approx. 15 pS (referred to here as alkaline-induced cation-selective activity, ACA) and another slightly anion selective of approx. 45 pS (referred to as alkaline-induced anion-selective activity, AAA). The possible implication of these results in relation to other channels and the permeability transitions reported by others using mitochondrial suspensions is discussed.
将膜片钳制的线粒体暴露于碱性pH值会导致可逆的电导增加(Antonenko, Yu. N., Kinnally, K.W.和Tedeschi, H. (1991) J. Membr. Biol. 124, 151 - 158),这是由于一个15 pS及更大跃迁的通道活性开放概率增加所致。本研究更详细地定义了参与这种电导增加的通道活性的一些特征。结果表明存在两种通道,一种约15 pS,对阳离子有轻微选择性(这里称为碱性诱导的阳离子选择性活性,ACA),另一种约45 pS,对阴离子有轻微选择性(称为碱性诱导的阴离子选择性活性,AAA)。讨论了这些结果与其他通道以及其他人使用线粒体悬浮液报道的通透性转变可能的关联。