Lohret T A, Jensen R E, Kinnally K W
Department of Biological Sciences, University at Albany, SUNY, New York 12222, USA.
J Cell Biol. 1997 Apr 21;137(2):377-86. doi: 10.1083/jcb.137.2.377.
We previously showed that the conductance of a mitochondrial inner membrane channel, called MCC, was specifically blocked by peptides corresponding to mitochondrial import signals. To determine if MCC plays a role in protein import, we examined the relationship between MCC and Tim23p, a component of the protein import complex of the mitochondrial inner membrane. We find that antibodies against Tim23p, previously shown to inhibit mitochondrial protein import, inhibit MCC activity. We also find that MCC activity is altered in mitochondria isolated from yeast carrying the tim23-1 mutation. In contrast to wild-type MCC, we find that the conductance of MCC from the tim23-1 mutant is not significantly blocked by mitochondrial presequence peptides. Tim23 antibodies and the tim23-1 mutation do not, however, alter the activity of PSC, a presequence-peptide sensitive channel in the mitochondrial outer membrane. Our results show that Tim23p is required for normal MCC activity and raise the possibility that precursors are translocated across the inner membrane through the pore of MCC.
我们先前表明,一种名为MCC的线粒体内膜通道的电导会被与线粒体导入信号相对应的肽特异性阻断。为了确定MCC是否在蛋白质导入中发挥作用,我们研究了MCC与Tim23p之间的关系,Tim23p是线粒体内膜蛋白质导入复合体的一个组成部分。我们发现,先前已证明能抑制线粒体蛋白质导入的抗Tim23p抗体可抑制MCC活性。我们还发现,从携带tim23 - 1突变的酵母中分离出的线粒体中,MCC活性发生了改变。与野生型MCC不同,我们发现来自tim23 - 1突变体的MCC的电导不会被线粒体前导序列肽显著阻断。然而,Tim23抗体和tim23 - 1突变并不会改变PSC的活性,PSC是线粒体外膜中一种对前导序列肽敏感的通道。我们的结果表明,Tim23p是正常MCC活性所必需的,并增加了前体通过MCC的孔道穿过内膜的可能性。