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The high-conductance channel of porin-less yeast mitochondria

机译:无孔蛋白酵母线粒体的高传导通道

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摘要

Patch-clamp and planar bilayer experiments on porin-less yeast mitochondria have allowed the characterization of a cationic channel activated at matrix-side positive (unphysiological) potentials. In voltage-pulse experiments, inactivation was a faster process than activation and the time constant for inactivation was more steeply dependent on voltage than the one for activation. The channel exhibited various conductance states whose occupancy depended on the applied transmembrane potential. In bilayer experiments, the presence of the pCOx-IV leader peptide induced fast gating in a voltage-dependent manner. A comparison with previously described activities suggests that the pore may coincide with the peptide-sensitive channel (PSC) (Thieffry et al. (1988) EMBO J. 7, 1449–1454) as well as with two other activities (Dibanich et al. (1989) Eur. J. Biochem. 181, 703–708; Tedeschi et al. (1987) J. Membr. Biol. 97, 21–29) assigned to the mitochondrial outer membrane. The possible relationship of this channel to the mitochondrial megachannel is discussed.
机译:在无孔蛋白的酵母线粒体上进行膜片钳和平面双层实验,可以表征在基质侧正(非生理)电势下激活的阳离子通道。在电压脉冲实验中,灭活是比激活更快的过程,并且灭活的时间常数比电压更强烈地依赖于电压。该通道表现出各种电导状态,其占用率取决于所施加的跨膜电势。在双层实验中,pCOx-IV前导肽的存在以电压依赖性方式诱导快速门控。与先前描述的活性进行比较表明,该孔可能与肽敏感通道(PSC)(Thieffry等(1988)EMBO J. 7,1449-1454)以及其他两种活性(Dibanich等(1988))一致。 (1989)Eur。J. Biochem。181,703-708; Tedeschi等人(1987)J. Membr。Biol。97,21-29)分配给线粒体外膜。讨论了该通道与线粒体大通道的可能关系。

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