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首页> 外文期刊>Journal of Molecular Biology >Preprotein translocase of the outer mitochondrial membrane: reconstituted Tom40 forms a characteristic TOM pore.
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Preprotein translocase of the outer mitochondrial membrane: reconstituted Tom40 forms a characteristic TOM pore.

机译:线粒体外膜的蛋白前转位酶:重组的Tom40形成了特征性的TOM孔。

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摘要

Tom40 is the central pore-forming component of the translocase of the outer mitochondrial membrane (TOM complex). Different views exist about the secondary structure and electrophysiological characteristics of Tom40 from Saccharomyces cerevisiae and Neurospora crassa. We have directly compared expressed and renatured Tom40 from both species and find a high content of beta-structure in circular dichroism measurements in agreement with refined secondary structure predictions. The electrophysiological characterization of renatured Tom40 reveals the same characteristics as the purified TOM complex or mitochondrial outer membrane vesicles, with two exceptions. The total conductance of the TOM complex and outer membrane vesicles is twofold higher than the total conductance of renatured Tom40, consistent with the presence of two TOM pores. TOM complex and outer membrane vesicles possess a strongly enhanced sensitivity to a mitochondrial presequence compared to Tom40 alone, in agreement with the presence of several presequence binding sites in the TOM complex, suggesting a role of the non-channel Tom proteins in regulating channel activity.
机译:Tom40是线粒体外膜(TOM复合物)的转位酶的中心成孔成分。对于酿酒酵母和神经孢霉Tom40的二级结构和电生理特性存在不同的看法。我们直接比较了两种物种表达和复性的Tom40,并在圆二色性测量中发现了高含量的β结构,这与精确的二级结构预测相符。复性的Tom40的电生理特性显示与纯化的TOM复合物或线粒体外膜囊泡相同的特征,只有两个例外。 TOM复合物和外膜囊泡的总电导率比变性的Tom40的总电导率高两倍,这与存在两个TOM孔一致。与单独的Tom40相比,TOM复合物和外膜囊泡对线粒体序列的敏感性大大增强,这与TOM复合物中存在多个序列结合位点相一致,这表明非通道Tom蛋白在调节通道活性中的作用。

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