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首页> 外文期刊>Journal of cell biology >Direct Membrane Insertion of Voltage-dependent Anion-selective Channel Protein Catalyzed by Mitochondrial Tom20
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Direct Membrane Insertion of Voltage-dependent Anion-selective Channel Protein Catalyzed by Mitochondrial Tom20

机译:线粒体Tom20催化的电压依赖性阴离子选择性通道蛋白的直接膜插入。

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Insertion of newly synthesized proteins into or across the mitochondrial outer membrane is initiated by import receptors at the surface of the organelle. Typically, this interaction directs the precursor protein into a preprotein translocation pore, comprised of Tom40. Here, we show that a prominent β-barrel channel protein spanning the outer membrane, human voltage- dependent anion-selective channel (VDAC), bypasses the requirement for the Tom40 translocation pore during biogenesis. Insertion of VDAC into the outer membrane is unaffected by plugging the translocation pore with a partially translocated matrix preprotein, and mitochondria containing a temperature-sensitive mutant of Tom40 insert VDAC at the nonpermissive temperature. Synthetic liposomes harboring the cytosolic domain of the human import receptor Tom20 efficiently insert newly synthesized VDAC, resulting in transbilayer transport of ATP. Therefore, Tom20 transforms newly synthesized cytosolic VDAC into a transmembrane channel that is fully integrated into the lipid bilayer.
机译:新合成的蛋白质插入或穿过线粒体外膜是由细胞器表面的输入受体引发的。通常,这种相互作用将前体蛋白导入由Tom40组成的蛋白前转运孔。在这里,我们显示了跨越外膜的显着β桶通道蛋白,即人类电压依赖性阴离子选择性通道(VDAC),在生物发生过程中绕过了Tom40易位孔的需求。通过用部分易位的基质前蛋白塞入易位孔,不会影响VDAC插入外膜,而线粒体中含有Tom40的温度敏感突变体,在不允许的温度下插入了VDAC。带有人类输入受体Tom20胞质结构域的合成脂质体可有效插入新合成的VDAC,从而导致ATP的跨双层转运。因此,Tom20将新合成的胞质VDAC转化为跨膜通道,该通道完全整合到脂质双层中。

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