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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >A single Sec61-complex functions as a protein-conducting channel.
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A single Sec61-complex functions as a protein-conducting channel.

机译:单个Sec61复合体可作为蛋白质传导通道。

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摘要

During cotranslational translocation of proteins into the endoplasmic reticulum (ER) translating ribosomes bind to Sec61-complexes. Presently two models exist how these membrane protein complexes might form protein-conducting channels. While electron microscopic data suggest that a ring-like structure consisting of four Sec61-complexes build the channel, the recently solved crystal structure of a homologous bacterial protein complex led to the speculation that the actual tunnel is formed by just one individual Sec61-complex. Using protease protection assays together with quantitative immunoblotting we directly examined the structure of mammalian protein-conducting channels. We found that in native ER-membranes one single Sec61alpha-molecule is preferentially protected by a membrane bound ribosome, both, in the presence and absence of nascent polypeptides. In addition we present evidence that the nascent polypeptide destabilizes the ring-like translocation apparatus formed by four Sec61-complexes. Moreover, we found that after solubilization of ER-membranes a single Sec61-complex is sufficient to protect the nascent polypeptide chain against added proteases. Finally, we could show that this single Sec61-complex allows the movement of the nascent chain, when it has been released from the ribosome by puromycin treatment. Collectively, our data suggest that the active protein-conducting channel in the ER is formed by a single Sec61-complex.
机译:在蛋白质共翻译易位到内质网(ER)期间,翻译核糖体与Sec61复合体结合。目前存在两个模型,这些膜蛋白复合物如何形成蛋白传导通道。虽然电子显微镜数据表明由四个Sec61复合物组成的环状结构可构成通道,但最近解析的同源细菌蛋白复合物的晶体结构导致人们推测实际的通道仅由一个单独的Sec61复合物形成。使用蛋白酶保护测定法和定量免疫印迹,我们直接检查了哺乳动物蛋白传导通道的结构。我们发现,在天然的ER膜中,单个Sec61alpha分子在存在和不存在新生多肽的情况下均优先受到膜结合的核糖体的保护。另外,我们提供了新生多肽使由四个Sec61-复合物形成的环状易位装置不稳定的证据。而且,我们发现在ER膜溶解后,单个Sec61复合物足以保护新生多肽链免受添加的蛋白酶的影响。最后,我们可以证明,当通过嘌呤霉素处理将其从核糖体中释放出来时,这条单一的Sec61复合物就可以使新生链运动。总体而言,我们的数据表明,ER中的活性蛋白传导通道是由单个Sec61复合物形成的。

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