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Signal Sequence Recognition in Cotranslational Translocation by Protein Components of the Endoplasmic Reticulum Membrane

机译:内质网膜蛋白成分在共翻译移位中的信号序列识别

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We have investigated the role of membrane proteins and lipids during early phases of the cotranslational insertion of secretory proteins into the translocation channel of the endoplasmic reticulum (ER) membrane. We demonstrate that all steps, including the one during which signal sequence recognition occurs, can be reproduced with purified translocation components in detergent solution, in the absence of bulk lipids or a bilayer. Photocross-linking experiments with native membranes show that upon complete insertion into the channel signal sequences are both precisely positioned with respect to the protein components of the channel and contact lipids. Together, these results indicate that signal sequences are bound to a specific binding site at the interface between the channel and the surrounding lipids, and are recognized ultimately by protein–protein interactions. Our data also suggest that at least some signal sequences reach the binding site by transfer through the interior of the channel.
机译:我们已经研究了分泌蛋白向内质网(ER)膜易位通道的共翻译插入过程中膜蛋白和脂质的作用。我们证明了所有步骤,包括在其中发生信号序列识别的步骤,都可以在洗涤剂溶液中使用纯化的易位成分,不存在大量脂质或双层的情况下进行复制。用天然膜进行的光交联实验表明,完全插入通道后,信号序列都相对于通道和接触脂质的蛋白质成分都精确定位。总之,这些结果表明信号序列在通道和周围脂质之间的界面处结合到特定的结合位点,并最终通过蛋白质-蛋白质相互作用被识别。我们的数据还表明,至少一些信号序列通过在通道内部的转移而到达结合位点。

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