首页> 外文会议>NATO advanced research workshop on biological, biophysical theoretical aspects of polymer structure and transport >TRANSLOCATION OF MACROMOLECULES ACROSS MEMBRANES AND THROUGH AQUEOUS CHANNELS: Translocation across membranes
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TRANSLOCATION OF MACROMOLECULES ACROSS MEMBRANES AND THROUGH AQUEOUS CHANNELS: Translocation across membranes

机译:穿过膜的大分子易刻和通过含水通道:跨膜易位

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Maintaining the permeability barrier of membranes is essential for cell viability. Cells allow the passage of small hydrophilic ions across the membrane by selectively gating transmembrane aqueous pores. Over the past decade an increasing amount of evidence supports a model for which transport of larger molecules such as proteins, DNA and phage also occurs through the selective gating of transmembrane aqueous channels. Studies are presented on the mechanisms by which proteins are translocated across the endoplasmic reticulum and E. coli plasma membrane through transmembrane protein-conducting channels. The model of a protein-conducting channel raises a number of challenging questions. First, if proteins are moving across through a transmembrane aqueous channel, then what is moving the protein across the membrane? Second, membrane proteins are synthesized using the same membrane-bound machinery as is used for translocating proteins across the membranes. Thus, how could a transmembrane protein-conducting channel account for the biogenesis of proteins which themselves must eventually end up spanning the bilayer multiple times? The evidence for protein-conducting channels is reviewed, and the mechanism(s) proposed for transport will be evaluated. The experiments also focus on tests for the role of aqueous channels for the biogenesis of membrane proteins.
机译:保持膜的渗透性屏障是细胞存活必不可少的。细胞允许穿过膜的小的亲水性的离子通过有选择地选通的跨膜水孔中的通路。在过去的十年越来越的证据量支持其中较大的分子,如蛋白质,DNA和噬菌体的运输时,也会发生通过跨膜水性通道的选择性门控的模型。的研究提出了关于通过蛋白质跨内质网和大肠杆菌质膜通过跨膜蛋白传导通道易位的机制。蛋白质传导通道的模式提出了一些具有挑战性的问题。首先,如果蛋白质是通过跨膜水性通道移动跨越,那么什么正在移动穿过膜的蛋白?第二,膜蛋白使用作为用于通过膜转运蛋白相同的膜结合的机械合成。因此,怎么可能一个跨膜蛋白传导通道占蛋白质,其本身必须最终结束了跨越双层多次的生源?用于蛋白质传导通道的证据综述,并提出了用于传输的机制(S)进行评价。实验还着眼于水性通道的膜蛋白的生物合成中的作用的测试。

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