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Protein-lipid interactions in membrane trafficking at the Golgi complex

机译:高尔基复合体膜运输中的蛋白质 - 脂质相互作用

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摘要

The integrated interplay between proteins and lipids drives many key cellular processes, such as signal transduction, cytoskeleton remodelling and membrane trafficking. The last of these, membrane trafficking, has the Golgi complex as its central station. Not only does this organelle orchestrates the biosynthesis, transport and intracellular distribution of many proteins and lipids, but also its own function and structure is dictated by intimate functional and physical relationships between protein-based and lipid-based machineries. These machineries are involved in the control of the fundamental events that govern membrane traffic, such as in the budding, fission and fusion of transport intermediates, in the regulation of the shape and geometry of the Golgi membranes themselves, and, finally, in the generation of "signals" that can have local actions in the secretory system, or that may affect other cellular systems. Lipid-protein interactions rely on the abilities of certain protein domains to recognize specific lipids. These interactions are mediated, in particular, through the headgroups of the phospholipids, although a few of these protein domains are able to specifically interact with the phospholipid acyl chains. Recent evidence also indicates that some proteins and/or protein domains are more sensitive to the physical environment of the membrane bilayer (such as its curvature) than to its chemical composition.
机译:蛋白质和脂质之间的整合相互作用驱动许多关键的细胞过程,例如信号转导,细胞骨架重塑和膜运输。其中的最后一个是膜运输,以高尔基综合体为中心。该细胞器不仅可以协调许多蛋白质和脂质的生物合成,运输和细胞内分布,而且其自身的功能和结构还取决于蛋白质和脂质之间的紧密的功能和物理关系。这些机器参与控制膜运输的基本事件的控制,例如运输中间体的萌芽,裂变和融合,高尔基膜本身的形状和几何形状的调控,以及最终的生成。可能在分泌系统中具有局部作用或可能影响其他蜂窝系统的“信号”。脂质-蛋白质相互作用依赖于某些蛋白质结构域识别特定脂质的能力。这些相互作用特别是通过磷脂的头基介导的,尽管这些蛋白质结构域中的一些能够与磷脂酰基链特异性地相互作用。最近的证据还表明,某些蛋白质和/或蛋白质结构域对膜双层的物理环境(例如其曲率)比对其化学组成更敏感。

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  • 作者

    De Matteis, M.A.; Godi, A.;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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