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Multiple Domains in Caveolin-1 Control Its Intracellular Traffic

机译:Caveolin-1中的多个域控制其细胞内流量。

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摘要

Caveolin-1 is an integral membrane protein of caveolae that is thought to play an important role in both the traffic of cholesterol to caveolae and modulating the activity of multiple signaling molecules at this site. The molecule is synthesized in the endoplasmic reticulum, transported to the cell surface, and undergoes a poorly understood recycling itinerary. We have used mutagenesis to determine the parts of the molecule that control traffic of caveolin-1 from its site of synthesis to the cell surface. We identified four regions of the molecule that appear to influence caveolin-1 traffic. A region between amino acids 66 and 70, which is in the most conserved region of the molecule, is necessary for exit from the endoplasmic reticulum. The region between amino acids 71 and 80 controls incorporation of caveolin-1 oligomers into detergent-resistant regions of the Golgi apparatus. Amino acids 91–100 and 134–154 both control oligomerization and exit from the Golgi apparatus. Removal of other portions of the molecule has no effect on targeting of newly synthesized caveolin-1 to caveolae. The results suggest that movement of caveolin-1 among various endomembrane compartments is controlled at multiple steps.
机译:小窝蛋白-1是小窝蛋白的完整膜蛋白,被认为在胆固醇向小窝蛋白的运输以及调节该位点的多个信号分子的活性中起着重要作用。该分子在内质网中合成,转运至细胞表面,并经历了一个鲜为人知的循环路线。我们已经使用诱变来确定控制小窝蛋白1从其合成位点到细胞表面的运输量的分子部分。我们确定了似乎影响小窝蛋白1流量的分子的四个区域。氨基酸66和70之间的一个区域位于分子的最保守区域,对于从内质网中退出是必需的。氨基酸71和80之间的区域控制小窝蛋白1寡聚物掺入高尔基体的耐去污剂区域。氨基酸91-100和134-154都控制寡聚并从高尔基体中逸出。除去分子的其他部分对新合成的小窝蛋白-1靶向小窝蛋白没有影响。结果表明,caveolin-1在各种内膜隔室中的运动受多个步骤控制。

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