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Down-Regulation of Cell Surface Receptors Is Modulated by Polar Residues within the Transmembrane Domain

机译:细胞表面受体的下调受极性调节 跨膜域内的残基

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摘要

How recycling receptors are segregated from down-regulated receptors in the endosome is unknown. In previous studies, we demonstrated that substitutions in the transferrin receptor (TR) transmembrane domain (TM) convert the protein from an efficiently recycling receptor to one that is rapidly down regulated. In this study, we demonstrate that the “signal” within the TM necessary and sufficient for down-regulation is Thr11Gln17Thr19 (numbering in TM). Transplantation of these polar residues into the wild-type TR promotes receptor down-regulation that can be demonstrated by changes in protein half-life and in receptor recycling. Surprisingly, this modification dramatically increases the TR internalization rate as well (∼79% increase). Sucrose gradient centrifugation and cross-linking studies reveal that propensity of the receptors to self-associate correlates with down-regulation. Interestingly, a number of cell surface proteins that contain TM polar residues are known to be efficiently down-regulated, whereas recycling receptors for low-density lipoprotein and transferrin conspicuously lack these residues. Our data, therefore, suggest a simple model in which specific residues within the TM sequences dramatically influence the fate of membrane proteins after endocytosis, providing an alternative signal for down-regulation of receptor complexes to the well-characterized cytoplasmic tail targeting signals.
机译:回收受体如何与内体中的下调受体分离。在以前的研究中,我们证明了转铁蛋白受体(TR)跨膜结构域(TM)中的取代将蛋白质从有效回收的受体转变为迅速下调的受体。在这项研究中,我们证明了TM内下调所必需和充分的“信号”是Thr11Gln17Thr19(TM中的编号)。这些极性残基移植到野生型TR促进受体下调,这可以通过蛋白质半衰期和受体回收的变化来证明。令人惊讶的是,这种修饰也大大提高了TR的内在化率(增加了约79%)。蔗糖梯度离心和交联研究表明,受体自缔合的倾向与下调相关。有趣的是,许多含有TM极性残基的细胞表面蛋白被有效地下调,而低密度脂蛋白和运铁蛋白的回收受体明显缺乏这些残基。因此,我们的数据提出了一个简单的模型,其中TM序列内的特定残基在胞吞作用之后会显着影响膜蛋白的命运,从而为受体复合物下调至特征明确的细胞质尾巴靶向信号提供了另一种信号。

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