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Integrity of all four transmembrane domains of the tetraspanin uroplakin Ib is required for its exit from the ER

机译:四跨膜蛋白uroplakin Ib的所有四个跨膜结构域的完整性均需要从ER退出

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摘要

The surface of the mammalian urinary bladder is covered by a crystalline, asymmetric unit membrane (AUM) structure that contains the four major uroplakins (UPs): Ia, Ib, II and IIIa. UPIa and UPIb belong to the family of tetraspanins. Although UPIa and UPIb are structurally conserved, only UPIb could exit from the endoplasmic reticulum (ER) and reach the cell surface when expressed alone in 293T cells. Modifications of the large extracellular loop of UPIb, such as mutation of the N-glycosylation site or the cysteines involved in the formation of three disulfide bridges, or exchanging the large luminal loop of UPIb with that of UPIa did not affect the ability of UPIb to reach the cell surface. However, modifications of any of the four transmembrane domains of UPIb led to ER retention, suggesting that the proper formation of helical bundles consisting of the tetraspanin transmembrane domains is a prerequisite for UPIb to exit from the ER. Results of sedimentation analysis suggested that aggregate formation is a mechanism for ER retention.
机译:哺乳动物膀胱的表面被结晶的不对称单位膜(AUM)结构覆盖,该结构包含四个主要的尿道素(UPs):Ia,Ib,II和IIIa。 UPIa和UPIb属于四跨膜蛋白家族。尽管UPIa和UPIb在结构上是保守的,但是当UPIb在293T细胞中单独表达时,它可以从内质网(ER)退出并到达细胞表面。 UPIb的大细胞外环的修饰,例如参与形成三个二硫键的N-糖基化位点或半胱氨酸的突变,或将UPIb的大管腔环与UPIa的交换不影响UPIb的能力到达细胞表面。然而,UPIb的四个跨膜结构域中任何一个的修饰导致ER保留,这表明由四跨膜蛋白跨膜结构域组成的螺旋束的正确形成是UPIb从ER退出的先决条件。沉积分析结果表明,聚集体形成是ER保留的机制。

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