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The transmembrane domain of the respiratory syncytial virus F protein is an orientation-independent apical plasma membrane sorting sequence

机译:呼吸的跨膜域合胞病毒F蛋白是一个orientation-independent顶端等离子体膜排序序列

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The processes that facilitate transport of integral membrane proteins though the secretory pathway and subsequently target them to particular cellular membranes are relevant to almost every field of biology. These transport processes involve integration of proteins into the membrane of the endoplasmic reticulum (ER), passage from the ER to the Golgi, and post-Golgi trafficking. The respiratory syncytial virus (RSV) fusion (F) protein is a type I integral membrane protein that is uniformly distributed on the surface of infected nonpolarized cells and localizes to the apical plasma membrane of polarized epithelial cells. We expressed wild-type or altered RSV F proteins to gain a better understanding of secretory transport and plasma membrane targeting of type I membrane proteins in polarized and nonpolarized epithelial cells. Our findings reveal a novel, orientation-independent apical plasma membrane targeting function for the transmembrane domain of the RSV F protein in polarized epithelial cells. This work provides a basis for a more complete understanding of the role of the transmembrane domain and cytoplasmic tail of viral type I integral membrane proteins in secretory transport and plasma membrane targeting in polarized and nonpolarized cells.
机译:便于运输的过程整合膜蛋白分泌途径和随后的目标特定细胞膜相关几乎所有的生物学领域。过程包括蛋白质融入内质网(ER)的膜,通过从内质网到高尔基体的,和post-Golgi人口贩卖。(RSV) (F)融合蛋白是一种我积分均匀分布在膜蛋白感染无极性细胞的表面本地化的顶端质膜极化上皮细胞。野生型或改变RSV F蛋白获得分泌运输和更好的理解质膜定位的I型膜蛋白质在极化和不极化上皮细胞。orientation-independent顶端等离子体膜目标函数为跨膜域在极化上皮RSV F蛋白细胞。完整的理解的作用跨膜域和胞质尾膜蛋白在病毒I型积分分泌运输和质膜定位在极化和无极性细胞。

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