首页> 美国卫生研究院文献>Journal of Virology >Leukemogenic membrane glycoprotein encoded by Friend spleen focus-forming virus: transport to cell surfaces and shedding are controlled by disulfide-bonded dimerization and by cleavage of a hydrophobic membrane anchor.
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Leukemogenic membrane glycoprotein encoded by Friend spleen focus-forming virus: transport to cell surfaces and shedding are controlled by disulfide-bonded dimerization and by cleavage of a hydrophobic membrane anchor.

机译:Friend脾脏聚焦形成病毒编码的致白血病膜糖蛋白:通过二硫键结合的二聚作用和疏水膜锚的裂解来控制向细胞表面的运输和脱落。

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摘要

The leukemogenic glycoprotein (gp55) encoded by Friend spleen focus-forming virus is predominantly retained in the rough endoplasmic reticulum (RER). However, a small proportion (ca. 5%) is processed to form a derivative that occurs on plasma membranes and causes mitosis of infected erythroblasts. We have now found that gp55 folds heterogeneously in the RER to form components with different disulfide bonds and that this difference may determine their processing fates. RER gp55 consists predominantly of monomers with intrachain disulfide bonds. In contrast, the processed molecules are disulfide-bonded dimers. These dimers are extensively modified in transit to cell surfaces by conversion of four N-linked high-mannose oligosaccharides to complex derivatives and by attachment of a sialylated O-linked oligosaccharide. The plasma membrane dimers are then slowly shed into the medium by a mechanism that involves proteolytic cleavage of approximately 25 membrane-anchoring hydrophobic amino acids from the carboxyl termini of the glycoproteins. Consequently, shed molecules have shorter polypeptide chains than cell-associated gp55. We conclude that gp55 folds into different disulfide-bonded components that do not substantially isomerize, and that only one specific dimer is competent for export from the RER. Mitogenic activity of gp55 could be caused by the cell surface dimers, by the shed derivative, or by the carboxyl-terminal hydrophobic anchors that remain in the membranes after the shedding reaction.
机译:Friend脾脏聚焦形成病毒编码的致白血病糖蛋白(gp55)主要保留在粗糙的内质网(RER)中。但是,一小部分(约5%)被加工形成一种衍生物,该衍生物出现在质膜上,并导致受感染的成红细胞有丝分裂。现在我们发现gp55在RER中异质折叠形成具有不同二硫键的组分,这种差异可能决定了它们的加工命运。 RER gp55主要由具有链内二硫键的单体组成。相反,加工的分子是二硫键结合的二聚体。这些二聚体通过将四个N-连接的高甘露糖寡糖转化为复杂衍生物以及通过唾液酸化的O-连接的寡糖的附着而在细胞表面进行了广泛修饰。然后通过涉及从糖蛋白的羧基末端蛋白水解切割约25个锚定膜的疏水性氨基酸的机制,将质膜二聚体缓慢地掉入培养基中。因此,脱落的分子具有比与细胞相关的gp55短的多肽链。我们得出的结论是,gp55折叠成不同的二硫键结合的组分,这些组分基本上没有异构化,并且只有一种特定的二聚体能够胜任RER的出口。 gp55的有丝分裂活性可能是由细胞表面二聚体,脱落的衍生物或脱落反应后保留在膜中的羧基末端疏水性锚分子引起的。

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