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Evidence for a separate signal sequence for the carboxy-terminal envelope glycoprotein E1 of Semliki forest virus.

机译:Semliki森林病毒羧基末端包膜糖蛋白E1的单独信号序列的证据。

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摘要

When Semliki Forest virus temperature-sensitive mutant ts-3 was grown at the restrictive temperature an aberrant nascent cleavage of the 130,000-dalton structural polyprotein took place relatively frequently. This cleavage yielded an abnormal 86,000-dalton fusion protein (p86) consisting of the amino-terminal capsid protein linked to the amino acid sequences of envelope protein p62 (a precursor of E3 and E2). The other cleavage product was the carboxy-terminal envelope protein E1. p86 was not glycosylated and was sensitive to the action of protease in the microsomal fraction, whereas E1 was glycosylated and protected from proteases, indicating that it had been segregated into the cysternal side of the microsomal vesicles. All attempts to show the E1 protein at the cell surface have failed so far, suggesting that it remains associated with intracellular membranes. When ts-3-infected cells labeled at the restrictive temperature were shifted to the permissive temperature the only labeled protein released with the virus particles was E1, indicating that E1, synthesized at the restrictive temperature, was competent to participate in the virus assembly. These results suggest strongly that there are two separate signal sequences for the envelope proteins of Semliki Forest virus. One follows the capsid protein as shown previously, and the other is for the carboxy-terminal E1. Even if the insertion of the amino-terminal envelope protein (p62) fails due to a cleavage defect, the other signal sequence can operate independently to guide the E1 through the endoplasmic reticulum membrane.
机译:当在限制温度下生长Semliki Forest病毒温度敏感突变体ts-3时,相对频繁地发生了130,000道尔顿结构多蛋白的异常新生裂解。该切割产生异常的86,000道尔顿融合蛋白(p86),其由连接至包膜蛋白p62(E3和E2的前体)的氨基酸序列的氨基末端衣壳蛋白组成。另一个切割产物是羧基末端包膜蛋白E1。 p86未被糖基化,并且对微粒体级分中的蛋白酶的作用敏感,而E1被糖基化并受到蛋白酶的保护,这表明它已被隔离到微粒体囊泡的胞浆侧。迄今为止,所有在细胞表面显示E1蛋白的尝试都失败了,这表明它仍然与细胞内膜有关。当将在限制温度下标记的ts-3感染细胞转移到允许温度时,随病毒颗粒释放的唯一标记蛋白是E1,这表明在限制温度下合成的E1能够参与病毒组装。这些结果强烈表明,Semliki森林病毒的包膜蛋白有两个单独的信号序列。如前所示,一个跟随衣壳蛋白,另一个跟随羧基末端E1。即使由于切割缺陷而导致氨基末端包膜蛋白(p62)的插入失败,其他信号序列也可以独立运行以引导E1穿过内质网膜。

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