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劳氏肉瘤病毒env基因的突变,这些突变影响糖蛋白产物的运输和亚细胞定位。

Mutations of the Rous sarcoma virus env gene that affect the transport and subcellular location of the glycoprotein products.

作者信息

Wills J W, Srinivas R V, Hunter E

出版信息

J Cell Biol. 1984 Dec;99(6):2011-23. doi: 10.1083/jcb.99.6.2011.

Abstract

The envelope glycoproteins of Rous sarcoma virus (RSV), gp85 and gp37, are anchored in the membrane by a 27-amino acid, hydrophobic domain that lies adjacent to a 22-amino acid, cytoplasmic domain at the carboxy terminus of gp37. We have altered these cytoplasmic and transmembrane domains by introducing deletion mutations into the molecularly cloned sequences of a proviral env gene. The effects of the mutations on the transport and subcellular localization of the Rous sarcoma virus glycoproteins were examined in monkey (CV-1) cells using an SV40 expression vector. We found, on the one hand, that replacement of the nonconserved region of the cytoplasmic domain with a longer, unrelated sequence of amino acids (mutant C1) did not alter the rate of transport to the Golgi apparatus nor the appearance of the glycoprotein on the cell surface. Larger deletions, extending into the conserved region of the cytoplasmic domain (mutant C2), resulted in a slower rate of transport to the Golgi apparatus, but did not prevent transport to the cell surface. On the other hand, removal of the entire cytoplasmic and transmembrane domains (mutant C3) did block transport and therefore did not result in secretion of the truncated protein. Our results demonstrate that the C3 polypeptide was not transported to the Golgi apparatus, although it apparently remained in a soluble, nonanchored form in the lumen of the rough endoplasmic reticulum; therefore, it appears that this mutant protein lacks a functional sorting signal. Surprisingly, subcellular localization by internal immunofluorescence revealed that the C3 protein (unlike the wild type) did not accumulate on the nuclear membrane but rather in vesicles distributed throughout the cytoplasm. This observation suggests that the wild-type glycoproteins (and perhaps other membrane-bound or secreted proteins) are specifically transported to the nuclear membrane after their biosynthesis elsewhere in the rough endoplasmic reticulum.

摘要

劳氏肉瘤病毒(RSV)的包膜糖蛋白gp85和gp37通过一个27个氨基酸的疏水区锚定在膜上,该疏水区与gp37羧基末端一个22个氨基酸的胞质区相邻。我们通过在原病毒env基因的分子克隆序列中引入缺失突变,改变了这些胞质和跨膜区。利用SV40表达载体,在猴(CV-1)细胞中检测了这些突变对劳氏肉瘤病毒糖蛋白转运和亚细胞定位的影响。一方面,我们发现用一段更长的、不相关的氨基酸序列替换胞质区的非保守区域(突变体C1),既没有改变向高尔基体的转运速率,也没有改变糖蛋白在细胞表面的出现情况。更大的缺失延伸到胞质区的保守区域(突变体C2),导致向高尔基体的转运速率变慢,但并没有阻止向细胞表面的转运。另一方面,去除整个胞质和跨膜区(突变体C3)确实阻断了转运,因此没有导致截短蛋白的分泌。我们的结果表明,C3多肽没有被转运到高尔基体,尽管它显然以可溶的、非锚定的形式留在糙面内质网腔中;因此,看来这种突变蛋白缺乏功能性分选信号。令人惊讶的是,通过内部免疫荧光进行的亚细胞定位显示,C3蛋白(与野生型不同)没有在核膜上积累,而是在分布于整个细胞质的小泡中积累。这一观察结果表明,野生型糖蛋白(也许还有其他膜结合或分泌蛋白)在糙面内质网的其他部位生物合成后,会被特异性转运到核膜。

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