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481位的氨基酸替换对麻疹病毒血凝素在共表达融合蛋白的猴和狨猴细胞中诱导细胞融合的能力有不同影响。

Amino acid substitutions at position 481 differently affect the ability of the measles virus hemagglutinin to induce cell fusion in monkey and marmoset cells co-expressing the fusion protein.

作者信息

Xie M, Tanaka K, Ono N, Minagawa H, Yanagi Y

机构信息

Department of Virology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

Arch Virol. 1999;144(9):1689-99. doi: 10.1007/s007050050697.

Abstract

The hemagglutinin (H) protein of the measles virus (MV) Edmonston strain induced cell fusion in Cos (monkey) and B95a (marmoset) cells, when co-expressed with the fusion (F) protein, whereas the H protein of the wild-type KA strain induced fusion in B95a cells, but not in Cos cells. Asparagine residue at position 481 of the KA H protein was replaced by various amino acids through site-directed mutagenesis. Substitution with tyrosine, which was found at position 481 of the Edmonston H protein, enabled the mutant KA H protein (N481Y) to induce cell fusion in Cos cells co-expressing the F protein, which could be completely blocked by anti-CD46 antibody. This mutant, however, did not cause CD46 downregulation, unlike the Edmonston H protein. The other H protein mutants (N481S, N481T, N481D, N481H, N481F) did not produce syncytia in Cos cells. On the other hand, all of the mutants retained the ability to induce cell fusion in B95a cells. Thus, while tyrosine at position 481 was indispensable for the MV H protein's interaction with CD46, the residue at this position does not appear to be critically involved in the interaction with the receptor for wild-type strains present on B95a cells.

摘要

麻疹病毒(MV)埃德蒙斯顿株的血凝素(H)蛋白与融合(F)蛋白共表达时,可在Cos(猴)细胞和B95a(狨猴)细胞中诱导细胞融合,而野生型KA株的H蛋白可在B95a细胞中诱导融合,但在Cos细胞中则不能。通过定点诱变将KA H蛋白第481位的天冬酰胺残基替换为各种氨基酸。用在埃德蒙斯顿H蛋白第481位发现的酪氨酸进行替换,使突变型KA H蛋白(N481Y)能够在共表达F蛋白的Cos细胞中诱导细胞融合,且这种融合可被抗CD46抗体完全阻断。然而,与埃德蒙斯顿H蛋白不同,该突变体不会导致CD46下调。其他H蛋白突变体(N481S、N481T、N481D、N481H、N481F)在Cos细胞中不会产生多核巨细胞。另一方面,所有突变体在B95a细胞中均保留诱导细胞融合的能力。因此,虽然第481位的酪氨酸对于MV H蛋白与CD46的相互作用必不可少,但该位置的残基似乎与B95a细胞上存在的野生型毒株受体的相互作用无关。

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