首页> 美国卫生研究院文献>Journal of Virology >A Val-25-to-Ile substitution in the envelope precursor polyprotein gPr80env is responsible for the temperature sensitivity inefficient processing of gPr80env and neurovirulence of ts1 a mutant of Moloney murine leukemia virus TB.
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A Val-25-to-Ile substitution in the envelope precursor polyprotein gPr80env is responsible for the temperature sensitivity inefficient processing of gPr80env and neurovirulence of ts1 a mutant of Moloney murine leukemia virus TB.

机译:包膜前体多蛋白gPr80env中的Val-25到Ile取代负责温度敏感性gPr80env的低效处理以及ts1(莫洛尼鼠白血病病毒TB的突变体)的神经毒性。

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摘要

ts1 is a neurovirulent spontaneous temperature-sensitive mutant of Moloney murine leukemia virus TB which causes hindlimb paralysis in mice. Previously, it had been shown that the temperature-sensitive defect resided in the env gene. At the restrictive temperature, the envelope precursor polyprotein, gPr80env, is inefficiently processed intracellularly into two cleavage products, gp70 and Prp15E. This inefficient processing of gPr80env is correlated with neurovirulence. In this study, it was shown that a single amino acid substitution, Val-25----Ile in gPr80env, is responsible for the temperature sensitivity, inefficient processing of gPr80env at the restrictive temperature, and neurovirulence of ts1. At the restrictive temperature, a steady-state level of nonprocessed, endoglycosidase H-sensitive gPr80env remained in the endoplasmic reticulum of cells infected by ts1, but no endoglycosidase H-resistant gPr80env and only trace amounts of gp70 were detected in the infected cells. Since the host cell-encoded processing protease resides in the cis cisternae of the Golgi apparatus, inefficient processing of gPr80env at the restrictive temperature is most likely due to inefficient transport of gPr80env from the endoplasmic reticulum to the cis cisternae of the Golgi apparatus rather than due to misfolded gPr80env being a poor substrate for the processing protease at the restrictive temperature.
机译:ts1是莫洛尼氏鼠白血病病毒TB的神经毒性自发温度敏感突变体,可引起小鼠后肢瘫痪。以前,已经表明温度敏感性缺陷存在于env基因中。在极限温度下,包膜前体多蛋白gPr80env在细胞内不能有效地加工成两个裂解产物gp70和Prp15E。 gPr80env的这种低效处理与神经毒力有关。在这项研究中,表明gPr80env中的单个氨基酸取代Val-25 ---- Ile引起温度敏感性,在限定温度下gPr80env的加工效率低下以及ts1的神经毒性。在极限温度下,未经处理的内切糖苷酶H敏感gPr80env处于稳态水平,仍被ts1感染的细胞的内质网保留,但在感染的细胞中未检测到内切糖苷酶H抵抗性gPr80env,仅检测到痕量的gp70。由于宿主细胞编码的加工蛋白酶存在于高尔基体的顺式池中,因此在限制性温度下对gPr80env的低效处理很可能是由于gPr80env从内质网向高尔基体的顺式池进行的无效运输,而不是由于gPr80env的错误折叠是限制性蛋白酶在加工温度下加工蛋白酶的不良底物。

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