首页> 外文期刊>Journal of Virology >Temperature-Sensitive Mutants of Fujinami Sarcoma Virus: Tumorigenicity and Reversible Phosphorylation of the Transforming p140 Protein
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Temperature-Sensitive Mutants of Fujinami Sarcoma Virus: Tumorigenicity and Reversible Phosphorylation of the Transforming p140 Protein

机译:富士霉素肉瘤病毒的温度敏感突变体:转化P140蛋白的致瘤性和可逆磷酸化

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Several clones of Fujinami sarcoma virus (FSV) isolated from a laboratory stock or from mutagenized virus were temperature sensitive (ts) in transformation of cells in culture. When shifted from the permissive (37°C) to the nonpermissive (41.5°C) temperature, the cellular phenotype reverted to normal within 2 h, but it required about 48 h at 37°C to revert back to the transformed morphology. A temperature-resistant (tr) FSV clone was isolated from a tumor of an animal. All ts mutants were tumorigenic in animals but induced tumors only after latent periods of 12 to 25 days, compared to 5 to 6 days with tr virus. The ts lesions of the FSV mutants affected 90% of the phosphorylation of the nonstructural, gag-related 140,000-kilodalton phosphoprotein coded by FSV (p140), but did not affect virus replication or the synthesis of p140. Upon shifting from the permissive to the nonpermissive temperature, p140 was 90% dephosphorylated with an approximate 32P half-life of 20 min. When shifted back to the permissive temperature, the preexisting p140 was rephosphorylated in the absence of protein synthesis within a 90-min test period. Likewise, most of the phosphate of fully phosphorylated p140 was exchanged at the permissive temperature within 30 to 90 min even when protein synthesis was inhibited. However, the protein structure of p140 had a half-life of 5 h at both temperatures. These results prove p140 to be a substrate of reversible phosphorylation. Superinfection and transformation of ts FSV-infected cells maintained at the nonpermissive temperature with acute leukemia virus MC29 failed to phosphorylate p140. It would follow that in vivo phosphorylation of ts p140 is controlled by an FSV-specific mechanism and is a prerequisite, not a consequence, of transformation. p140 of ts FSV recovered from cells maintained at 41.5°C with anti-gag serum was over 10 times less phosphorylated by associated kinase than the same protein recovered from cells at 37°C if assayed in vitro at 20°C. This kinase activity associated with or dissociated from p140 with a half-life of less than 30 min during temperature shifts of ts FSV-infected cells. However, p140 recovered from ts FSV-infected cells maintained at 37°C was phosphorylated by associated kinase in vitro not only at 20°C but also, and essentially at the same level, at 41.5°C. This suggests that the kinase associated with the immunocomplex of p140 of ts FSV is not temperature sensitive. p140 translated in vitro from ts and tr FSV RNA lacked kinase activity. We conclude that a fully phosphorylated p140 is necessary for the maintenance of transformation by FSV. This is consistent with the notion that other highly oncogenic viruses also code for nonstructural phosphoproteins with probable transforming function. A model which postulates that p140 is a substrate of reversible phosphorylation and that the lesion of the ts FSV clones described herein affects association of p140 with a cellular kinase rather than a hypothetical intrinsic kinase activity of the protein is most compatible with our data.
机译:从实验室库存或诱变病毒中分离的几个富押肉瘤病毒(FSV)的克隆是培养细胞的温度敏感( TS )。当从允许(37℃)转移到非智力(41.5℃)的温度时,蜂窝表型在2小时内恢复到正常,但它需要在37℃下约48小时恢复转换为转化的形态。从动物的肿瘤中分离出耐耐温( TR )FSV克隆。所有 TS 突变体在动物中致瘤瘤,但仅在12至25天后诱导肿瘤,而 TR 病毒相比5至6天。 FSV突变体的 Ts 病变影响了由FSV(P140)编码的非结构, Gag 的磷酸化的90%的磷酸化,但不影响病毒复制或P140的合成。在从允许对非智能温度换成的偏移时,P140为90%的去磷酸化,近似 32 p半寿命20分钟。当返回允许温度时,预先存在的P140在没有蛋白质合成的情况下在90分钟的测试期内重新磷酸化。同样,即使抑制蛋白质合成,也在30至90分钟内在允许温度下在允许温度下交换大多数磷酸盐。然而,P140的蛋白质结构在两个温度下具有5小时的半衰期。这些结果证明P140是可逆磷酸化的基材。 Ts FSV感染细胞的SuperInfection和转化,与急性白血病病毒MC29保持在非智能温度,未磷酸化P140。它将遵循,在体内磷酸化中,通过FSV特异性机制控制,并且是转化的先决条件,而不是改变。从41.5℃的细胞中回收的 Ts FSV的P140抗 Gag 血清的血清磷酸化少量少于37°在37°中回收的相同蛋白质C如果在20℃下体外测定。该激酶活性与P140相关或离解,在 Ts FSV感染细胞的温度偏移期间的半衰期小于30分钟。然而,从在37℃保持在37℃的EM> Ts FSV感染细胞中回收的P140通过相关激酶在体外不仅在20℃下磷酸化,而且在41.5℃下,并且基本上在相同的水平下磷酸化。这表明与 TS FSV的P140的免疫激活相关的激酶是不敏感的。 P140从 Ts Tr FSV RNA中的体外翻译缺乏激酶活性。我们得出结论,通过FSV维持转化是必要的完全磷酸化的P140。这与其他高度致癌病毒的观点一致,其中包括具有可能变化功能的非结构磷蛋白的代码。假设P140的模型是可逆磷酸化的基材,并且本文所述的 Ts FSV克隆的病变影响P140与细胞激酶的关键,而不是蛋白质的假设内在激酶活性兼容我们的数据。

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