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猿猴病毒40基因A功能在维持转化中的作用。

Role of simian virus 40 gene A function in maintenance of transformation.

作者信息

Brugge J S, Butel J S

出版信息

J Virol. 1975 Mar;15(3):619-35. doi: 10.1128/JVI.15.3.619-635.1975.

Abstract

Mouse, hamster, and human cells were transformed at the permissive temperature by mutants from simian virus 40 (SV40) complementation group A in order to ascertain the role of the gene A function in transformation. The following parameters of transformation were monitored with the transformed cells under permissive and nonpermissive conditions: morphology; saturation density; colony formation on plastic, on cell monolayers, and in soft agar; uptake of hexose; and the expression of SV40 tumor (T) and surface (S) antigens. Cells transformed by the temperature-sensitive (ts) mutants exhibited the phenotype of transformed cells at the nonrestrictive temperature for all of the parameters studied. However, when grown at the restrictive temperature, they were phenotypically similar to normal, untransformed cells. Growth curves showed that the (ts) A mutant-transformed cells exhibited the growth characteristics of wild-type virus-transformed cells at the permissive temperature and resembled normal cells when placed under restrictive conditions. There were 3-to 51-fold reductions in the levels of saturation density, colony formation, and uptake of hexose when the mutant-transformed cells were the elevated temperature as compared to when they were grown at the permissive temperature. Mutant-transformed cells from the nonpermissive temperature were able to produce transformed foci when shifted down to permissive conditions, indicating that the phenotypically reverted cells were still viable and that the reversion was a reversible event. SV40 T antigen was present in the cells at both temperatures, but S antigen was not detected in cells maintained at the nonpremissive temperature. All of the wild-type virus-transformed cells exhbited a transformed cells exhibited a transformed phenotype when grown under either restrictive or nonrestrictive conditions. Thers results indicate that the SV40 group A mutant-transformed cells are temperature sensitive for the maintenance of growth properties characteristics of transformation. Virus rescued from the mutant-transformed cells by the transfection method was ts, suggesting that the SV40 gene A function, rather than a cellular one, is responsible for the ts behavior of the cells.

摘要

为了确定A基因功能在转化中的作用,用猿猴病毒40(SV40)互补组A的突变体在允许温度下对小鼠、仓鼠和人类细胞进行转化。在允许和非允许条件下,对转化细胞的以下转化参数进行监测:形态;饱和密度;在塑料上、细胞单层上和软琼脂中的集落形成;己糖摄取;以及SV40肿瘤(T)抗原和表面(S)抗原的表达。对于所有研究的参数,由温度敏感(ts)突变体转化的细胞在非限制温度下表现出转化细胞的表型。然而,当在限制温度下生长时,它们在表型上与正常的未转化细胞相似。生长曲线表明,(ts)A突变体转化的细胞在允许温度下表现出野生型病毒转化细胞的生长特征,而在限制条件下则类似于正常细胞。与在允许温度下生长相比,当突变体转化细胞处于较高温度时,饱和密度、集落形成和己糖摄取水平降低了3至51倍。来自非允许温度的突变体转化细胞在转移到允许条件下时能够产生转化灶,这表明表型回复的细胞仍然存活,并且这种回复是一个可逆事件。在两个温度下细胞中都存在SV40 T抗原,但在维持在非允许温度的细胞中未检测到S抗原。所有野生型病毒转化细胞在限制或非限制条件下生长时都表现出转化表型。这些结果表明,SV40 A组突变体转化的细胞在维持转化的生长特性方面对温度敏感。通过转染方法从突变体转化细胞中拯救出的病毒是ts型的,这表明SV40基因A的功能而非细胞功能导致了细胞的ts行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad9e/354498/3429f5dbfc55/jvirol00231-0205-a.jpg

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