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莫洛尼氏肉瘤病毒转化的非产生细胞系中的“sarc”序列转录

"sarc" sequence transcription in Moloney sarcoma virus-transformed nonproducer cell lines.

作者信息

Bondurant M, Ramabhadran R, Green M, Wold W S

出版信息

J Virol. 1979 Jan;29(1):76-82. doi: 10.1128/JVI.29.1.76-82.1979.

Abstract

(3)H-labeled complementary DNA(sarc), complementary to the murine sarcoma virus (MSV)-specific portion of the Moloney MSV (M-MSV) genome, was prepared. M-MSV-specific RNA was then quantitated in the cytoplasm of several M-MSV-transformed, non-virus-producing, clonal NIH 3T3 cell lines. These lines, designated 71 N clones 5, 6, and 3, have been characterized previously by the degree to which they exhibit transformation properties and transcribe Moloney murine leukemia virus-related RNA (S. Salzberg and M. Green, J. Virol. 13:1001-1004, 1974; N. Tsuchida and M. Green, J. Virol. 14:587-591, 1974). By the criteria of cell morphology and agglutination by concanavalin A, cells of clone 5 are highly transformed, cells of clone 6 are almost normal in the sense that they resemble the parent NIH 3T3 cells, and cells of clone 3 are phenotypically intermediate. In the present study, the amounts of cytoplasmic MSV-specific RNA correlated well with the relative degrees of transformation of the cell lines, varying over 35-fold between the least transformed (clone 6) and most transformed (clone 5) lines. Superinfection of either clone 5 or clone 6 with Moloney murine leukemia virus resulted in a fivefold increase in the MSV-specific RNA in the cell cytoplasm. Evidence from (3)H-labeled complementary DNA:cell DNA hybridization studies indicated that the quantity of M-MSV-specific RNA in the nonproducer lines was not directly related to DNA provirus copy number in the cell DNA. Although clones 5 and 6 differ greatly in transformation characteristics and in MSV-specific RNA content, they each apparently contain about two copies of MSV-specific DNA sequence per haploid genome. Thus, factors such as site of provirus integration may be of primary importance in determining virus-specific transcription and cell transformation.

摘要

制备了与莫洛尼氏肉瘤病毒(MSV)基因组中鼠肉瘤病毒(MSV)特异性部分互补的(3)H标记互补DNA(sarc)。然后对几种经莫洛尼氏肉瘤病毒转化、不产生病毒的克隆NIH 3T3细胞系的细胞质中的莫洛尼氏肉瘤病毒特异性RNA进行定量分析。这些细胞系命名为71 N克隆5、6和3,先前已根据它们表现出转化特性和转录莫洛尼氏鼠白血病病毒相关RNA的程度进行了表征(S. Salzberg和M. Green,《病毒学杂志》13:1001 - 1004,1974;N. Tsuchida和M. Green,《病毒学杂志》14:587 - 591,1974)。根据细胞形态和伴刀豆球蛋白A凝集的标准,克隆5的细胞高度转化,克隆6的细胞几乎正常,因为它们类似于亲本NIH 3T3细胞,而克隆3的细胞在表型上处于中间状态。在本研究中,细胞质中莫洛尼氏肉瘤病毒特异性RNA的量与细胞系的相对转化程度密切相关,在转化程度最低的(克隆6)和最高的(克隆5)细胞系之间变化超过35倍。用莫洛尼氏鼠白血病病毒对克隆5或克隆6进行超感染,导致细胞质中莫洛尼氏肉瘤病毒特异性RNA增加了五倍。(3)H标记互补DNA:细胞DNA杂交研究的证据表明,非生产细胞系中莫洛尼氏肉瘤病毒特异性RNA的量与细胞DNA中前病毒拷贝数没有直接关系。尽管克隆5和6在转化特性和莫洛尼氏肉瘤病毒特异性RNA含量上有很大差异,但它们每个单倍体基因组中显然都含有约两个莫洛尼氏肉瘤病毒特异性DNA序列拷贝。因此,前病毒整合位点等因素在决定病毒特异性转录和细胞转化方面可能至关重要。

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