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腺病毒5型E1A保守区1或2突变体的独立转化活性

Independent transformation activity by adenovirus-5 E1A-conserved regions 1 or 2 mutants.

作者信息

Svensson C, Bondesson M, Nyberg E, Linder S, Jones N, Akusjärvi G

机构信息

Department of Microbial Genetics, Karolinska Institute, Stockholm, Sweden.

出版信息

Virology. 1991 Jun;182(2):553-61. doi: 10.1016/0042-6822(91)90596-4.

Abstract

Two conserved regions (CR1 and CR2) on the adenovirus E1A proteins have previously been shown to be required for cooperation with the ras oncogene in the transformation of primary rodent cells. Sequences within these regions are essential for the ability of E1A to associate with the 105K product of the retinoblastoma susceptibility gene, p105-RB, as well as with other cellular proteins, including a 107K (p107) and a 300K (p300) species. In this paper, we show that CR1 mutants deficient in p300 binding and CR2 mutants with lost or reduced binding of p105-RB and/or p107 have a low, but not abolished focus formation activity. In contrast, CR1/CR2 double mutants were deficient in focus formation, suggesting that the transformation activities displayed by the single CR1 or CR2 mutants were due to an independent transformation activity by both CR1 and CR2. No strict correlation between p105-RB binding and E1A-mediated transformation was observed. The E1A enhancer repression function was found to correlate with the binding of p300 but not with E1A-mediated transformation. Complex formation between E1A and p107, similar to the p105-RB binding, required sequences within both CR1 and CR2. The CR2 sequences required for binding of p107K or p105-RB were overlapping, but not identical. Finally, a larger segment of CR2 was required for stable complex formation between E1A and phosphorylated forms of p105-RB or p107 compared to corresponding unphosphorylated species.

摘要

腺病毒E1A蛋白上的两个保守区域(CR1和CR2)先前已被证明在原代啮齿动物细胞转化中与ras癌基因协同作用时是必需的。这些区域内的序列对于E1A与视网膜母细胞瘤易感基因的105K产物p105-RB以及其他细胞蛋白(包括107K(p107)和300K(p300)蛋白)结合的能力至关重要。在本文中,我们表明缺乏p300结合的CR1突变体以及失去或减少与p105-RB和/或p107结合的CR2突变体具有低但未消除的集落形成活性。相比之下,CR1/CR2双突变体在集落形成方面存在缺陷,这表明单个CR1或CR2突变体所显示的转化活性是由于CR1和CR2两者的独立转化活性。未观察到p105-RB结合与E1A介导的转化之间存在严格的相关性。发现E1A增强子抑制功能与p300的结合相关,而与E1A介导的转化无关。E1A与p107之间的复合物形成,类似于与p105-RB的结合,需要CR1和CR2内的序列。与p107K或p105-RB结合所需的CR2序列是重叠的,但并不相同。最后,与相应的未磷酸化形式相比,E1A与p105-RB或p107的磷酸化形式之间形成稳定复合物需要更大的CR2片段。

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