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E1A的pRb结合区域的表达能够使v-src高效转化原代上皮细胞。

Expression of the pRb-binding regions of E1A enables efficient transformation of primary epithelial cells by v-src.

作者信息

Fischer R S, Quinlan M P

机构信息

Department of Microbiology and Immunology, University of Tennessee Health Science Center, Memphis 38163, USA.

出版信息

J Virol. 1998 Apr;72(4):2815-24. doi: 10.1128/JVI.72.4.2815-2824.1998.

Abstract

Primary cultures of rat embryo fibroblasts have been shown to be resistant to transformation by dominant oncogenes such as v-src. We sought to determine if similar resistance is displayed by primary epithelial cells, and, if so, whether an immortalizing oncogene such as E1A could enhance transformation of primary epithelial cells by v-src. Transformation of primary rat epithelial cells by v-src was synergistically enhanced when E1A expression plasmids were cotransfected with a v-src expression plasmid. Foci were more numerous and observed earlier (9 to 14 days) with E1A plus v-src than with v-src alone (18 to 28 days). This cotransformation ability was abrogated by deletions in CR1 or CR2 of E1A, which encode the binding regions for the pRb family and are responsible for E1A-mediated cell cycle activation. Mutations in the p300 binding site or the second exon, which abolish immortalization, did not affect v-src cooperation, in contrast to ras and adenovirus E1B. While kinase activation was required for growth in soft agar, differential activation of Src kinase did not correlate with transformation efficiency. Cell morphology and actin structures were not dramatically impacted by E1A expression; thus, hypertransformation, as previously described for ras cotransformation, was not observed with v-src and second-exon mutants of E1A. However, growth rates for cells expressing both E1A and v-Src were higher than those for cells expressing only v-Src. These results suggest that functions involved in cell cycle activation encoded by E1A first exon can enhance v-src transformation of primary epithelial cells.

摘要

大鼠胚胎成纤维细胞的原代培养物已被证明对诸如v-src等显性癌基因的转化具有抗性。我们试图确定原代上皮细胞是否也表现出类似的抗性,如果是,那么诸如E1A这样的永生化癌基因是否能够增强v-src对原代上皮细胞的转化作用。当E1A表达质粒与v-src表达质粒共转染时,v-src对原代大鼠上皮细胞的转化作用得到协同增强。与单独使用v-src(18至28天)相比,E1A加v-src时形成的集落更多且出现得更早(9至14天)。E1A的CR1或CR2区域缺失会消除这种共转化能力,CR1或CR2区域编码与pRb家族的结合区域,负责E1A介导的细胞周期激活。与ras和腺病毒E1B不同,p300结合位点或第二个外显子的突变虽然会消除永生化能力,但并不影响v-src的协同作用。虽然在软琼脂中生长需要激酶激活,但Src激酶的差异激活与转化效率无关。E1A的表达对细胞形态和肌动蛋白结构没有显著影响;因此,与之前描述的ras共转化导致的超转化不同,v-src与E1A的第二个外显子突变体共转染时未观察到超转化现象。然而,同时表达E1A和v-Src的细胞的生长速率高于仅表达v-Src的细胞。这些结果表明,E1A第一个外显子编码的参与细胞周期激活的功能可以增强v-src对原代上皮细胞的转化作用。

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本文引用的文献

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Curr Opin Cell Biol. 1997 Apr;9(2):187-92. doi: 10.1016/s0955-0674(97)80062-2.
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