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在产生低水平腺病毒E1A转化蛋白的转染BC3H1成肌细胞系中肌肉基因协调表达的破坏。

Disruption of the coordinate expression of muscle genes in a transfected BC3H1 myoblast cell line producing a low level of the adenovirus E1A transforming protein.

作者信息

Mymryk J S, Oakes J D, Muthuswamy S K, D'Amico P, Bayley S T, Lee R W

机构信息

Department of Biochemistry, McMaster University, Hamilton, Ont., Canada.

出版信息

Biochem Cell Biol. 1992 Oct-Nov;70(10-11):1268-76. doi: 10.1139/o92-173.

Abstract

Mouse BC3H1 myoblasts were stably transfected with the adenovirus 5 E1A gene. One clonal line, BC3E7, was found to differ in some important respects from those previously reported for E1A-transformed myoblasts. In contrast to BC3H1 cells which differentiate when confluent in medium containing 0.5% fetal calf serum (FCS), BC3E7 cells failed to elongate and align, to express acetylcholine receptor and creatine kinase, and to down-regulate expression of beta- and gamma-actins and tropomyosin isoform (TM) 1. However, increased synthesis of TMs 2, 3, and 4, and myosin light chain 1 associated with differentiation in BC3H1 still occurred in BC3E7 cells, and most surprisingly, alpha-actin was produced at a significant level in both proliferating and confluent BC3E7 cells. Interestingly, myogenin was expressed in confluent BC3E7 cells in 0.5% FCS, but not in 20%. The level of E1A expression in BC3E7 cells was found to be very low by analysis of mRNA, by immunoprecipitation of E1A protein, and by the ability of BC3E7 cells to complement the E1A-deficient adenovirus mutant dl312. These results suggest that different levels of E1A may be needed to repress different promoters and that E1A does not block myogenic differentiation by repressing myogenin expression, but represses each muscle gene independently.

摘要

小鼠BC3H1成肌细胞用腺病毒5 E1A基因进行稳定转染。发现一个克隆系BC3E7在一些重要方面与先前报道的E1A转化的成肌细胞不同。与在含0.5%胎牛血清(FCS)的培养基中汇合时会分化的BC3H1细胞相反,BC3E7细胞未能伸长和排列,未能表达乙酰胆碱受体和肌酸激酶,也未能下调β-肌动蛋白、γ-肌动蛋白和原肌球蛋白异构体(TM)1的表达。然而,BC3H1细胞中与分化相关的TM 2、3和4以及肌球蛋白轻链1的合成增加在BC3E7细胞中仍然发生,最令人惊讶的是,α-肌动蛋白在增殖和汇合的BC3E7细胞中均有显著水平的产生。有趣的是,肌细胞生成素在含0.5% FCS的汇合BC3E7细胞中表达,但在含20% FCS的细胞中不表达。通过对mRNA的分析、E1A蛋白的免疫沉淀以及BC3E7细胞对E1A缺陷腺病毒突变体dl312的互补能力,发现BC3E7细胞中E1A的表达水平非常低。这些结果表明,可能需要不同水平的E1A来抑制不同的启动子,并且E1A不是通过抑制肌细胞生成素的表达来阻断肌源性分化,而是独立地抑制每个肌肉基因。

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