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在有丝分裂结束后穿过G-1期的细胞中,与生长相关的基因表达并非恒定不变。

Growth-associated gene expression is not constant in cells traversing G-1 after exiting mitosis.

作者信息

Cosenza S C, Carter R, Pena A, Donigan A, Borrelli M, Soprano D R, Soprano K J

机构信息

Department of Microbiology and Immunology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.

出版信息

J Cell Physiol. 1991 May;147(2):231-41. doi: 10.1002/jcp.1041470207.

Abstract

Analysis of gene expression following stimulation of growth-arrested cells has been the main approach for identification of growth-associated genes. Since the activation of these gene sequences is dependent on both the stimulatory agent and the state of quiescence of the cell, the activation and role of the same genes may be entirely different in non-growth arrested, actively proliferating cells. We have addressed the question of growth-associated gene expression during active growth by analyzing gene expression during G-1 of cells which have just exited mitosis without first leaving the cell cycle. We were able to isolate, by a non-inductive, drug free system, a population of highly synchronized Swiss 3T3 cells within mitosis (greater than 90%) in numbers sufficient to determine the pattern of expression of a large number of representative growth-associated genes. Our results show that after replating the mitotic cells into conditioned medium: (1) growth-associated gene expression is not constant during G-1 of actively proliferating cells, and (2) while a number of genes (e.g., JE, c-myc, ODC, p53, and histone) exhibited patterns of expression similar to that reported in the quiescent systems, others (e.g., nur-77, vimentin, calcyclin) exhibited patterns which were completely different. From these results, we can begin to construct a temporal map of G-1 progression during active growth.

摘要

对生长停滞细胞进行刺激后的基因表达分析一直是鉴定生长相关基因的主要方法。由于这些基因序列的激活既取决于刺激因子,也取决于细胞的静止状态,因此相同基因在非生长停滞、活跃增殖细胞中的激活和作用可能完全不同。我们通过分析刚退出有丝分裂但未首先离开细胞周期的细胞在G-1期的基因表达,探讨了活跃生长过程中生长相关基因表达的问题。我们能够通过一个非诱导、无药物的系统,在有丝分裂期分离出大量高度同步化的瑞士3T3细胞(超过90%),其数量足以确定大量代表性生长相关基因的表达模式。我们的结果表明,将有丝分裂细胞重新接种到条件培养基中后:(1)在活跃增殖细胞的G-1期,生长相关基因的表达并不恒定;(2)虽然一些基因(如JE、c-myc、ODC、p53和组蛋白)的表达模式与在静止系统中报道的相似,但其他基因(如nur-77、波形蛋白、钙周期蛋白)的表达模式则完全不同。根据这些结果,我们可以开始构建活跃生长过程中G-1期进展的时间图谱。

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