Genetic analysis of tumorigenesis: XII. Genetic control of the anchorage requirement in CHEF cells.

C J Marshall, R M Kitchin, R Sager
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引用次数: 11

Abstract

Chinese hamster somatic cell hybrids between diploid anchorage-independent CHEF/204Bu50 cells and diploid anchorage dependent CHEF/205-30 cells are anchorage dependent but can segregate subclones at low frequency which reexpress anchorage independence. Thus, anchorage independence, like other characteristics of the transformed phenotype, is suppressed in these hybrids. Anchorage-independent subclones were recovered from the anchorage-dependent hybrids under conditions which favored the retention of most chromosomes. Karyotype analysis of suppressed hybrids and their anchorage-independent subclones showed that segregation of anchorage dependence was correlated with the loss of one copy of chromosome 1 in CHEF Chinese hamster hybrids. Thus, suppression of anchorage independence has a chromosomal basis. Several genetic models are considered for the origin of anchorage-independent subclones from suppressed Chinese hamster hybrids.

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肿瘤发生的遗传分析:12。主厨细胞锚定需求的遗传控制。
二倍体锚定不依赖的CHEF/204Bu50细胞与二倍体锚定依赖的CHEF/205-30细胞之间的体细胞杂种是锚定依赖的,但可以在低频率分离亚克隆,重新表达锚定不依赖。因此,与转化表型的其他特征一样,锚定独立性在这些杂交种中受到抑制。在有利于保留大多数染色体的条件下,从锚定依赖性杂交种中获得锚定非依赖性亚克隆。对抑制杂交种及其锚定非依赖性亚克隆的核型分析表明,锚定依赖性的分离与1号染色体1拷贝的缺失有关。因此,抑制锚点独立性具有染色体基础。几种遗传模型考虑了从抑制的中国仓鼠杂交种中产生锚定非依赖性亚克隆的起源。
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