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两种大鼠肿瘤细胞系的染色体分析。双微体和均质染色区在转移中的可能作用。

Chromosome analysis of two rat tumor cell lines. Possible role of DMs and HSR in metastasis.

作者信息

Werling H O, Ghosh S, Spiess E

出版信息

J Cancer Res Clin Oncol. 1984;107(3):172-7. doi: 10.1007/BF01032603.

Abstract

The rat tumor cell lines BSp73AS (AS, non-metastasizing with pronounced adherent capacities) and BSp73ASML (ASML, highly metastasizing with reduced adherent capacities) were cytogenetically investigated. The ASML cell line is reportedly derived from the AS cell line. Both lines exhibited abnormal numerical and structural chromosomal characteristics. The metastasizing ASML cells showed a higher chromosome number (modal number: 62-63) than the nonmetastasizing AS cells (modal number:48). The AS karyotype was characterized by the presence of a large metacentric marker chromosome resulting from a Robertsonian translocation (Rb 6.7). This chromosome is as such absent in ASML cells but perhaps it may be present in these cells with a major part of chromosome 7 being deleted. The most interesting feature of the ASML karyotype was the presence of double minutes (DMs) and a homogeneously staining region (HSR) at the telomeric end of chromosome 6. These were peculiar to the ASML cells, being absent in the AS cells. DMs and HSR are reported to be correlated with the resistance to various drugs and with the acquired virulence of tumor cells through gene amplification. Therefore, we assume that in the metastasizing ASML cell line the DMs and HSR were established through genetic selection and that they are probably related to the acquired metastasizing capacity of these cells.

摘要

对大鼠肿瘤细胞系BSp73AS(AS,无转移能力但具有显著黏附能力)和BSp73ASML(ASML,高转移能力但黏附能力降低)进行了细胞遗传学研究。据报道,ASML细胞系源自AS细胞系。两个细胞系均表现出异常的染色体数目和结构特征。具有转移能力的ASML细胞的染色体数目(众数:62 - 63)高于无转移能力的AS细胞(众数:48)。AS的核型特征是存在一条由罗伯逊易位(Rb 6.7)产生的大型中着丝粒标记染色体。这条染色体在ASML细胞中不存在,但可能在这些细胞中存在,同时7号染色体的大部分被缺失。ASML核型最有趣的特征是在6号染色体的端粒末端存在双微体(DMs)和均匀染色区(HSR)。这些是ASML细胞所特有的,在AS细胞中不存在。据报道,DMs和HSR与对各种药物的抗性以及通过基因扩增获得的肿瘤细胞毒力相关。因此,我们推测在具有转移能力的ASML细胞系中,DMs和HSR是通过基因选择形成的,并且它们可能与这些细胞获得的转移能力有关。

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