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运用早熟染色体凝集(PCC)技术结合5-溴脱氧尿苷(BrdUrd)标记分析双微体的复制模式。

Analysis of the replication mode of double minutes using the PCC technique combined with BrdUrd labeling.

作者信息

Takayama S, Uwaike Y

机构信息

Biological Laboratory, School of Science, Kwansei Gakuin University, Nishinomiya, Japan.

出版信息

Chromosoma. 1988 Nov;97(3):198-203. doi: 10.1007/BF00292961.

Abstract

A cultured line of neuroblastoma cells (NB) was found to contain double minute chromosomes (DMs) DMs have been reported to be acentric and, therefore, to be segregated randomly into daughter cells without separating their sister elements. When NB cells were fused with Chinese hamster metaphase cells, prematurely condensed chromosomes (PCCs) were induced. DMs seen together with G2 PCCs appeared to be closely paired, dot-like structures resembling DMs observable in metaphase cells. In contrast, DMs in G1 cells showed a tendency to become single as the stage progressed so that the majority of DMs in late G1 cells were actually no longer double. DMs in S-phase cells, however, again appeared double. These results clearly indicate why DMs are invariably double and never assume a quadruple configuration in metaphase cells in spite of their non-disjunctional segregation at anaphase. Such a characteristic mode of DM replication was further confirmed by a 5-bromo-2'-deoxyuridine (BrdUrd) labeling experiment: when NB cells were exposed to BrdUrd for two successive rounds of DNA replication prior to PCC induction, half of the resulting single G1 minutes as well as G1 PCCs stained dark and the other half stained light after staining for sister chromatid differentiation.

摘要

发现一株培养的神经母细胞瘤细胞系(NB)含有双微体染色体(DMs)。据报道,双微体染色体无着丝粒,因此在不分离姐妹染色单体的情况下随机分配到子细胞中。当NB细胞与中国仓鼠中期细胞融合时,会诱导产生早熟凝集染色体(PCCs)。与G2期PCCs一起出现的双微体染色体似乎紧密配对,呈点状结构,类似于中期细胞中可观察到的双微体染色体。相比之下,G1期细胞中的双微体染色体随着阶段的进展有变为单条的趋势,以至于G1晚期细胞中的大多数双微体染色体实际上不再是成对的。然而,S期细胞中的双微体染色体再次呈现为成对状态。这些结果清楚地表明了为什么双微体染色体在中期细胞中总是成对的,尽管它们在后期不发生分离,却从不呈现四重结构。5-溴-2'-脱氧尿苷(BrdUrd)标记实验进一步证实了双微体染色体这种独特的复制模式:在诱导产生PCCs之前,当NB细胞连续两轮暴露于BrdUrd进行DNA复制时,在对姐妹染色单体进行分化染色后,所产生的单条G1期微体以及G1期PCCs中有一半染色深,另一半染色浅。

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