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在两种ATM同源物存在缺陷的裂殖酵母突变体中环状染色体的形成

Circular chromosome formation in a fission yeast mutant defective in two ATM homologues.

作者信息

Naito T, Matsuura A, Ishikawa F

机构信息

Department of Life Science, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Nat Genet. 1998 Oct;20(2):203-6. doi: 10.1038/2517.

Abstract

Telomeres, found at chromosomal ends, are essential for stable maintenance of linear chromosomes in eukaryotes. The ATM family of genes, including budding yeast TEL1 (refs 1,2), fission yeast rad3+ (ref. 3) and human ATM (ref. 4), have been reported to be involved in telomere length regulation, although the significance of the telomere phenotypes observed with the mutated genes remains elusive. We have cloned tel1+, another fission yeast ATM homologue, and found that a tel1rad3 double mutant lost all telomeric DNA sequences. Thus, the ATM homologues are essential in telomere maintenance. The mutant grew poorly and formed irregular-shaped colonies, probably due to chromosome instability, however, during prolonged culture of the double mutant, cells forming normal round-shaped colonies arose at a relatively high frequency. All three chromosomes in these derivative cells were circular and lacked telomeric sequences. To our knowledge, this is the first report of eukaryotic cells whose chromosomes are all circular. Upon meiosis, these derivative cells produced few viable spores. Therefore, the exclusively circular genome lacking telomeric sequences is proficient for mitotic growth, but does not permit meiosis.

摘要

端粒位于染色体末端,对于真核生物中线性染色体的稳定维持至关重要。包括芽殖酵母TEL1(参考文献1、2)、裂殖酵母rad3+(参考文献3)和人类ATM(参考文献4)在内的ATM基因家族,已被报道参与端粒长度调控,尽管观察到的突变基因端粒表型的意义仍不明确。我们克隆了另一个裂殖酵母ATM同源物tel1+,并发现tel1rad3双突变体失去了所有端粒DNA序列。因此,ATM同源物在端粒维持中至关重要。该突变体生长不良,形成不规则形状的菌落,可能是由于染色体不稳定,然而,在双突变体的长期培养过程中,形成正常圆形菌落的细胞以相对较高的频率出现。这些衍生细胞中的所有三条染色体都是环状的,并且缺乏端粒序列。据我们所知,这是关于染色体全为环状的真核细胞的首次报道。减数分裂时,这些衍生细胞产生的可育孢子很少。因此,完全缺乏端粒序列的环状基因组能够进行有丝分裂生长,但不允许减数分裂。

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