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控制黑腹果蝇基本细胞周期功能的基因。

Genes controlling essential cell-cycle functions in Drosophila melanogaster.

作者信息

Gatti M, Baker B S

机构信息

Dipartimento de Genetica e Biologia Molecolare, Università di Roma La Sapienzá, Italy.

出版信息

Genes Dev. 1989 Apr;3(4):438-53. doi: 10.1101/gad.3.4.438.

Abstract

On the basis of the hypothesis that mutants in genes controlling essential cell cycle functions in Drosophila should survive up to the larval-pupal transition, 59 such 'late lethals' were screened for those mutants affecting cell division. Examination of mitosis in brain neuroblasts revealed that 30 of these lethals cause disruptions in mitotic chromosome behavior. These mutants identify genes whose wild-type functions are important for: (1) progression through different steps of interphase, (2) the maintenance of mitotic chromosome integrity, (3) chromosome condensation, (4) spindle formation and/or function, and (5) completion of cytokinesis or completion of chromosome segregation. The presence of mitotic defects in late lethal mutants is correlated tightly with the presence of defective imaginal discs. Thus, the phenotypes of late lethality and poorly developed imaginal discs are together almost diagnostic of mutations in essential cell-cycle functions. The terminal phenotypes exhibited by these Drosophila mitotic mutants are remarkably similar to those observed in mammalian cell-cycle mutants, suggesting that these diverse organisms use a common genetic logic to regulate and integrate the events of the cell cycle.

摘要

基于这样的假设

果蝇中控制基本细胞周期功能的基因突变体应存活至幼虫-蛹期转变,对59个这样的“晚期致死突变体”进行筛选,以寻找那些影响细胞分裂的突变体。对脑成神经细胞的有丝分裂进行检查发现,这些致死突变体中有30个会导致有丝分裂染色体行为的紊乱。这些突变体鉴定出了其野生型功能对以下方面很重要的基因:(1)通过间期不同阶段的进程;(2)有丝分裂染色体完整性的维持;(3)染色体浓缩;(4)纺锤体形成和/或功能;(5)胞质分裂的完成或染色体分离的完成。晚期致死突变体中有丝分裂缺陷的存在与有缺陷的成虫盘的存在紧密相关。因此,晚期致死和成虫盘发育不良的表型几乎共同诊断了基本细胞周期功能中的突变。这些果蝇有丝分裂突变体表现出的终末表型与在哺乳动物细胞周期突变体中观察到的表型非常相似,这表明这些不同的生物体使用共同的遗传逻辑来调节和整合细胞周期事件。

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