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酿酒酵母RAD6基因在有丝分裂细胞周期和减数分裂中的调控。

Regulation of the RAD6 gene of Saccharomyces cerevisiae in the mitotic cell cycle and in meiosis.

作者信息

Kupiec M, Simchen G

出版信息

Mol Gen Genet. 1986 Jun;203(3):538-43. doi: 10.1007/BF00422083.

Abstract

The regulation of the RAD6 gene at the mRNA level was investigated. The level of steady state RAD6 mRNA increases once every cell cycle, at late S/early G2. This stage is the one at which rad6 mutants arrest, as do wild-type cells exposed to hydroxyurea (HU) or methyl methanesulfonate (MMS), or cdc40 cells exposed to the restrictive temperature. This appears to be a repair-specific stage in the cell cycle. RAD6 mRNA levels increase when cells are treated with MMS, but this increase seems to be due to the arrest of the cells by MMS at the repair-specific stage; cells arrested at the same stage by HU or by the cdc40 lesion also show high levels of RAD6 mRNA. A much smaller increase in the level of RAD6 transcripts is seen following UV irradiation. During meiosis, RAD6 mRNA is more abundant before commitment to recombination. The differential increase of RAD6 mRNA during the S/G2 repair-specific stage of the cell cycle relates the RAD6 function to the normally occurring radioresistance found at this stage.

摘要

对RAD6基因在mRNA水平的调控进行了研究。稳态RAD6 mRNA的水平在每个细胞周期的S期末期/ G2早期增加一次。这个阶段是rad6突变体停滞的阶段,暴露于羟基脲(HU)或甲磺酸甲酯(MMS)的野生型细胞,或暴露于限制温度的cdc40细胞也会在此阶段停滞。这似乎是细胞周期中一个特定于修复的阶段。当细胞用MMS处理时,RAD6 mRNA水平会增加,但这种增加似乎是由于MMS使细胞在修复特定阶段停滞所致;被HU或cdc40损伤阻滞在同一阶段的细胞也显示出高水平的RAD6 mRNA。紫外线照射后,RAD6转录本水平的增加幅度要小得多。在减数分裂过程中,在进行重组之前,RAD6 mRNA更为丰富。细胞周期S / G2修复特定阶段RAD6 mRNA的差异增加将RAD6功能与该阶段正常出现的抗辐射性联系起来。

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