首页> 美国卫生研究院文献>The EMBO Journal >Drosophila protein phosphatase V functionally complements a SIT4 mutant in Saccharomyces cerevisiae and its amino-terminal region can confer this complementation to a heterologous phosphatase catalytic domain.
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Drosophila protein phosphatase V functionally complements a SIT4 mutant in Saccharomyces cerevisiae and its amino-terminal region can confer this complementation to a heterologous phosphatase catalytic domain.

机译:果蝇蛋白磷酸酶V在功能上与酿酒酵母中的SIT4突变体互补并且其氨基末端区域可将该互补赋予异源磷酸酶催化域。

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摘要

The sequence of a Drosophila melanogaster cDNA encoding a novel 35 kDa protein serine/threonine phosphatase, termed PPV, is presented. PPV is 40-41% identical to Drosophila PP1, 53% identical to Drosophila PP2A and 63% identical to Saccharomyces cerevisiae SIT4. Complementation studies demonstrated that PPV can functionally rescue a temperature sensitive mutant of SIT4, a protein phosphatase required for the G1 to S transition of the cell cycle. When placed under the SIT4 promoter, PPV cDNA is able to replace the SIT4 gene in S. cerevisiae. The amino-terminal domain of PPV fused to another phosphatase catalytic region (PP1) also rescues the temperature sensitive SIT4 mutant and the SIT4 deletion mutant, implicating this region in binding to regulatory subunits and/or altering specificity. In Drosophila, a substantial transient increase in both PPV mRNA and protein occurs in late syncytial and early cellular blastoderm embryos. At the latter stage PPV is localized to the cytoplasm of cells at the cortex. This increase in PPV correlates with introduction of the G2 phase of the cell cycle, elevated zygotic transcription and cellularization, indicating that PPV may play a role in one or more of these processes.
机译:提出了一种果蝇黑腹果蝇(Drosophila melanogaster)cDNA的编码新的35 kDa丝氨酸/苏氨酸磷酸酶(称为PPV)的序列。 PPV与果蝇PP1的同源性为40-41%,与果蝇PP2A的同源性为53%,与酿酒酵母SIT4的同源性为63%。补充研究表明,PPV可以在功能上拯救温度敏感的SIT4突变体,SIT4是细胞周期从G1过渡到S所需的蛋白质磷酸酶。当置于SIT4启动子之下时,PPV cDNA能够取代酿酒酵母中的SIT4基因。与另一磷酸酶催化区(PP1)融合的PPV的氨基末端结构域也拯救了温度敏感的SIT4突变体和SIT4缺失突变体,这意味着该区域与调节亚基结合和/或改变了特异性。在果蝇中,合胞体晚期和早期细胞胚盘胚中PPV mRNA和蛋白均出现明显的瞬时增加。在后一阶段,PPV位于皮质的细胞质中。 PPV的这种增加与细胞周期G2期的引入,合子转录和细胞化的升高有关,表明PPV可能在这些过程中的一个或多个中起作用。

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