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首页> 外文期刊>Molecular biology of the cell >Drosophila stem-loop binding protein intracellular localization is mediated by phosphorylation and is required for cell cycle-regulated histone mRNA expression
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Drosophila stem-loop binding protein intracellular localization is mediated by phosphorylation and is required for cell cycle-regulated histone mRNA expression

机译:果蝇茎环结合蛋白的细胞内定位是由磷酸化介导的,是细胞周期调控的组蛋白mRNA表达所必需的

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摘要

Stem-loop binding protein (SLBP) is an essential component of the histone pre-mRNA processing machinery. SLBP protein expression was examined during Drosophila development by using transgenes expressing hemagglutinin (HA) epitope-tagged proteins expressed from the endogenous Slbp promoter. Full-length HA-dSLBP complemented a Slbp null mutation, demonstrating that it was fully functional. dSLBP protein accumulates throughout the cell cycle, in contrast to the observed restriction of mammalian SLBP to S phase. dSLBP is located in both nucleus and cytoplasm in replicating cells, but it becomes predominantly nuclear during G2. dSLBP is present in mitotic cells and is down-regulated in G1 when cells exit the cell cycle. We determined whether mutation at previously identified phosphorylation sites, T120 and T230, affected the ability of the protein to restore viability and histone mRNA processing to dSLBP null mutants. The T120A SLBP restored viability and histone pre-mRNA processing. However, the T230A mutant, located in a conserved TPNK sequence in the RNA binding domain, did not restore viability and histone mRNA processing in vivo, although it had full activity in histone mRNA processing in vitro. The T230A protein is concentrated in the cytoplasm, suggesting that it is defective in nuclear targeting, and accounting for its failure to function in histone pre-mRNA processing in vivo. [References: 33]
机译:茎环结合蛋白(SLBP)是组蛋白前mRNA加工机器的重要组成部分。通过使用表达从内源性Slbp启动子表达的血凝素(HA)表位标记蛋白的转基因,在果蝇发育过程中检查了SLBP蛋白的表达。全长HA-dSLBP补充了Slbp无效突变,表明其功能齐全。与观察到的哺乳动物SLBP限于S期相反,dSLBP蛋白在整个细胞周期中积累。 dSLBP位于复制细胞的细胞核和细胞质中,但在G2期间主要变为核细胞。 dSLBP存在于有丝分裂细胞中,当细胞退出细胞周期时在G1中被下调。我们确定了先前确定的磷酸化位点T120和T230处的突变是否影响了蛋白质恢复dSLBP空突变体的活力和组蛋白mRNA处理的能力。 T120A SLBP恢复了活力和组蛋白前mRNA加工。然而,T230A突变体位于RNA结合结构域的保守TPNK序列中,尽管它在体外对组蛋白mRNA的处理中具有完全的活性,但它并不能在体内恢复活力和组蛋白的mRNA处理。 T230A蛋白集中在细胞质中,表明它在核靶向方面存在缺陷,并说明了它在体内组蛋白前mRNA加工中无法发挥作用。 [参考:33]

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