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Nuclear import of the stem-loop binding protein and localization during the cell cycle

机译:茎环结合蛋白的核输入和细胞周期中的定位

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A key factor involved in the processing of histone pre-mRNAs in the nucleus and translation of mature histone mRNAs in the cytoplasm is the stem-loop binding protein (SLBP). In this work, we have investigated SLBP nuclear transport and subcellular localization during the cell cycle. SLBP is predominantly nuclear under steady-state conditions and localizes to the cytoplasm during S phase when histone mRNAs accumulate. Consistently, SLBP mutants that are defective in histone mRNA binding remain nuclear. As assayed in heterokaryons, export of SLBP from the nucleus is dependent on histone mRNA binding, demonstrating that SLBP on its own does not possess any nuclear export signals. We find that SLBP interacts with the import receptors Imp alpha/Imp beta and Transportin-SR2. Moreover, complexes formed between SLBP and the two import receptors are disrupted by RanGTP. We have further shown that SLBP is imported by both receptors in vitro. Three sequences in SLBP required for Imp alpha/Imp beta binding were identified. Simultaneous mutation of all three sequences was necessary to abolish SLBP nuclear localization in vivo. In contrast, we were unable to identify an in vivo role for Transportin-SR2 in SLBP nuclear localization. Thus, only the Imp alpha/Imp beta pathway contributes to SLBP nuclear import in HeLa cells.
机译:干核结合蛋白(SLBP)是参与细胞核中组蛋白前mRNA加工以及细胞质中成熟组蛋白mRNA翻译的关键因素。在这项工作中,我们研究了细胞周期中SLBP核转运和亚细胞定位。 SLBP在稳态条件下主要为核,在组蛋白mRNA积累的S期中定位于细胞质。一致地,组蛋白mRNA结合缺陷的SLBP突变体仍然是核的。如在异核体中测定的,从核中输出SLBP依赖于组蛋白mRNA结合,表明SLBP本身不具有任何核输出信号。我们发现SLBP与进口受体Imp alpha / Imp beta和Transportin-SR2相互作用。此外,RanGTP破坏了SLBP与两个输入受体之间形成的复合物。我们进一步表明,SLBP是在体外通过两种受体导入的。确定了Imp alpha / Imp beta结合所需的SLBP中的三个序列。所有三个序列的同时突变对于消除体内SLBP核定位是必需的。相比之下,我们无法确定SLBP核定位中Transportin-SR2的体内作用。因此,只有Imp alpha / Imp beta途径有助于HeLa细胞中SLBP核的导入。

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