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脑特异性双链RNA结合蛋白Staufen2:核仁积累及亚型特异性的转运蛋白5依赖性输出

The brain-specific double-stranded RNA-binding protein Staufen2: nucleolar accumulation and isoform-specific exportin-5-dependent export.

作者信息

Macchi Paolo, Brownawell Amy M, Grunewald Barbara, DesGroseillers Luc, Macara Ian G, Kiebler Michael A

机构信息

Max-Planck-Institute for Developmental Biology, D-72076 Tübingen, Germany.

出版信息

J Biol Chem. 2004 Jul 23;279(30):31440-4. doi: 10.1074/jbc.C400226200. Epub 2004 May 27.

Abstract

The mammalian double-stranded RNA-binding proteins Staufen (Stau1 and Stau2) are involved in RNA localization in polarized neurons. In contrast to the more ubiquitously expressed Stau1, Stau2 is mainly expressed in the nervous system. In Drosophila, the third double-stranded RNA-binding domain (RBD3) of Staufen is essential for RNA interaction. When conserved amino acids within the RBD3 of Stau2 were mutated to render Stau2 defective for RNA binding, the mutant Stau2 proteins accumulate predominantly in the nucleolus. This is in contrast to wild type Stau2 that mostly localizes in the cytosol. The nuclear import is dependent on a nuclear localization signal in close proximity to the RBD3. The nuclear export of Stau2 is not dependent on CRM1 but rather on Exportin-5. We show that Exportin-5 interacts with the RBD3 of wild type Stau2 in an RNA-dependent manner in vitro but not with mutant Stau2. When Exportin-5 is down-regulated by RNA interference, only the largest isoform of Stau2 (Stau2(62)) preferentially accumulates in the nucleolus. It is tempting to speculate that Stau2(62) binds RNA in the nucleus and assembles into ribonucleoparticles, which are then exported via the Exportin-5 pathway to their final destination.

摘要

哺乳动物双链RNA结合蛋白Staufen(Stau1和Stau2)参与极化神经元中的RNA定位。与更广泛表达的Stau1不同,Stau2主要在神经系统中表达。在果蝇中,Staufen的第三个双链RNA结合结构域(RBD3)对于RNA相互作用至关重要。当Stau2的RBD3内的保守氨基酸发生突变,使Stau2丧失RNA结合能力时,突变的Stau2蛋白主要积聚在核仁中。这与主要定位于细胞质的野生型Stau2形成对比。核输入依赖于紧邻RBD3的核定位信号。Stau2的核输出不依赖于CRM1,而是依赖于Exportin-5。我们发现,Exportin-5在体外以RNA依赖的方式与野生型Stau2的RBD3相互作用,但不与突变型Stau2相互作用。当通过RNA干扰下调Exportin-5时,只有最大的Stau2异构体(Stau2(62))优先积聚在核仁中。很容易推测,Stau2(62)在细胞核中结合RNA并组装成核糖核蛋白颗粒,然后通过Exportin-5途径输出到它们的最终目的地。

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