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首页> 外文期刊>Human Molecular Genetics >Unrip, a factor implicated in cap-independent translation, associates with the cytosolic SMN complex and influences its intracellular localization.
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Unrip, a factor implicated in cap-independent translation, associates with the cytosolic SMN complex and influences its intracellular localization.

机译:Unrip是与帽独立翻译有关的因素,与胞质SMN复合物相关并影响其细胞内定位。

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摘要

Spliceosomal Uridine-rich small ribonucleo protein (U snRNP) assembly is an active process mediated by the macromolecular survival motor neuron (SMN) complex. This complex contains the SMN protein and six additional proteins, named Gemin2-7, according to their localization to nuclear structures termed gems. Here, we provide biochemical evidence for the existence of another, yet atypical, SMN complex component, termed unr-interacting protein (unrip). This abundant factor has been previously shown to form a complex with unr, a protein implicated in cap-independent translation of cellular and viral mRNA. We show that unrip is integrated into a complex with unr or with the SMN complex in vivo in a mutually exclusive manner. In the latter case, unrip is recruited to the active SMN complex via a stable interaction with Gemin7. However, unlike SMN and Gemins, unrip localizes predominantly to the cytoplasm and is absent from gems/Cajal bodies. Interestingly, RNAi-induced reduction of unrip protein levels leadsto enhanced accumulation of SMN in the nucleus as evident by the increased formation of nuclear gems/Cajal bodies. Our data identify unrip as the first component of the U snRNP assembly machinery that associates with the SMN complex in a compartment-specific way. We speculate that unrip plays a crucial role in the intracellular distribution of the SMN complex.
机译:剪接体富含尿苷的小核糖核蛋白(U snRNP)组装是大分子存活运动神经元(SMN)复合体介导的一个活跃过程。该复合物包含SMN蛋白和六个名为Gemin2-7的其他蛋白质,这取决于它们在称为宝石的核结构中的定位。在这里,我们提供了另一种非典型SMN复杂成分(称为非相互作用蛋白(unrip))的存在的生化证据。先前已经显示出这种丰富的因子与unr形成复合物,unr是与细胞和病毒mRNA的不依赖帽的翻译有关的蛋白质。我们显示,unrip以相互排斥的方式在体内与unr或与SMN复合物集成到复合物中。在后一种情况下,通过与Gemin7的稳定交互将未激活的对象募集到活动的SMN复合体中。但是,与SMN和Gemins不同,解开主要定位于细胞质,而宝石/ Cajal体则不存在。有趣的是,RNAi诱导的未成熟蛋白水平的降低导致SMN在细胞核中的积累增强,这可以通过增加核宝石/ Cajal体的形成来证明。我们的数据确定裂开是U snRNP组装机械的第一个组件,该组件以特定于隔室的方式与SMN复合体关联。我们推测解开在SMN复合物的细胞内分布中起着至关重要的作用。

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