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A Novel Set of Nuclear Localization Signals Determine Distributions of the αCP RNA-Binding Proteins

机译:一组新的核定位信号确定αCPRNA结合蛋白的分布。

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摘要

αCPs comprise a subfamily of KH-domain-containing RNA-binding proteins with specificity for C-rich pyrimidine tracts. These proteins play pivotal roles in a broad spectrum of posttranscriptional events. The five major αCP isoforms are encoded by four dispersed loci. Each isoform contains three repeats of the RNA-binding KH domain (KH1, KH2, and KH3) but lacks other identifiable motifs. To explore the complexity of their respective functions, we examined the subcellular localization of each αCP isoform. Immunofluorescence studies revealed three distinct distributions: αCP1 and αCP2 are predominantly nuclear with specific enrichment of αCP1 in nuclear speckles, αCP3 and αCP4 are restricted to the cytoplasm, and αCP2-KL, an αCP2 splice variant, is present at significant levels in both the nucleus and the cytoplasm. We mapped nuclear localization signals (NLSs) for αCP isoforms. αCP2 contains two functionally independent NLS. Both NLSs appear to be novel and were mapped to a 9-amino-acid segment between KH2 and KH3 (NLS I) and to a 12-amino-acid segment within KH3 (NLS II). NLS I is conserved in αCP1, whereas NLS II is inactivated by two amino acid substitutions. Neither NLS is present in αCP3 or αCP4. Consistent with mapping studies, deletion of NLS I from αCP1 blocks its nuclear accumulation, whereas NLS I and NLS II must both be inactivated to block nuclear accumulation of αCP2. These data demonstrate an unexpected complexity in the compartmentalization of αCP isoforms and identify two novel NLS that play roles in their respective distributions. This complexity of αCP distribution is likely to contribute to the diverse functions mediated by this group of abundant RNA-binding proteins.
机译:αCPs包含一个具有KH结构域的RNA结合蛋白的亚家族,对富含C的嘧啶片段具有特异性。这些蛋白质在广泛的转录后事件中起关键作用。五个主要的αCP同工型由四个分散的基因座编码。每个同工型都包含三个重复的RNA结合KH域(KH1,KH2和KH3),但缺少其他可识别的基序。为了探索其各自功能的复杂性,我们研究了每种αCP同工型的亚细胞定位。免疫荧光研究揭示了三种不同的分布:αCP1和αCP2主要是核,在核斑点中有特定的αCP1富集;αCP3和αCP4限于细胞质;αCP2剪接变体αCP2-KL在两个核中均以显着水平存在。和细胞质。我们绘制了αCP同种型的核定位信号(NLSs)。 αCP2包含两个功能独立的NLS。这两个NLS似乎都是新的,并被映射到KH2和KH3之间的9个氨基酸区段(NLS I)和KH3中的12个氨基酸区段(NLS II)。 NLS I在αCP1中是保守的,而NLS II通过两个氨基酸取代而失活。 αCP3或αCP4中均不存在NLS。与制图研究一致,从αCP1缺失NLS I会阻止其核蓄积,而必须同时灭活NLS I和NLS II才能阻止αCP2的核蓄积。这些数据证明了在αCP同工型的分隔中出乎意料的复杂性,并鉴定了两种在其各自的分布中起作用的新型NLS。 αCP分布的这种复杂性可能有助于由这组丰富的RNA结合蛋白介导的多种功能。

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