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Alternative exon skipping biases substrate preference of the deubiquitylase USP15 for mysterin/RNF213 the moyamoya disease susceptibility factor

机译:替代性外显子跳跃偏向去甲酰化酶USP15的底物偏爱myostin / RNF213(烟雾病易感性因子)

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摘要

The deubiquitylating enzyme USP15 plays significant roles in multiple cellular pathways including TGF-β signaling, RNA splicing, and innate immunity. Evolutionarily conserved skipping of exon 7 occurs during transcription of the mRNAs encoding USP15 and its paralogue USP4, yielding two major isoforms for each gene. Exon 7 of USP15 encodes a serine-rich stretch of 29 amino acid residues located in the inter-region linker that connects the N-terminal putative regulatory region and the C-terminal enzymatic region. Previous findings suggested that the variation in the linker region leads to functional differences between the isoforms of the two deubiquitylating enzymes, but to date no direct evidence regarding such functional divergence has been published. We found that the long isoform of USP15 predominantly recognizes and deubiquitylates mysterin, a large ubiquitin ligase associated with the onset of moyamoya disease. This observation represents the first experimental evidence that the conserved exon skipping alters the substrate specificity of this class of deubiquitylating enzymes. In addition, we found that the interactomes of the short and long isoforms of USP15 only partially overlapped. Thus, USP15, a key gene in multiple cellular processes, generates two functionally different isoforms via evolutionarily conserved exon skipping.
机译:去泛素化酶USP15在多种细胞途径中发挥重要作用,包括TGF-β信号传导,RNA剪接和先天免疫。外显子7在进化上保守的跳跃发生在编码USP15及其旁系USP4的mRNA转录过程中,每个基因产生两个主要的同工型。 USP15的外显子7编码位于连接N端假定调控区和C端酶促区的区域间连接子中的29个氨基酸残基的富含丝氨酸的片段。先前的发现表明,接头区域中的变化导致两种去泛素化酶的同工型之间的功能差异,但是迄今为止,尚未公开有关这种功能差异的直接证据。我们发现,USP15的长同工型主要识别并消除泛素化mysterin,后者是一种与烟雾病相关的大型泛素连接酶。该观察结果代表了第一个实验证据,即保守的外显子跳跃改变了这类去泛素化酶的底物特异性。此外,我们发现USP15的短和长同工型的相互作用组仅部分重叠。因此,USP15是多种细胞过程中的关键基因,它通过进化上保守的外显子跳跃产生两种功能不同的同工型。

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