首页> 美国卫生研究院文献>International Journal of Biological Sciences >Molecular Characterization and Alternative Splicing of a Sodium Channel and DSC1 Ortholog Genes in Liposcelis bostrychophila Badonnel (Psocoptera: Liposcelididae)
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Molecular Characterization and Alternative Splicing of a Sodium Channel and DSC1 Ortholog Genes in Liposcelis bostrychophila Badonnel (Psocoptera: Liposcelididae)

机译:钠通道和DSC1直向同源基因的分子特性和选择性剪接在乳脂小Li(Poscoptera:Liposcelididae)中

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摘要

Alternative splicing greatly contributes to the structural and functional diversity of voltage-gated sodium channels (VGSCs) by generating various isoforms with unique functional and pharmacological properties. Here, we identified a new optional exon 23 located in the linker between domains II and III, and four mutually exclusive exons (exons 27A, 27B, 27C, and 27D) in domains IIIS3 and IIIS4 of the sodium channel of Liposcelis bostrychophila (termed as LbVGSC). This suggested that more alternative splicing phenomena remained to be discovered in VGSCs. Inclusion of exon 27C might lead to generation of non-functional isoforms. Meanwhile, identification of three alternative exons (exons 11, 13A, and 13B), which were located in the linker between domains II and III, indicated that abundant splicing events occurred in the DSC1 ortholog channel of L. bostrychophila (termed as LbSC1). Exons 13A and 13B were generated by intron retention, and the presence of exon 13B relied on the inclusion of exon 13A. Exon 13B was specifically expressed in the embryonic stage and contained an in-frame stop codon, inclusion of which led to generation of truncated proteins with only the first two domains. Additionally, several co-occurring RNA editing events were identified in LbSC1. Furthermore, remarkable similarity between the structure and expression patterns of LbVGSC and LbSC1 were discovered, and a closer evolutionary relationship between VGSCs and DSC1 orthologs was verified. Taken together, the data provided abundant molecular information on VGSC and DSC1 orthologs in L. bostrychophila, a representative Psocoptera storage pest, and insights into the alternative splicing of these two channels.
机译:通过产生具有独特功能和药理特性的各种同工型,替代性剪接极大地促进了电压门控钠通道(VGSC)的结构和功能多样性。在这里,我们确定了一个新的可选外显子23,位于域II和III之间的连接子中,并且在Bostrychophila钠通道的域IIIS3和IIIS4中被称为四个互斥外显子(外显子27A,27B,27C和27D)(称为LbVGSC)。这表明在VGSC中还有更多的选择性剪接现象。包含外显子27C可能导致产生非功能性同工型。同时,鉴定位于结构域II和III之间的接头中的三个备选外显子(外显子11、13A和13B)表明,丰富的剪接事件发生在Bostrychophila的DSC1直向同源物通道中(称为LbSC1)。外显子13A和13B是通过内含子保留产生的,并且外显子13B的存在依赖于内含子13A的包含。外显子13B在胚胎阶段特异性表达,并包含框内终止密码子,包含该密码子会导致仅前两个结构域的截短蛋白产生。此外,在LbSC1中鉴定了几个同时发生的RNA编辑事件。此外,发现了LbVGSC和LbSC1的结构和表达模式之间的显着相似性,并证实了VGSC和DSC1直系同源物之间的进化关系更紧密。综合起来,这些数据提供了关于Bostrychophila(一种典型的鳞翅目害虫)中的VGSC和DSC1直系同源物的丰富分子信息,并深入了解了这两个通道的选择性剪接。

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