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首页> 外文期刊>Human Molecular Genetics >A splice form of polycystin-2, lacking exon 7, does not interact with polycystin-1.
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A splice form of polycystin-2, lacking exon 7, does not interact with polycystin-1.

机译:缺少外显子7的多囊藻蛋白2的剪接形式不与多囊藻蛋白1相互作用。

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Polycystin-2 (or polycystic kidney disease gene 2 product, PKD2) and its homologues are calcium-regulated ion channels. Mutations in PKD2 are causative for autosomal dominant polycystic kidney disease. Alternative splicing has been documented for the 'PKD2-like' genes as a naturally occurring event and for PKD2 in pathologic context. Here we studied naturally occurring PKD2/Pkd2 (human/murine) splice forms on the mRNA and protein levels. Systematic scanning of PKD2/Pkd2 cDNAs obtained through RT-PCR from murine tissues and human cell lines revealed alternative splice forms that were sequenced and checked for translation. We identified three major alternative transcripts of PKD2/Pkd2, PKD2/Pkd2Delta6, PKD2/Pkd2Delta7 and PKD2/Pkd2Delta9, and one minor splice form, PKD2/Pkd2Delta12-13, numbered according to deleted exons or parts thereof. A transcript lacking exon 7 (PKD2/Pkd2Delta7) generated significantly altered protein variant. This polycystin-2Delta7 protein appeared stable, when expressed in cell culture and apparently did not interact with polycyctin-1, which should be due to the reversed topology (extracellular) of the interacting C-terminus (intracellular in polycystin-2). Pkd2Delta7 transcript was predominantly expressed in brain and amounted to 3-6.4% of Pkd2 transcripts in the relevant organ. Moreover, both Pkd2 and Pkd2Delta7 were developmentally regulated. Polycystin-2Delta7 adds on to the number of identified polycystin molecules. The predominant expression in brain indicates a function in this organ. The inability to interact with polycystin-1 expands further the PKD1-independent functions of polycystin-2 forms.
机译:Polycystin-2(或多囊肾疾病基因2产物PKD2)及其同源物是钙调节离子通道。 PKD2突变是常染色体显性多囊肾的病因。对于像自然发生的事件那样的“ PKD2样”基因和病理情况下的PKD2,已有其他的剪接方法。在这里,我们研究了在mRNA和蛋白质水平上天然存在的PKD2 / Pkd2(人/鼠)剪接形式。通过RT-PCR从鼠类组织和人细胞系中获得的PKD2 / Pkd2 cDNA的系统扫描显示了可替代的剪接形式,已对其进行测序并检查了翻译。我们确定了PKD2 / Pkd2,PKD2 / Pkd2Delta6,PKD2 / Pkd2Delta7和PKD2 / Pkd2Delta9的三个主要替代转录本,以及一个较小的剪接形式PKD2 / Pkd2Delta12-13,根据缺失的外显子或其部分编号。缺少外显子7的转录本(PKD2 / Pkd2Delta7)产生了显着改变的蛋白质变体。当在细胞培养物中表达时,这种polycystin-2Delta7蛋白显得稳定,并且显然不与polycyctin-1相互作用,这应该是由于相互作用的C端(polycystin-2的细胞内)的拓扑结构(细胞外)颠倒了。 Pkd2Delta7转录本主要在脑中表达,占相关器官中Pkd2转录本的3-6.4%。此外,Pkd2和Pkd2Delta7都受到发育调控。 Polycystin-2Delta7增加了已鉴定出的polycystin分子的数量。脑中的主要表达表明该器官的功能。无法与polycystin-1相互作用进一步扩展了polycystin-2形式的PKD1独立功能。

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