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剪接变异异构体揭示 CCM2 蛋白中新型的 PTB 结构域。

Alternatively spliced isoforms reveal a novel type of PTB domain in CCM2 protein.

机构信息

Department of Molecular and Translational Medicine (MTM), Texas Tech University Health Science Center El Paso, El Paso, TX, 79905, USA.

出版信息

Sci Rep. 2019 Nov 1;9(1):15808. doi: 10.1038/s41598-019-52386-0.

Abstract

Cerebral cavernous malformations (CCMs) is a microvascular disorder in the central nervous system. Despite tremendous efforts, the causal genetic mutation in some CCM patients has not be identified, raising the possibility of an unknown CCM locus. The CCM2/MGC4607 gene has been identified as one of three known genes causing CCMs. In this report, we defined a total of 29 novel exons and 4 novel promoters in CCM2 genomic structure and subsequently identified a total of 50 new alternative spliced isoforms of CCM2 which eventually generated 22 novel protein isoforms. Genetic analysis of CCM2 isoforms revealed that the CCM2 isoforms can be classified into two groups based on their alternative promoters and alternative start codon exons. Our data demonstrated that CCM2 isoforms not only are specific in their subcellular compartmentation but also have distinct cellular expression patterns among various tissues and cells, indicating the pleiotropic cellular roles of CCM2 through their multiple isoforms. In fact, the complexity of the CCM2 genomic structure was reflected by the multiple layers of regulation of CCM2 expression patterns. At the transcriptional level, it is accomplished by alternative promoters, alternative splicing, and multiple transcriptional start sites and termination sites; while at the translational level, it is carried out with various cellular functions with a distinguishable CCM2 protein group pattern, specified abundance and composition of selective isoforms in a cell and tissue specific fashion. Through experimentation, we discovered a unique phosphotyrosine binding (PTB) domain, namely atypical phosphotyrosine binding (aPTB) domain. Some long CCM2 isoform proteins contain both classes of PTB domains, making them a dual PTB domain-containing protein. Both CCM1 and CCM3 can bind competitively to this aPTB domain, indicating CCM2 as the cornerstone for CCM signaling complex (CSC).

摘要

脑静脉畸形(CCMs)是中枢神经系统的一种微血管疾病。尽管付出了巨大努力,但一些 CCM 患者的致病基因突变仍未确定,这增加了未知 CCM 基因座的可能性。CCM2/MGC4607 基因已被确定为导致 CCM 的三个已知基因之一。在本报告中,我们总共定义了 29 个新的外显子和 4 个新的 CCM2 基因组结构启动子,随后总共鉴定了 50 种新的 CCM2 选择性剪接异构体,最终产生了 22 种新的蛋白质异构体。CCM2 异构体的遗传分析表明,根据其选择性启动子和选择性起始密码子外显子,CCM2 异构体可分为两组。我们的数据表明,CCM2 异构体不仅在亚细胞区室化方面具有特异性,而且在各种组织和细胞中具有不同的细胞表达模式,这表明 CCM2 通过其多种异构体具有多效性的细胞作用。事实上,CCM2 基因组结构的复杂性反映在 CCM2 表达模式的多层调节上。在转录水平上,它是通过选择性启动子、选择性剪接和多个转录起始位点和终止位点来完成的;而在翻译水平上,它是通过各种细胞功能来实现的,具有可区分的 CCM2 蛋白组模式,指定了选择性异构体在细胞和组织中的特异性丰度和组成。通过实验,我们发现了一个独特的磷酸酪氨酸结合(PTB)结构域,即非典型磷酸酪氨酸结合(aPTB)结构域。一些长的 CCM2 异构体蛋白包含这两类 PTB 结构域,使它们成为双 PTB 结构域蛋白。CCM1 和 CCM3 都可以竞争结合这个 aPTB 结构域,表明 CCM2 是 CCM 信号复合物(CSC)的基石。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e276/6825194/fbe3ce991314/41598_2019_52386_Fig1_HTML.jpg

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