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新型剪接变异体对血管黏附蛋白-1 的功能调节。

Functional modulation of vascular adhesion protein-1 by a novel splice variant.

机构信息

MediCity Research Laboratory, University of Turku, Turku, Finland.

出版信息

PLoS One. 2013;8(1):e54151. doi: 10.1371/journal.pone.0054151. Epub 2013 Jan 18.

Abstract

Vascular Adhesion Protein-1 (VAP-1) is an endothelial adhesion molecule belonging to the primary amine oxidases. Upon inflammation it takes part in the leukocyte extravasation cascade facilitating transmigration of leukocytes into the inflamed tissue. Screening of a human lung cDNA library revealed the presence of an alternatively spliced shorter transcript of VAP-1, VAP-1Δ3. Here, we have studied the functional and structural characteristics of VAP-1Δ3, and show that the mRNA for this splice variant is expressed in most human tissues studied. In comparison to the parent molecule this carboxy-terminally truncated isoform lacks several of the amino acids important in the formation of the enzymatic groove of VAP-1. In addition, the conserved His684, which takes part in coordinating the active site copper, is missing from VAP-1Δ3. Assays using the prototypic amine substrates methylamine and benzylamine demonstrated that VAP-1Δ3 is indeed devoid of the semicarbazide-sensitive amine oxidase (SSAO) activity characteristic to VAP-1. When VAP-1Δ3-cDNA is transfected into cells stably expressing VAP-1, the surface expression of the full-length molecule is reduced. Furthermore, the SSAO activity of the co-transfectants is diminished in comparison to transfectants expressing only VAP-1. The observed down-regulation of both the expression and enzymatic activity of VAP-1 may result from a dominant-negative effect caused by heterodimerization between VAP-1 and VAP-1Δ3, which was detected in co-immunoprecipitation studies. This alternatively spliced transcript adds thus to the repertoire of potential regulatory mechanisms through which the cell-surface expression and enzymatic activity of VAP-1 can be modulated.

摘要

血管黏附蛋白-1(VAP-1)是一种属于单胺氧化酶的内皮黏附分子。在炎症过程中,它参与白细胞渗出级联反应,促进白细胞迁移到炎症组织中。筛选人肺 cDNA 文库发现 VAP-1 的一种替代性剪接较短的转录本 VAP-1Δ3。在这里,我们研究了 VAP-1Δ3 的功能和结构特征,并表明该剪接变体的 mRNA 在研究的大多数人体组织中均有表达。与母体分子相比,这种羧基末端截断的同工型缺乏形成 VAP-1 酶槽的几个重要氨基酸。此外,VAP-1Δ3 中还缺少保守的 His684,它参与了活性位点铜的配位。使用原型胺底物甲胺和苯甲胺的测定表明,VAP-1Δ3 确实缺乏 VAP-1 特有的半卡巴嗪敏感胺氧化酶(SSAO)活性。当 VAP-1Δ3-cDNA 转染到稳定表达 VAP-1 的细胞中时,全长分子的表面表达减少。此外,与仅表达 VAP-1 的转染细胞相比,共转染细胞的 SSAO 活性降低。VAP-1 的表达和酶活性的观察到下调可能是由于 VAP-1 和 VAP-1Δ3 之间的异源二聚化引起的显性负效应所致,这在共免疫沉淀研究中得到了检测。这种替代性剪接的转录本增加了细胞表面表达和 VAP-1 酶活性的潜在调节机制的 repertoire。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4c0/3548902/75df7ba7ba33/pone.0054151.g001.jpg

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