Penner Akiyo S, Rock Matthew J, Kielty Cay M, Shipley J Michael
Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, Barnes-Jewish Hospital at Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2002 Sep 20;277(38):35044-9. doi: 10.1074/jbc.M206363200. Epub 2002 Jul 16.
Elastic fibers are composed of the protein elastin and a network of 10-12 nm microfibrils. The microfibrillar proteins include, among others, the fibrillins and microfibril-associated glycoproteins-1 and -2 (MAGP-1 and MAGP-2). Little is known about how microfibrillar proteins interact to support fiber assembly. We used the C-terminal half of MAGP-2 in a yeast two-hybrid library screen to identify relevant ligands. Six of 13 positive clones encoded known microfibrillar proteins, including fibrillin-1 and -2. Deletion analysis of partial fibrillin-1 and -2 clones revealed a calcium-binding epidermal growth factor repeat-containing region near the C terminus responsible for binding. This region is distinct from the region of fibrillin-1 reported by others to bind MAGP-1. The MAGP-2 bait was unable to interact productively with other epidermal growth factor repeats in fibrillin-1, demonstrating specificity of the interaction. Deletion analysis of the MAGP-2 bait demonstrated that binding occurred in a core region containing 48% identity and 7 conserved cysteine residues with MAGP-1. Immunoprecipitation of MAGP-2 from transfected COS-7 cells resulted in the coprecipitation of fibrillin. These results demonstrate that MAGP-2 specifically interacts with fibrillin-1 and -2 and suggest that MAGP-2 may help regulate microfibrillar assembly. The results also demonstrate the utility of the yeast two-hybrid system to study protein-protein interactions of the extracellular matrix.
弹性纤维由蛋白质弹性蛋白和一个由10 - 12纳米微原纤维组成的网络构成。微原纤维蛋白包括原纤蛋白以及微原纤维相关糖蛋白-1和-2(MAGP-1和MAGP-2)等。关于微原纤维蛋白如何相互作用以支持纤维组装,人们了解甚少。我们利用MAGP-2的C端在酵母双杂交文库筛选中鉴定相关配体。13个阳性克隆中有6个编码已知的微原纤维蛋白,包括原纤蛋白-1和-2。对部分原纤蛋白-1和-2克隆进行缺失分析,发现在C端附近有一个含钙结合表皮生长因子重复序列的区域负责结合。该区域与其他人报道的原纤蛋白-1中与MAGP-1结合的区域不同。MAGP-2诱饵无法与原纤蛋白-1中的其他表皮生长因子重复序列有效相互作用,表明这种相互作用具有特异性。对MAGP-2诱饵进行缺失分析表明,结合发生在一个与MAGP-1有48%同源性且有7个保守半胱氨酸残基的核心区域。从转染的COS-7细胞中免疫沉淀MAGP-2导致原纤蛋白共沉淀。这些结果表明MAGP-2与原纤蛋白-1和-2特异性相互作用,并提示MAGP-2可能有助于调节微原纤维组装。这些结果还证明了酵母双杂交系统在研究细胞外基质蛋白质-蛋白质相互作用方面的实用性。