El-Hallous Ehab, Sasaki Takako, Hubmacher Dirk, Getie Melkamu, Tiedemann Kerstin, Brinckmann Jürgen, Bätge Boris, Davis Elaine C, Reinhardt Dieter P
Faculty of Medicine, Department of Anatomy and Cell Biology, McGill University, Montreal, Quebec H3A 2B2, Canada.
J Biol Chem. 2007 Mar 23;282(12):8935-46. doi: 10.1074/jbc.M608204200. Epub 2007 Jan 25.
Fibrillin-containing microfibrils in elastic and nonelastic extracellular matrices play important structural and functional roles in various tissues, including blood vessels, lung, skin, and bone. Microfibrils are supramolecular aggregates of several protein and nonprotein components. Recently, a large region in the N-terminal portion of fibrillin-1 was characterized as a multifunctional protein interaction site, including binding sites for fibulin-2 and -5 among others. Using a panel of recombinant fibrillin-1 swapped domain and deletion fragments, we demonstrate here that the conserved first hybrid domain in fibrillin-1 is essential for binding to fibulin-2, -4, and -5. Fibulin-3 and various isoforms of fibulin-1 did not interact with fibrillin-1. Although the first hybrid domain in fibrillin-1 is located in close vicinity to the self-assembly epitope, binding of fibulin-2, -4, and -5 did not interfere with self-assembly. However, these fibulins can associate with microfibrils at various levels of maturity. Formation of ternary complexes between fibrillin-1, fibulins, and tropoelastin demonstrated that fibulin-2 and -5 but much less fibulin-4, are able to act as molecular adaptors between fibrillin-1 and tropoelastin.
弹性和非弹性细胞外基质中含原纤蛋白的微原纤维在包括血管、肺、皮肤和骨骼在内的各种组织中发挥着重要的结构和功能作用。微原纤维是几种蛋白质和非蛋白质成分的超分子聚集体。最近,原纤蛋白-1 N端部分的一个大区域被鉴定为多功能蛋白质相互作用位点,其中包括与纤连蛋白-2和-5等的结合位点。利用一组重组原纤蛋白-1交换结构域和缺失片段,我们在此证明原纤蛋白-1中保守的第一个杂交结构域对于与纤连蛋白-2、-4和-5的结合至关重要。纤连蛋白-3和原纤蛋白-1的各种异构体不与原纤蛋白-1相互作用。虽然原纤蛋白-1中的第一个杂交结构域紧邻自组装表位,但纤连蛋白-2、-4和-5的结合并不干扰自组装。然而,这些纤连蛋白可以在不同成熟度水平与微原纤维结合。原纤蛋白-1、纤连蛋白和原弹性蛋白之间三元复合物的形成表明,纤连蛋白-2和-5,但纤连蛋白-4的作用要小得多,能够作为原纤蛋白-1和原弹性蛋白之间的分子衔接物。