Kielty Cay M, Sherratt Michael J, Marson Andrew, Baldock Clair
Wellcome Trust Centre for Cell-Matrix Research, Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, United Kingdom.
Adv Protein Chem. 2005;70:405-36. doi: 10.1016/S0065-3233(05)70012-7.
Fibrillin microfibrils are widely distributed extracellular matrix assemblies that endow elastic and nonelastic connective tissues with long-range elasticity. They direct tropoelastin deposition during elastic fibrillogenesis and form an outer mantle for mature elastic fibers. Microfibril arrays are also abundant in dynamic tissues that do not express elastin, such as the ciliary zonules of the eye. Mutations in fibrillin-1-the principal structural component of microfibrils-cause Marfan syndrome, a heritable disease with severe aortic, ocular, and skeletal defects. Isolated fibrillin-rich microfibrils have a complex 56 nm "beads-on-a-string" appearance; the molecular basis of their assembly and elastic properties, and their role in higher-order elastic fiber formation, remain incompletely understood.
原纤维微原纤维是广泛分布的细胞外基质组件,赋予弹性和非弹性结缔组织以长程弹性。它们在弹性纤维形成过程中指导原弹性蛋白沉积,并为成熟弹性纤维形成外层。微原纤维阵列在不表达弹性蛋白的动态组织中也很丰富,如眼睛的睫状小带。原纤维蛋白-1(微原纤维的主要结构成分)的突变会导致马凡综合征,这是一种具有严重主动脉、眼部和骨骼缺陷的遗传性疾病。分离出的富含原纤维蛋白的微原纤维具有复杂的56纳米“串珠”外观;它们组装和弹性特性的分子基础,以及它们在高阶弹性纤维形成中的作用,仍未完全了解。