Bhowmick Manishabrata, Fields Gregg B
Torrey Pines Institute for Molecular Studies, Port St. Lucie, FL, USA.
Methods Mol Biol. 2013;1081:167-94. doi: 10.1007/978-1-62703-652-8_11.
The triple-helical structure of collagen has been accurately reproduced in numerous chemical and recombinant model systems. Triple-helical peptides and proteins have found application for dissecting collagen-stabilizing forces, isolating receptor- and protein-binding sites in collagen, mechanistic examination of collagenolytic proteases, and development of novel biomaterials. Introduction of native-like sequences into triple-helical constructs can reduce the thermal stability of the triple-helix to below that of the physiological environment. In turn, incorporation of nonnative amino acids and/or templates can enhance triple-helix stability. We presently describe approaches by which triple-helical structure can be modulated for use under physiological or near-physiological conditions.
胶原蛋白的三螺旋结构已在众多化学和重组模型系统中得到精确再现。三螺旋肽和蛋白质已被用于剖析胶原蛋白稳定力、分离胶原蛋白中的受体和蛋白质结合位点、对胶原酶进行机制研究以及开发新型生物材料。将类天然序列引入三螺旋构建体可将三螺旋的热稳定性降低至生理环境以下。反过来,掺入非天然氨基酸和/或模板可以增强三螺旋稳定性。我们目前描述了可调节三螺旋结构以在生理或近生理条件下使用的方法。