Na G C
U.S. Department of Agriculture, ARS, Eastern Regional Research Center, Philadelphia, Pennsylvania 19118.
Biochemistry. 1989 Sep 5;28(18):7161-7. doi: 10.1021/bi00444a005.
Type I collagen purified from calf skin was further separated into monomeric and oligomeric fractions and characterized with gel electrophoresis and measurement of solution viscosity. The thermal stabilities of the triple-helical structure of the collagen molecules of these preparations and the fibrils assembled therefrom were determined with differential UV spectroscopy and scanning microcalorimetry. The monomeric collagen was reduced with NaBH4-, and the kinetics and equilibrium of the reversible fibril assembly-disassembly were examined in detail. Fibril assembly and disassembly of the collagen induced by slow scans of temperature showed hysteresis. The assembly curve was very sharp whereas the disassembly curve was gradual. Equilibrium centrifugation showed the collagen disassembled from the fibrils to be predominantly monomers. However, unlike the unassembled collagen, the collagen disassembled from fibrils by cooling showed no lag phase in subsequent cycles of fibril assembly. The thermodynamic parameters of fibril growth were derived from a fibril disassembly curve. Fibril growth was weaker for the NaBH4-reduced monomeric collagen than the native crude collagen, perhaps due to the removal of oligomers and the changes in the molecular structure brought by the reduction. The results corroborated the strongly cooperative mechanism for the fibril assembly proposed in the preceding paper.
从小牛皮中纯化得到的I型胶原蛋白进一步分离为单体和寡聚体部分,并通过凝胶电泳和溶液粘度测量进行表征。使用差示紫外光谱和扫描量热法测定这些制剂中胶原蛋白分子的三螺旋结构及其组装形成的原纤维的热稳定性。用NaBH₄还原单体胶原蛋白,并详细研究了可逆原纤维组装 - 解聚的动力学和平衡。温度缓慢扫描诱导的胶原蛋白原纤维组装和解聚显示出滞后现象。组装曲线非常陡峭,而解聚曲线则较为平缓。平衡离心表明从原纤维中解离的胶原蛋白主要是单体。然而,与未组装的胶原蛋白不同,通过冷却从原纤维中解离的胶原蛋白在随后的原纤维组装循环中没有滞后阶段。原纤维生长的热力学参数来自原纤维解聚曲线。NaBH₄还原的单体胶原蛋白的原纤维生长比天然粗胶原蛋白弱,这可能是由于低聚物的去除以及还原引起的分子结构变化。结果证实了前文提出的原纤维组装的强协同机制。