Ronzière M C, Berthet-Colominas C, Herbage D
Laboratoire Histologie Experimentale, UA CNRS 244, Université Claude Bernard, Villeurbanne, France.
Biochim Biophys Acta. 1987 Dec 18;916(3):381-7. doi: 10.1016/0167-4838(87)90184-1.
Acid-soluble and pepsin-soluble type I collagen from calf skin and pepsin-soluble type II collagen from bovine articular cartilage were precipitated in fibrillar form by various methods. Reconstituted native-like fibrils were analysed by low-angle X-ray diffraction, and the patterns were compared with those obtained with native type I (rat tail tendon) and type II fibrils (bovine articular cartilage). For both orientated and disorientated forms of these samples, we measured the ratio of the first/third-order intensities of the meridional diffraction peaks which are associated with the gap-filling. The values obtained with the reconstituted native-like fibrils (types I and II) were double and 20-times the values, respectively, measured for rat tail tendon and bovine articular cartilage. These differences reflect the extent of specific interactions of other components (proteoglycans) at the gap level along the collagen fibrils in the two tissues.
通过各种方法沉淀出了来自小牛皮的酸溶性和胃蛋白酶溶性I型胶原蛋白以及来自牛关节软骨的胃蛋白酶溶性II型胶原蛋白的纤维状形式。通过低角度X射线衍射分析了重构的天然样纤维,并将这些图谱与天然I型(大鼠尾腱)和II型纤维(牛关节软骨)所获得的图谱进行了比较。对于这些样品的取向和非取向形式,我们测量了与间隙填充相关的子午衍射峰的一阶/三阶强度比。用重构的天然样纤维(I型和II型)获得的值分别是大鼠尾腱和牛关节软骨测量值的两倍和20倍。这些差异反映了两种组织中胶原蛋白纤维间隙水平上其他成分(蛋白聚糖)特定相互作用的程度。