Schmid T M, Mayne R, Bruns R R, Linsenmayer T F
J Ultrastruct Res. 1984 Feb;86(2):186-91. doi: 10.1016/s0022-5320(84)80057-x.
We have recently observed that aged and/or hypertrophying chondrocytes in culture synthesize a small collagen molecule termed short-chain (SC) collagen. Our previous biochemical studies have suggested that this molecule is slightly less than half the length of "typical" interstitial collagens and should have both a helical, collagenous domain and a nonhelical, globular one. In the present study we have examined the structure of this molecule by electron microscopy of rotary-shadowed preparations and segment-long-spacing crystallites. Rotary-shadowed SC collagen molecules appear as rods with a length of 132 nm and a knob at one end. Preparations of native molecules that have been treated by limited pepsin digestion show only the rod-like domain. These results are consistent with the rod-like domain having the molecular structure of a collagen helix, which is refractory to pepsin digestion, and the knob representing a globular, nonhelical domain. Segment-long-spacing crystallites of pepsin-digested molecules confirm the length of the helical domain to be 132 nm. Positively stained crystallites show a banding pattern different from other collagens.
我们最近观察到,培养中的衰老和/或肥大软骨细胞会合成一种名为短链(SC)胶原的小胶原分子。我们之前的生化研究表明,该分子长度略小于“典型”间质胶原的一半,且应同时具有螺旋状的胶原结构域和非螺旋状的球状结构域。在本研究中,我们通过对旋转阴影制备物和片段长间距微晶进行电子显微镜观察,研究了该分子的结构。旋转阴影下的SC胶原分子呈棒状,长度为132 nm,一端有一个球状结构。经有限胃蛋白酶消化处理的天然分子制剂仅显示出棒状结构域。这些结果与棒状结构域具有对胃蛋白酶消化具有抗性的胶原螺旋分子结构,以及球状结构代表球状非螺旋结构域的情况一致。胃蛋白酶消化分子的片段长间距微晶证实螺旋结构域的长度为132 nm。阳性染色的微晶显示出与其他胶原不同的条纹图案。