Holmes D F, Chapman J A, Prockop D J, Kadler K E
Department of Biochemistry/Molecular Biology, University of Manchester Medical School, United Kingdom.
Proc Natl Acad Sci U S A. 1992 Oct 15;89(20):9855-9. doi: 10.1073/pnas.89.20.9855.
Collagen fibrils generated in vitro at 37 degrees C by enzymic removal of C-terminal propeptides from type I pC-collagen (an intermediate in the normal processing of type I procollagen to collagen containing the C-terminal propeptides but not the N-terminal propeptides) display shape polarity, with one tip fine tapered and the other coarse tapered. Mass measurements by scanning transmission electron microscopy show that the mass per unit length along both kinds of tip increases roughly linearly over distances of approximately 100 D periods from the fibril end [D (axial periodicity) = 67 nm]. The fine tips of fibrils of widely differing lengths exhibit near-identical mass distributions, the mass in all cases increasing at the rate of approximately 17 molecules per D period, irrespective of fibril length. Coarse tips display less regular behavior. These results show that (i) the shape of a fine tip is not conical but resembles more closely a paraboloid of revolution, and (ii) for this shape to be maintained throughout growth, accretion (rate of mass uptake per unit area) cannot everywhere be the same on the surface of the tip but must decrease as the diameter increases. To a first approximation, accretion alpha (diameter)-1.
通过酶促去除I型前胶原C端前肽(I型前胶原正常加工为含C端前肽但不含N端前肽的胶原过程中的一种中间体)在37℃体外生成的胶原原纤维呈现形状极性,一端细尖,另一端粗钝。扫描透射电子显微镜的质量测量表明,从纤维末端起,在大约100个D周期的距离内,两种末端的单位长度质量大致呈线性增加[D(轴向周期)=67nm]。长度差异很大的纤维的细尖呈现近乎相同的质量分布,在所有情况下,质量以每D周期约17个分子的速率增加,与纤维长度无关。粗钝末端表现出不太规则的行为。这些结果表明:(i)细尖的形状不是圆锥形,而是更类似于旋转抛物面;(ii)为了在整个生长过程中保持这种形状,细尖表面的积聚(单位面积的质量摄取速率)不可能处处相同,而必须随着直径的增加而降低。初步近似,积聚α(直径)-1。