Wenstrup Richard J, Florer Jane B, Brunskill Eric W, Bell Sheila M, Chervoneva Inna, Birk David E
Division of Human Genetics, Cincinnati Children's Hospital Research Foundation, 3333 Burnet Ave., ML 4006, Cincinnati, OH 45229, USA.
J Biol Chem. 2004 Dec 17;279(51):53331-7. doi: 10.1074/jbc.M409622200. Epub 2004 Sep 21.
Vertebrate collagen fibrils are heterotypically composed of a quantitatively major and minor fibril collagen. In non-cartilaginous tissues, type I collagen accounts for the majority of the collagen mass, and collagen type V, the functions of which are poorly understood, is a minor component. Type V collagen has been implicated in the regulation of fibril diameter, and we reported recently preliminary evidence that type V collagen is required for collagen fibril nucleation (Wenstrup, R. J., Florer, J. B., Cole, W. G., Willing, M. C., and Birk, D. E. (2004) J. Cell. Biochem. 92, 113-124). The purpose of this study was to define the roles of type V collagen in the regulation of collagen fibrillogenesis and matrix assembly. Mouse embryos completely deficient in pro-alpha1(V) chains were created by homologous recombination. The col5a1-/- animals die in early embryogenesis, at approximately embryonic day 10. The type V collagen-deficient mice demonstrate a virtual lack of collagen fibril formation. In contrast, the col5a1+/- animals are viable. The reduced type V collagen content is associated with a 50% reduction in fibril number and dermal collagen content. In addition, relatively normal, cylindrical fibrils are assembled with a second population of large, structurally abnormal collagen fibrils. The structural properties of the abnormal matrix are decreased relative to the wild type control animals. These data indicate a central role for the evolutionary, ancient type V collagen in the regulation of fibrillogenesis. The complete dependence of fibril formation on type V collagen is indicative of the critical role of the latter in early fibril initiation. In addition, this fibril collagen is important in the determination of fibril structure and matrix organization.
脊椎动物的胶原纤维由数量上占主要和次要的纤维状胶原异型组成。在非软骨组织中,I型胶原占胶原总量的大部分,而功能尚不清楚的V型胶原是次要成分。V型胶原与纤维直径的调节有关,我们最近报道了初步证据表明V型胶原是胶原纤维成核所必需的(Wenstrup, R. J., Florer, J. B., Cole, W. G., Willing, M. C., and Birk, D. E. (2004) J. Cell. Biochem. 92, 113 - 124)。本研究的目的是确定V型胶原在胶原纤维形成和基质组装调节中的作用。通过同源重组产生了完全缺乏前α1(V)链的小鼠胚胎。col5a1 - / - 动物在胚胎发育早期死亡,大约在胚胎第10天。V型胶原缺陷小鼠几乎没有胶原纤维形成。相比之下,col5a1 + / - 动物是可存活的。V型胶原含量的降低与纤维数量和真皮胶原含量降低50%相关。此外,相对正常的圆柱形纤维与另一群大的、结构异常的胶原纤维一起组装。相对于野生型对照动物,异常基质的结构特性降低。这些数据表明进化上古老的V型胶原在纤维形成调节中起核心作用。纤维形成对V型胶原的完全依赖性表明后者在早期纤维起始中起关键作用。此外,这种纤维状胶原在纤维结构和基质组织的确定中很重要。