Koch Manuel, Laub Friedrich, Zhou Peihong, Hahn Rita A, Tanaka Shizuko, Burgeson Robert E, Gerecke Donald R, Ramirez Francesco, Gordon Marion K
Institute for Biochemistry II, University of Cologne, Joseph-Stelzmann Strasse 52, Cologne 50931, Germany.
J Biol Chem. 2003 Oct 31;278(44):43236-44. doi: 10.1074/jbc.M302112200. Epub 2003 Jul 21.
Tissue-specific assembly of fibers composed of the major collagen types I and II depends in part on the formation of heterotypic fibrils, using the quantitatively minor collagens V and XI. Here we report the identification of a new fibrillar-like collagen chain that is related to the fibrillar alpha1(V), alpha1(XI), and alpha2(XI) collagen polypeptides and which is coexpressed with type I collagen in the developing bone and eye. The new collagen was designated the alpha1(XXIV) chain and consists of a long triple helical domain flanked by typical propeptide-like sequences. The carboxyl propeptide is classic, with 8 conserved cysteine residues. The amino-terminal peptide contains a thrombospodin-N-terminal-like (TSP) motif and a highly charged segment interspersed with several tyrosine residues, like the fibril diameter-regulating collagen chains alpha1(V) and alpha1(XI). However, a short imperfection in the triple helix makes alpha1(XXIV) unique from other chains of the vertebrate fibrillar collagen family. The triple helical interruption and additional select features in both terminal peptides are common to the fibrillar chains of invertebrate organisms. Based on these data, we propose that collagen XXIV is an ancient molecule that may contribute to the regulation of type I collagen fibrillogenesis at specific anatomical locations during fetal development.
由主要的I型和II型胶原蛋白组成的纤维的组织特异性组装部分取决于异型纤维的形成,这需要使用数量上较少的V型和XI型胶原蛋白。在此,我们报告鉴定出一种新的类纤维状胶原链,它与纤维状α1(V)、α1(XI)和α2(XI)胶原多肽相关,并在发育中的骨骼和眼睛中与I型胶原共表达。这种新的胶原蛋白被命名为α1(XXIV)链,由一个长的三螺旋结构域组成,两侧是典型的前肽样序列。羧基端前肽是典型的,有8个保守的半胱氨酸残基。氨基端肽包含一个血小板反应蛋白N端样(TSP)基序和一个高度带电的片段,其间散布着几个酪氨酸残基,类似于调节纤维直径的胶原链α1(V)和α1(XI)。然而,三螺旋结构中的一个短缺陷使α1(XXIV)与脊椎动物纤维状胶原家族的其他链不同。三螺旋中断以及两个末端肽中的其他特定特征在无脊椎动物的纤维状链中很常见。基于这些数据,我们提出胶原蛋白XXIV是一种古老的分子,可能在胎儿发育期间的特定解剖位置有助于调节I型胶原纤维形成。