Yamada Y, Liau G, Mudryj M, Obici S, de Crombrugghe B
Nature. 1984;310(5975):333-7. doi: 10.1038/310333a0.
Type III collagen is often found in the same tissues as type I collagen, yet the function and nature of the fibrils formed by the two collagens differ markedly. To understand the evolutionary history of the collagen gene family in more detail, we isolated the gene for type III collagen and compared its structure with that of the gene for alpha 2(I) collagen. This comparison points to a remarkable conservation in the size distribution of the exons coding for the helical part of these two collagen polypeptides: equivalent amino acid segments in the helical domain of each polypeptide are encoded by exons of equal sizes in each gene. This suggests that after the interstitial collagen genes had been duplicated from a common ancestor about 2-5 X 10(8) years ago, no recombinations between these exons were tolerated, although the same recombinational phenomena must have played an important part in shaping the structure of the progenitor for these genes. This fixation of the size distribution of the exons which code for the interstitial collagen helical domains is found despite the persistence in these exons of sequence elements that should have favoured recombinational rearrangements, and contrasts with the variations in the pattern of sizes of some exons coding for the amino and carboxyl propeptides of these collagens.
III型胶原蛋白常与I型胶原蛋白存在于相同组织中,然而这两种胶原蛋白形成的纤维的功能和性质却显著不同。为了更详细地了解胶原蛋白基因家族的进化史,我们分离出了III型胶原蛋白基因,并将其结构与α2(I)胶原蛋白基因的结构进行了比较。这种比较表明,编码这两种胶原蛋白多肽螺旋部分的外显子在大小分布上具有显著的保守性:每个多肽螺旋结构域中的等效氨基酸片段由每个基因中大小相等的外显子编码。这表明,大约在2 - 5×10⁸年前,间隙胶原蛋白基因从一个共同祖先复制而来后,这些外显子之间不再发生重组,尽管相同的重组现象在塑造这些基因的祖先进化结构中肯定起到了重要作用。尽管这些外显子中存在本应有利于重组重排的序列元件,但编码间隙胶原蛋白螺旋结构域的外显子大小分布仍然固定,这与编码这些胶原蛋白氨基和羧基前肽的一些外显子大小模式的变化形成了对比。