Mazzorana M, Giry-Lozinguez C, van der Rest M
Institut de Biologie et Chimie des Proteines, Lyon, France.
Matrix Biol. 1995 Jul;14(7):583-8. doi: 10.1016/s0945-053x(05)80007-1.
The fibril-associated-collagens-with-interrupted-triple-helices (FACITs) are devoid of large C-propeptides like those involved in the trimeric assembly of the fibrillar collagens. Under these conditions, the C-terminal non triple-helical domain (NC1) and the adjacent triple-helical domain (COL1) are likely to be responsible for the trimeric assembly of these collagen molecules. Using a recombinant minigene of one of the FACITs, collagen XII, we show that a deletion covering most of the NC1 domain, except the first seven residues containing a cysteine and constituting the main part of the conserved junction between the COL1 and NC1 domains, does not prevent the formation of trimeric disulfide-bonded assembly of truncated alpha chains. These results suggest that if the non triple-helical NC1 domain is involved in the initial events governing the trimeric assembly, it must be through its amino acid residues participating in the junction. Our data confirm also the results obtained in a previous paper (Mazzorana et al.: J. Biol. Chem. 268:3029-3032, 1993) showing that the formation of disulfide bonds is dependent on hydroxylation and suggesting that the folding of the triple helix (or a part of it) precedes the formation of the disulfide bonds.
具有中断三螺旋结构的原纤维相关胶原(FACITs)缺乏参与纤维状胶原三聚体组装的那种大的C-前肽。在这些情况下,C端非三螺旋结构域(NC1)和相邻的三螺旋结构域(COL1)可能负责这些胶原分子的三聚体组装。利用一种FACIT(胶原XII)的重组小基因,我们发现一个缺失突变,它覆盖了大部分NC1结构域,除了包含一个半胱氨酸且构成COL1和NC1结构域之间保守连接主要部分的前七个残基外,并不阻止截短的α链形成三聚体二硫键连接的组装体。这些结果表明,如果非三螺旋的NC1结构域参与了控制三聚体组装的初始事件,那么它必定是通过其参与连接的氨基酸残基来实现的。我们的数据也证实了先前一篇论文(Mazzorana等人:《生物化学杂志》268:3029 - 3032, 1993)中得到的结果,该结果表明二硫键的形成依赖于羟基化,并暗示三螺旋(或其一部分)的折叠先于二硫键的形成。