Chessler S D, Wallis G A, Byers P H
Department of Pathology, University of Washington, Seattle 98195.
J Biol Chem. 1993 Aug 25;268(24):18218-25.
Fibroblast cell strains from three infants with perinatal lethal osteogenesis imperfecta (OI) carry unique mutations in COL1A1 (the gene encoding the pro alpha 1(I) chain of type I procollagen) that impair chain association. The three mutations are: substitution of arginine for leucine at position 170 in the carboxyl-terminal propeptide, substitution of histidine for aspartic acid at position 59 of the propeptide, and a 6-base pair deletion that results in loss of 2 amino acid residues, glutamic acid and tyrosine, at positions 119 and 120 of the propeptide. In each cell strain the rate of association of the abnormal chain into molecules is slowed and formation of interchain disulfide bonds is impaired. The substitution at residue 59 alters the most highly conserved region of the propeptide and has a much greater effect on the incorporation of pro alpha 2(I) chains into disulfide-bonded trimers than the other two mutations. The molecules that contain the abnormal chains are extensively overmodified by post-translational modifying enzymes, yet have a normal thermal stability. These findings extend the range of lethal mutations in the type I collagen genes and help to identify regions of the carboxyl-terminal propeptide that may be important for chain-chain recognition and molecular assembly.
来自三名围产期致死性成骨不全症(OI)婴儿的成纤维细胞系在编码I型前胶原α1(I)链的基因COL1A1中携带独特突变,这些突变会损害链的缔合。这三个突变分别是:羧基末端前肽第170位的亮氨酸被精氨酸取代;前肽第59位的天冬氨酸被组氨酸取代;以及一个6碱基对缺失,导致前肽第119和120位的谷氨酸和酪氨酸这两个氨基酸残基缺失。在每个细胞系中,异常链缔合形成分子的速率减慢,链间二硫键的形成受损。第59位残基的取代改变了前肽中最保守的区域,与其他两个突变相比,对α2(I)链掺入二硫键连接的三聚体的影响要大得多。含有异常链的分子被翻译后修饰酶过度修饰,但具有正常的热稳定性。这些发现扩展了I型胶原基因致死性突变的范围,并有助于确定羧基末端前肽中可能对链-链识别和分子组装很重要的区域。