Willing M C, Cohn D H, Starman B, Holbrook K A, Greenberg C R, Byers P H
Department of Medicine, University of Washington, Seattle 98195.
J Biol Chem. 1988 Jun 15;263(17):8398-404.
We characterized a de novo 4.5 kilobase pair deletion in the paternally derived alpha 2(I) collagen allele (COL1A2) from a patient with perinatal lethal osteogenesis imperfecta. The intron-to-intron deletion removed the seven exons which encode residues 586-765 of the triple helical domain of the chain. Type I procollagen molecules that contain the mutant pro-alpha 2(I) chain have a lower than normal thermal stability, undergo increased post-translational modification amino-terminal to the deletion junction, and are retained within the rough endoplasmic reticulum. The block to secretion appears to result from improper assembly of the triple helix, apparently a consequence of a disruption of charge-charge interactions between the shortened pro-alpha 2(I) chain and normal pro-alpha 1(I) chains. The lethal effect may be due to decreased secretion of normal collagen and secretion of a small amount of abnormal collagen that disrupts matrix formation.
我们对一名围产期致死型成骨不全患者父源α2(I)胶原等位基因(COL1A2)中一个新的4.5千碱基对缺失进行了特征分析。该内含子到内含子的缺失去除了编码该链三螺旋结构域第586 - 765位残基的7个外显子。含有突变型前α2(I)链的I型前胶原分子热稳定性低于正常水平,在缺失连接处氨基端的翻译后修饰增加,并滞留在粗面内质网内。分泌受阻似乎是由于三螺旋组装不当,这显然是缩短的前α2(I)链与正常前α1(I)链之间电荷 - 电荷相互作用破坏的结果。致死效应可能是由于正常胶原蛋白分泌减少以及少量破坏基质形成的异常胶原蛋白分泌所致。