Hawkins J R, Superti-Furga A, Steinmann B, Dalgleish R
Department of Genetics, University of Leicester, United Kingdom.
J Biol Chem. 1991 Nov 25;266(33):22370-4.
A proband with lethal osteogenesis imperfecta has been investigated for the causative defect at the levels of collagen protein, mRNA, and DNA. Analysis of type I collagen synthesized by the proband's fibroblasts showed excessive post-translational modification of alpha 1(I) chains along the entire length of the helix. Oververmodification of alpha chains could be prevented by incubation of the cells at 30 rather than 37 degrees C, and the thermal stability of the triple helix, as determined by protease digestion, was normal. RNase A cleavage of RNA:RNA hybrids formed between the proband's mRNA and antisense RNA derived from normal pro-alpha 1(I) chain cDNA clones was used to locate an abnormality to exon 43 of the proband's pro-alpha 1(I) collagen gene (COL1A1). The nucleotide sequence of the corresponding gene region showed, in one allele, the deletion of 9 base pairs, not present in either parent, within a repeating sequence of exon 43. The mutation causes the loss of one of three consecutive Gly-Ala-Pro triplets at positions 868-876, but does not otherwise disrupt the Gly-X-Y sequence. Procollagen processing in fibroblast cultures and susceptibility of the mutant collagen I to cleavage with vertebrate collagenase were normal, indicating that the slippage of collagen chains by one Gly-X-Y triplet does not abolish amino-propeptidase and collagenase cleavage sites. How the mutation produces the lethal osteogenesis imperfecta phenotype is not entirely clear; the data suggest that the interaction of alpha chains immediately prior to helix formation may be affected.
对一名患有致死性成骨不全症的先证者进行了胶原蛋白、信使核糖核酸(mRNA)和脱氧核糖核酸(DNA)水平的致病缺陷研究。对先证者成纤维细胞合成的I型胶原蛋白分析显示,α1(I)链在螺旋全长上存在过度的翻译后修饰。通过将细胞在30℃而非37℃孵育,可以防止α链的过度修饰,并且通过蛋白酶消化测定的三螺旋热稳定性正常。利用核糖核酸酶A切割先证者mRNA与源自正常前α1(I)链cDNA克隆的反义RNA形成的RNA:RNA杂交体,将异常定位到先证者前α1(I)胶原蛋白基因(COL1A1)的第43外显子。相应基因区域的核苷酸序列显示,在一个等位基因中,第43外显子的重复序列内缺失了9个碱基对,其父母双方均不存在该缺失。该突变导致868 - 876位的三个连续甘氨酸-丙氨酸-脯氨酸三联体中的一个缺失,但未以其他方式破坏甘氨酸-X-酪氨酸序列。成纤维细胞培养中的前胶原加工以及突变型I型胶原蛋白对脊椎动物胶原酶切割的敏感性正常,表明胶原蛋白链一个甘氨酸-X-酪氨酸三联体的滑移并未消除氨基肽酶和胶原酶切割位点。该突变如何产生致死性成骨不全症表型尚不完全清楚;数据表明,螺旋形成前α链之间的相互作用可能受到影响。