Nicholls A C, Oliver J, Renouf D V, Keston M, Pope F M
Dermatology Research Group, Clinical Research Centre, Harrow, Middlesex.
J Med Genet. 1991 Nov;28(11):757-64. doi: 10.1136/jmg.28.11.757.
We have examined the type I collagen in a patient with type III/IV osteogenesis imperfecta. Two forms of alpha 1(I) chain were produced, one normal and the other containing a cysteine residue within the triple helical domain of the molecule. Cysteine is not normally present in this domain of type I collagen. Peptide mapping experiments localised the mutation to peptide alpha 1(I)CB3 which spans residues 403 to 551 of the triple helix. Subsequent PCR amplification of cDNA covering this region followed by sequencing showed a G to T single base change in the GGC codon for glycine 415 generating TGC, the codon for cysteine. The effect of the mutation on the protein is to delay secretion from the cell, reduce the thermal stability of the molecule by 2 degrees C, and cause excessive post-translational modification of all chains in molecules containing one or more mutant alpha 1(I) chains. The clinical phenotype observed in this patient and the position of the mutation conform to the recent prediction of Starman et al that Gly----Cys mutations in the alpha 1(I) chain have a gradient of severity decreasing from the C-terminus to the N-terminus.
我们检查了一名患有III/IV型成骨不全症患者的I型胶原蛋白。产生了两种形式的α1(I)链,一种正常,另一种在分子的三螺旋结构域内含有一个半胱氨酸残基。半胱氨酸通常不存在于I型胶原蛋白的该结构域中。肽图谱实验将突变定位到跨越三螺旋403至551位残基的肽α1(I)CB3上。随后对覆盖该区域的cDNA进行PCR扩增并测序,结果显示甘氨酸415的GGC密码子发生了G到T的单碱基变化,产生了半胱氨酸的密码子TGC。该突变对蛋白质的影响是延迟细胞分泌、使分子的热稳定性降低2摄氏度,并导致含有一条或多条突变α1(I)链的分子中所有链发生过度的翻译后修饰。该患者观察到的临床表型和突变位置符合Starman等人最近的预测,即α1(I)链中的甘氨酸----半胱氨酸突变具有从C端到N端严重程度递减的梯度。