Byers P H
Department of Pathology, University of Washington, Seattle 98195.
Am J Med Genet. 1989 Sep;34(1):72-80. doi: 10.1002/ajmg.1320340114.
As a result of investigations completed during the last 15 years, the molecular bases of most form of osteogenesis imperfecta (OI) and of some forms of the Ehlers-Danlos syndrome (EDS) are now known. Most forms of OI result from point mutations in the genes (COL1A1 and COL1A2) that encode the chains of type I procollagen or mutations that affect the expression of these genes. Less frequently, mutations that affect the size of the chain can also result in these phenotypes. The phenotypic presentation appears to be determined by the nature of the mutation, the chain in which it occurs, and, for point mutations, the position of the substitution and the nature of the substituting amino acid in the protein product. Similar mutations in the gene (COL3A1) that encodes the chains of type III procollagen result in the EDS type IV phenotype. Mutations which result in deletion of the cleavage site for the aminoterminal procollagen protease result in the EDS type VII phenotype and other mutations which affect the structure of the triple-helical domain by deletions and alter the conformation of the substrate at the site of proteolytic conversion can produce mixed phenotypes. Alterations in post-translational processing of collagenous proteins can result in the EDS type VI and EDS type IX phenotypes. Linkage analysis and study of type II collagen proteins from individuals with a variety of skeletal dysplasias suggest that similar mutations in these genes also result in clinically apparent phenotypes. Mutations in the majority of the 20 known collagen genes have not yet been identified.
过去15年完成的调查结果显示,现在已知多数类型的成骨不全症(OI)和某些类型的埃勒斯-当洛综合征(EDS)的分子基础。多数类型的OI是由编码I型前胶原链的基因(COL1A1和COL1A2)中的点突变或影响这些基因表达的突变引起的。较少见的情况下,影响链大小的突变也可导致这些表型。表型表现似乎由突变的性质、发生突变的链决定,对于点突变而言,还由取代的位置以及蛋白质产物中取代氨基酸的性质决定。编码III型前胶原链的基因(COL3A1)中的类似突变导致EDS IV型表型。导致氨基末端前胶原蛋白酶切割位点缺失的突变导致EDS VII型表型,其他通过缺失影响三螺旋结构域结构并改变蛋白水解转化位点底物构象的突变可产生混合表型。胶原蛋白质翻译后加工的改变可导致EDS VI型和EDS IX型表型。对患有各种骨骼发育异常个体的II型胶原蛋白进行连锁分析和研究表明,这些基因中的类似突变也会导致临床上明显的表型。已知的20种胶原蛋白基因中,大多数基因的突变尚未被发现。