Tenni R, Cetta G, Dyne K, Rossi A, Quacci D, Lenzi L, Castellani A A
Dipartimento di Biochimica, University of Pavia, Italy.
Hum Genet. 1988 Jul;79(3):245-50. doi: 10.1007/BF00366245.
We have screened type I procollagen synthesized in vitro by skin fibroblasts from several patients with the severe non-lethal form of osteogenesis imperfecta. Cells from one patient synthesized and secreted both normal and a larger amount of abnormal type I procollagen. The abnormal alpha chains are larger in size due to post-translational overmodifications involving the whole triple helical domain. Abnormal collagen heterotrimers had a melting temperature 2.5 degrees-3 degrees C lower than normal ones or from controls. Chemical analysis of collagen in the medium showed a greater degree of both lysyl hydroxylation and hydroxylysyl glycosylation, the major increase in molecular mass of overmodified alpha chains being due to the higher hydroxylysine-bound hexose content. The proband's cells modify proteoglycan metabolism and mineral crystals form in the dermis, possibly a response to abnormal collagen-proteoglycan interactions. These findings can be explained by a small defect in the product of one allele for pro-alpha 1(I) chains: three-quarters of the synthesized type I procollagen molecules are composed of trimers containing one or two chains defective near the C-terminus of the triple helix or in the C-propeptide. The data obtained for this patient confirmed that the severity of clinical manifestations in osteogenesis imperfecta strongly depends on the location and nature of the mutations, and that the phenotype could be a consequence of a collagen defect(s) and its influence on collagen-collagen interactions and collagen interactions with other connective tissue components.
我们筛选了来自几名患有严重非致死型成骨不全症患者的皮肤成纤维细胞在体外合成的I型前胶原。一名患者的细胞合成并分泌了正常量以及大量异常的I型前胶原。异常的α链尺寸更大,这是由于涉及整个三螺旋结构域的翻译后过度修饰所致。异常的胶原三聚体的解链温度比正常的或对照的低2.5摄氏度至3摄氏度。对培养基中胶原的化学分析表明,赖氨酰羟化和羟赖氨酰糖基化程度更高,过度修饰的α链分子量的主要增加是由于与羟赖氨酸结合的己糖含量更高。先证者的细胞改变了蛋白聚糖代谢,真皮中形成了矿物晶体,这可能是对异常胶原-蛋白聚糖相互作用的一种反应。这些发现可以用一个等位基因的前α1(I)链产物中的一个小缺陷来解释:四分之三合成的I型前胶原分子由含有一条或两条在三螺旋C末端附近或C前肽中有缺陷的链的三聚体组成。从该患者获得的数据证实,成骨不全症临床表现的严重程度强烈取决于突变的位置和性质,并且该表型可能是胶原缺陷及其对胶原-胶原相互作用以及胶原与其他结缔组织成分相互作用的影响的结果。