Lehmann H W, Bodo M, Frohn C, Nerlich A, Rimek D, Notbohm H, Müller P K
Institut für Medizinische Molekularbiologie, Lübeck, Federal Republic of Germany.
Biochem J. 1992 Mar 1;282 ( Pt 2)(Pt 2):313-8. doi: 10.1042/bj2820313.
Tissue from two patients with osteogenesis imperfecta suffering from a hyperplastic callus was studied. Although collagen type I from the compact bone and the skin and fibroblast cultures of these patients showed normal lysyl hydroxylation, collagen types I, II, III and V from the callus tissue were markedly overhydroxylated. Furthermore, the overhydroxylation of lysine residues covered almost equally the entire alpha 1 (I) collagen chain, as demonstrated by the analysis of individual CNBr-derived peptides. In addition, collagen type I was isolated from femoral compact bone of 33 individuals who died between the 16th week of gestational age and 22 years. Lysyl hydroxylation rapidly decreased in both collagen alpha 1 (I) and alpha 2 (I) chains during fetal development, and only little in the postnatal period. The transient increase in lysyl hydroxylation and the involvement of various collagen types in callus tissue argue for a regulatory mechanism that may operate in bone repair and during fetal development.
对两名患有骨质增生性骨痂的成骨不全患者的组织进行了研究。尽管这些患者致密骨、皮肤及成纤维细胞培养物中的I型胶原蛋白显示赖氨酰羟化正常,但骨痂组织中的I、II、III和V型胶原蛋白存在明显过度羟化。此外,通过对单个溴化氰衍生肽段的分析表明,赖氨酸残基的过度羟化几乎均匀地覆盖了整个α1(I)胶原链。另外,从33名在孕16周龄至22岁之间死亡的个体的股骨致密骨中分离出I型胶原蛋白。在胎儿发育过程中,I型胶原蛋白α1链和α2链中的赖氨酰羟化均迅速下降,而在出生后仅略有下降。骨痂组织中赖氨酰羟化的短暂增加以及多种胶原蛋白的参与表明,可能存在一种在骨修复和胎儿发育过程中起作用的调节机制。