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I 型胶原肽基 3-羟脯氨酸结合特性提示其在原纤维超分子组装中的功能。

Peptidyl 3-hydroxyproline binding properties of type I collagen suggest a function in fibril supramolecular assembly.

机构信息

Department of Orthopaedics and Sports Medicine, University of Washington, Seattle, Washington 98195-6500, United States.

出版信息

Biochemistry. 2012 Mar 27;51(12):2417-24. doi: 10.1021/bi2019139. Epub 2012 Mar 15.

Abstract

Proline residues in collagens are extensively hydroxylated post-translationally. A rare form of this modification, (3S,2S)-l-hydroxyproline (3Hyp), remains without a clear function. Disruption of the enzyme complex responsible for prolyl 3-hydroxylation results in severe forms of recessive osteogenesis imperfecta (OI). These OI types exhibit a loss of or reduction in the level of 3-hydroxylation at two proline residues, α1(I) Pro986 and α2(I) Pro707. Whether the resulting brittle bone phenotype is caused by the lack of the 3-hydroxyl addition or by another function of the enzyme complex is unknown. We have speculated that the most efficient mechanism for explaining the chemistry of collagen intermolecular cross-linking is for pairs of collagen molecules in register to be the subunit that assembles into fibrils. In this concept, the exposed hydroxyls from 3Hyp are positioned within mutually interactive binding motifs on adjacent collagen molecules that contribute through hydrogen bonding to the process of fibril supramolecular assembly. Here we report observations on the physical binding properties of 3Hyp in collagen chains from experiments designed to explore the potential for interaction using synthetic collagen-like peptides containing 3Hyp. Evidence of self-association was observed between a synthetic peptide containing 3Hyp and the CB6 domain of the α1(I) chain, which contains the single fully 3-hydroxylated proline. Using collagen from a case of severe recessive OI with a CRTAP defect, in which Pro986 was minimally 3-hydroxylated, such binding was not observed. Further study of the role of 3Hyp in supramolecular assembly is warranted for understanding the evolution of tissue-specific variations in collagen fibril organization.

摘要

胶原蛋白中的脯氨酸残基在翻译后广泛发生羟化。这种修饰的一种罕见形式,(3S,2S)-l-羟脯氨酸(3Hyp),仍然没有明确的功能。负责脯氨酰 3-羟化的酶复合物的破坏导致严重的隐性成骨不全症(OI)。这些 OI 类型表现出α1(I)Pro986 和α2(I)Pro707 两个脯氨酸残基的 3-羟化水平丧失或降低。导致易碎骨表型的原因是缺乏 3-羟化添加还是酶复合物的另一种功能尚不清楚。我们推测,解释胶原蛋白分子间交联化学的最有效机制是将处于注册状态的胶原分子对作为组装成原纤维的亚基。在这个概念中,3Hyp 的暴露羟基位于相邻胶原分子上相互作用的结合基序内,通过氢键为原纤维超分子组装过程做出贡献。在这里,我们报告了使用含有 3Hyp 的合成胶原样肽设计的实验中对胶原链中 3Hyp 物理结合特性的观察结果,以探索潜在的相互作用。在含有 3Hyp 的合成肽和包含单个完全 3-羟化脯氨酸的α1(I)链的 CB6 结构域之间观察到了自缔合的证据。使用来自 CRTAP 缺陷的严重隐性 OI 病例中的胶原,其中 Pro986 的 3-羟化程度最小,没有观察到这种结合。进一步研究 3Hyp 在超分子组装中的作用对于理解胶原蛋白原纤维组织特异性变异的演变是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b23/3314591/c447eb62d72b/nihms364423f1.jpg

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