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α1(I)型成骨不全/埃勒斯-当洛综合征的分子机制:I型胶原三螺旋N端N-锚定结构域的展开

Molecular mechanism of alpha 1(I)-osteogenesis imperfecta/Ehlers-Danlos syndrome: unfolding of an N-anchor domain at the N-terminal end of the type I collagen triple helix.

作者信息

Makareeva Elena, Cabral Wayne A, Marini Joan C, Leikin Sergey

机构信息

Section on Physical Biochemistry, NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2006 Mar 10;281(10):6463-70. doi: 10.1074/jbc.M511830200. Epub 2006 Jan 5.

DOI:10.1074/jbc.M511830200
PMID:16407265
Abstract

We demonstrate that 85 N-terminal amino acids of the alpha1(I) chain participate in a highly stable folding domain, acting as the stabilizing anchor for the amino end of the type I collagen triple helix. This anchor region is bordered by a microunfolding region, 15 amino acids in each chain, which include no proline or hydroxyproline residues and contain a chymotrypsin cleavage site. Glycine substitutions and amino acid deletions within the N-anchor domain induce its reversible unfolding above 34 degrees C. The overall triple helix denaturation temperature is reduced by 5-6 degrees C, similar to complete N-anchor removal. N-propeptide partially restores the stability of mutant procollagen but not sufficiently to prevent N-anchor unfolding and a conformational change at the N-propeptide cleavage site. The ensuing failure of N-proteinase to cleave at the misfolded site leads to incorporation of pN-collagen into fibrils. Similar, but weaker, effects are caused by G88E substitution in the adjacent triplet, which appears to alter N-anchor structure as well. As in Ehlers-Danlos syndrome (EDS) VIIA/B, fibrils containing pN-collagen are thinner and weaker causing EDS-like laxity of large and small joints and paraspinal ligaments. However, distinct structural consequences of N-anchor destabilization result in a distinct alpha1(I)-osteogenesis imperfecta (OI)/EDS phenotype.

摘要

我们证明,α1(I)链的85个N端氨基酸参与一个高度稳定的折叠结构域,作为I型胶原三螺旋氨基端的稳定锚定结构。这个锚定区域由一个微展开区域界定,每条链中有15个氨基酸,其中不包含脯氨酸或羟脯氨酸残基,并且含有一个胰凝乳蛋白酶切割位点。N端锚定结构域内的甘氨酸取代和氨基酸缺失会导致其在34℃以上可逆展开。三螺旋的整体变性温度降低5-6℃,类似于完全去除N端锚定结构。N前肽部分恢复了突变原胶原的稳定性,但不足以防止N端锚定结构展开以及N前肽切割位点处的构象变化。随后N蛋白酶无法在错误折叠的位点切割导致pN-胶原掺入原纤维。相邻三联体中的G88E取代也会产生类似但较弱的影响,这似乎也改变了N端锚定结构。与埃勒斯-当洛综合征(EDS)VIIA/B一样,含有pN-胶原的原纤维更细且更脆弱,导致大小关节和脊柱旁韧带出现类似EDS的松弛。然而,N端锚定结构不稳定的不同结构后果导致了一种独特的α1(I)型成骨不全(OI)/EDS表型。

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