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The Different Roles of Aggrecan Interaction Domains

机译:Aggrecan相互作用域的不同作用

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摘要

The aggregating proteoglycans of the lectican family are important components of extracellular matrices. Aggrecan is the most well studied of these and is central to cartilage biomechanical properties and skeletal development. Key to its biological function is the fixed charge of the many glycosaminoglycan chains, that provide the basis for the viscoelastic properties necessary for load distribution over the articular surface. This review is focused on the globular domains of aggrecan and their role in anchoring the proteoglycans to other extracellular matrix components. The N-terminal G1 domain is vital in that it binds the proteoglycan to hyaluronan in ternary complex with link protein, retaining the proteoglycan in the tissue. The importance of the C-terminal G3 domain interactions has recently been emphasized by two different human hereditary disorders: autosomal recessive aggrecan-type spondyloepimetaphyseal dysplasia and autosomal dominant familial osteochondritis dissecans. In these two conditions, different missense mutations in the aggrecan C-type lectin repeat have been described. The resulting amino acid replacements affect the ligand interactions of the G3 domain, albeit with widely different phenotypic outcomes.
机译:lectican家族聚集的蛋白聚糖是细胞外基质的重要组成部分。 Aggrecan是其中研究最深入的蛋白,对软骨的生物力学特性和骨骼发育至关重要。其生物学功能的关键是许多糖胺聚糖链的固定电荷,这些链为负载分布在关节表面上所需的粘弹性提供了基础。这篇综述集中于聚集蛋白聚糖的球状结构域及其在将蛋白聚糖锚定至其他细胞外基质成分中的作用。 N末端G1结构域至关重要,因为它与连接蛋白三元复合物中的蛋白聚糖结合到透明质酸上,在组织中保留蛋白聚糖。最近,两种不同的人类遗传性疾病强调了C末端G3结构域相互作用的重要性:常染色体隐性聚集蛋白聚糖型脊柱侧met足发育不良和常染色体显性家族性骨软骨炎剥离。在这两种情况下,已经描述了聚集蛋白聚糖C型凝集素重复序列中不同的错义突变。产生的氨基酸置换影响G3结构域的配体相互作用,尽管其表型结果差异很大。

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