首页> 外文期刊>The Biochemical Journal >Age-related changes in the composition, the molecular stoichiometry and the stability of proteoglycan aggregates extracted from human articular cartilage.
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Age-related changes in the composition, the molecular stoichiometry and the stability of proteoglycan aggregates extracted from human articular cartilage.

机译:从人类关节软骨中提取的蛋白聚糖聚集体的组成,分子化学计量和稳定性与年龄有关。

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The heterogeneity of the components of proteoglycan aggregates, their stoichiometry within the aggregate and the aggregates' stability was investigated in normal human articular cartilage specimens (age-range newborn to 63 years). Proteoglycans were extracted from tissue by sequentially extracting them with PBS alone, PBS containing oligosaccharides of hyaluronan, and PBS containing solutions of increasing guanidinium chloride concentration (1 M, 2 M, 3 M and 4 M). A high proportion of each of the components of the proteoglycan aggregate, i.e. uronic acid, sulphated glycosaminoglycan, hyaluronan binding domain of aggrecan (G1-domain), link protein (LP) and hyaluronan, was extracted from immature cartilage by PBS alone and PBS containing oligosaccharides of hyaluronan. This was in marked contrast to adult cartilage, which required high concentrations of guanidinium chloride for the efficient extraction of these components. The molar ratios of total G1-domain:LP and the G1-domain associated with aggrecan:LP also differed markedly between immature and mature cartilage and between each of the sequential extracts. The concentration of LP was less than that of the G1-domain in all extracts of cartilage from individuals over 13 years, but this was particularly noticeable in the 1 M guanidinium chloride extracts, and it was surmised that a deficiency in LP produces unstable aggregates in situ. The fragmentation of LP, which is known to occur with advancing age, did not influence the extractability of LP, and fragments were present in each of the sequential extracts. Therefore the generally accepted model of proteoglycan aggregation presented in the literature, which is mostly derived from analysis of immature animal cartilage, cannot be used to describe the structure and organization of aggregates in adult human articular cartilage, where a heterogeneous population of complexes exist that have varying degrees of stability.
机译:在正常人关节软骨样本(新生儿至63岁)中研究了蛋白聚糖聚集体各组分的异质性,聚集体中的化学计量以及聚集体的稳定性。通过依次用单独的PBS,含有透明质酸低聚糖的PBS和含有氯化胍盐浓度(1 M,2 M,3 M和4 M)增加的PBS依次提取蛋白来从组织中提取蛋白聚糖。单独通过PBS和含PBS的蛋白从未成熟的软骨中提取蛋白聚糖聚集体中各成分的高比例,即糖醛酸,硫酸化糖胺聚糖,聚集蛋白聚糖的透明质酸结合结构域(G1域),连接蛋白(LP)和透明质酸。透明质酸的低聚糖。这与成人软骨形成鲜明对比,成人软骨需要高浓度的氯化胍才能有效提取这些成分。在未成熟软骨与成熟软骨之间以及每个顺序提取物中,总的G1结构域:LP和与聚集蛋白聚糖:LP相关的G1结构域的摩尔比也明显不同。在超过13年的时间里,所有软骨提取物中LP的浓度均低于G1结构域的浓度,但这在1 M氯化胍提取物中尤为明显,据推测LP的缺乏会在软骨中产生不稳定的聚集体。原地。已知随着年龄的增长,LP的片段化不会影响LP的可提取性,并且每个连续提取物中均存在片段。因此,文献中提出的普遍接受的蛋白聚糖聚集模型(主要来自未成熟动物软骨的分析)不能用于描述成年人类关节软骨中聚集体的结构和组织,在这种情况下,存在复杂的复合物群体不同程度的稳定性。

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