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蛋白聚糖的分离与纯化

Isolation and purification of proteoglycans.

作者信息

Fedarko N S

机构信息

Bone Research Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Experientia. 1993 May 15;49(5):369-83. doi: 10.1007/BF01923582.

Abstract

Purification of a protein typically involves development of a quantitative assay to track protein integrity (e.g. enzyme activity) during subsequent isolation steps. The generalized procedure involves choosing the source of the protein, defining extraction conditions, developing bulk purification methods followed by refined, more selective methods. The purification of proteoglycans is often complicated by a) limited source quantities, b) necessity of chaotropic solvents for efficient extraction, c) their large molecular size and d) lack of defined functions to enable purity (i.e. activity, conformation) to be assessed. Because the usual goal of proteoglycan purification is physical characterization (intact molecular weight, core protein and glycosaminoglycan class and size), the problems of a suitable assay and/or native conformation are avoided. The 'assay' for tracking proteoglycan isolation typically utilizes uronic acid content or radiolabel incorporation as a marker. Once extracted from their cellular/extracellular environment, proteoglycans can be isolated by density gradient centrifugation and/or column chromatography techniques. Recent advances in the composition of chromatographic supports have enabled the application of ion-exchange, gel permeation, hydrophobic interaction and affinity chromatography resins using efficient high-pressure liquid chromatography to proteoglycan purification.

摘要

蛋白质的纯化通常需要开发一种定量分析方法,以在后续的分离步骤中追踪蛋白质的完整性(如酶活性)。一般的程序包括选择蛋白质的来源、确定提取条件、开发大规模纯化方法,随后采用更精细、更具选择性的方法。蛋白聚糖的纯化常常因以下因素而变得复杂:a)来源数量有限;b)高效提取需要离液剂;c)它们的分子量大;d)缺乏明确的功能以评估纯度(即活性、构象)。由于蛋白聚糖纯化的通常目标是进行物理表征(完整分子量、核心蛋白以及糖胺聚糖的类别和大小),因此避免了合适的分析方法和/或天然构象的问题。追踪蛋白聚糖分离的“分析方法”通常利用糖醛酸含量或放射性标记掺入作为标记物。一旦从细胞/细胞外环境中提取出来,蛋白聚糖可以通过密度梯度离心和/或柱色谱技术进行分离。色谱支持物组成方面的最新进展使得离子交换、凝胶渗透、疏水相互作用和亲和色谱树脂在高效高压液相色谱中的应用能够用于蛋白聚糖的纯化。

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