首页> 外文学位 >THE CATALYTIC INFLUENCE OF HEPARIN ON AURAMINE O HYDROLYSIS: A COMPARATIVE STUDY OF THE POLYELECTROLYTE PROPERTIES OF HEPARIN AND OTHER GLYCOSAMINOGLYCANS.
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THE CATALYTIC INFLUENCE OF HEPARIN ON AURAMINE O HYDROLYSIS: A COMPARATIVE STUDY OF THE POLYELECTROLYTE PROPERTIES OF HEPARIN AND OTHER GLYCOSAMINOGLYCANS.

机译:肝素对牛津蛋白水解的催化作用:肝素和其他糖胺聚糖的聚电解质性能的比较研究。

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摘要

A new approach has been developed to investigate the microenvironment of glycosaminoglycans, and in particular, heparin. It is based on the use of the cationic dye Auramine O as an extrinsic probe; but rather than deriving information from changes in spectral or chiroptical properties, the catalytic influence of heparin on the dye's hydrolysis is exploited. In this regard, heparin is unique among the glycosaminoglycans of animal connective tissue, and therefore the reaction can serve as the basis for a specific heparin assay. The variation of reaction rate with polymer, dye and hydronium ion concentration, ionic strength, and various ratios of these parameters are all consistent with an interpretation of the catalysis in terms of the well known catalytic properties of polyelectrolytes. It is concluded that the catalysis is a consequence of counterion condensation, as strictly defined in Manning's limiting laws of polyelectrolyte solutions. Most significantly, the data demonstrate the participation of hydronium ion in this process, and in the differentiation of heparin from other glycosaminoglycans. Though the rate enhancements cannot be dealt with quantitatively by a Bronsted-Bjerrum-Manning type approach, the data can be straightforwardly explained based on the concept of a critical charge density, as described in Manning's limiting laws. The explanation is offered in terms of Manning's linear charge density parameter, (xi), and the all or none aspect of counterion condensation. Based on the relative catalytic activity of different heparin preparations and subfractions, the implications of this work with regard to the unique biochemical properties of heparin are examined.
机译:已经开发出一种新方法来研究糖胺聚糖,特别是肝素的微环境。它基于使用阳离子染料Auramine O作为外部探针的方法。而不是从光谱或手性的变化中获得信息,而是利用肝素对染料水解的催化作用。在这方面,肝素在动物结缔组织的糖胺聚糖中是独特的,因此该反应可以作为特定肝素测定的基础。反应速率随聚合物,染料和水合氢离子浓度,离子强度以及这些参数的各种比率的变化均与根据聚电解质的众所周知的催化性质对催化的解释一致。得出的结论是,催化作用是抗衡离子缩合的结果,正如曼宁的聚电解质溶液极限定律严格定义的那样。最重要的是,数据表明水合氢离子参与了该过程,并参与了肝素与其他糖胺聚糖的区分。尽管不能通过Bronsted-Bjerrum-Manning类型的方法来定量处理速率的提高,但是可以根据临界电荷密度的概念直接解释数据,如Manning的极限定律中所述。根据曼宁的线性电荷密度参数(xi)以及抗衡离子缩合的全部或全部方面来提供解释。基于不同肝素制剂和不同组分的相对催化活性,研究了这项工作对肝素独特生化特性的影响。

著录项

  • 作者

    BAND, PHILIP A.;

  • 作者单位

    City University of New York.;

  • 授予单位 City University of New York.;
  • 学科 Biochemistry.
  • 学位 Ph.D.
  • 年度 1982
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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