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On the Role of Catabolic Enzymes in Biosynthetic Modelsof Glycogen Molecular Weight Distributions

机译:分解代谢酶在生物合成模型中的作用糖原分子量分布

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摘要

Glycogen and starch are complex branched polymers of glucose that serve as units of glucose storage in animals and plants, respectively. Changes in the structure of these molecules have been linked to changes in their respective functional properties. Enzymatic models of starch synthesis have provided valuable insights into the biosynthetic origins of starch structure and functional properties but have not successfully been applied to glycogen despite the structural similarities between the two polymers. Modifications to biosynthetic models of starch structure were tested for applicability to glycogen. Mathematical evidence is provided showing the necessity (which has hitherto been in doubt) of considering the effects of catabolic (degradative) enzymes in biosynthesis-based approaches that seek to accurately describe the molecular weight distributions of individual chains of glycogen formed in vivo through glycogenesis. This finding also provides future direction for inferring the dependence of enzyme activities on substrate chain length from in vivo data.
机译:糖原和淀粉是复杂的葡萄糖支链聚合物,分别作为动植物中葡萄糖的储存单位。这些分子的结构变化与它们各自功能特性的变化有关。淀粉合成的酶模型为淀粉结构和功能特性的生物合成来源提供了有价值的见解,但是尽管两种聚合物之间的结构相似,但并未成功地应用于糖原。测试了对淀粉结构的生物合成模型的修改对糖原的适用性。提供的数学证据表明(迄今为止一直存在疑问)在基于生物合成的方法中考虑分解代谢(降解)酶的影响的必要性(迄今为止一直存在疑问),这些方法旨在准确描述通过糖原形成在体内形成的糖原的各个链的分子量分布。这一发现也为从体内数据推断酶活性对底物链长度的依赖性提供了未来的方向。

著录项

  • 期刊名称 ACS Omega
  • 作者单位
  • 年(卷),期 2017(2),8
  • 年度 2017
  • 页码 5221–5227
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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