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胰岛素作用机制。胰岛素作用的效果。胰岛素对细胞内血红蛋白变构特性的影响。

The mechanism of insulin action. The effect of insulin action. The effect of insulin on the allosteric properties on intracellular haemoglobin.

作者信息

Dormandy T L

出版信息

J Physiol. 1966 Mar;183(2):378-406. doi: 10.1113/jphysiol.1966.sp007872.

Abstract
  1. The results in three experimental series have suggested that a number of modifying factors must be taken into account in considering the allosteric behaviour of structurally bound intracellular, as distinct from free, haemoglobin. It seems that intracellular haemoglobin maintains its maximal internal stability during oxygen uptake and release by configurational changes which involve not only its acid-base-binding groups but also partial electron-transfer complexes with the stromal macro-molecular framework. Conversely, the affinity of intracellular haemoglobin for oxygen reflects the positive or negative electron pressures prevailing at the haemoglobin-stromal complexing sites.2. Active glucolysis in intact cells entails continuous poising of metabolic redox potential changes by the stromal material (in the same way as it entails continuous buffering of acid metabolic products). The consequent shifts in stromal redox potential and capacity are transmitted to haemoglobin and are reflected in a changing affinity for oxygen.3. The behaviour of the intracellular haemoglobin-stromal complex is further modified by extracellular electron donors and acceptors and by the capacity of the cell/extracellular interface to act as an electrochemical barrier between them. It is probably the last variable which is directly influenced by insulin.4. Two parameters have been introduced as empirical measures of the distinctive allosteric properties of cell-bound haemoglobin: (i) D-pH to represent the apparent cell/extracellular pH gradient; and (ii) D-O(2) to represent the volume of oxygen evolved when cells are lysed at a constant P(O2). Under a variety of experimental conditions insulin affected both these parameters.5. The insulin effects were consistent with a concept which rests on three main contentions. (i) Insulin has an immediate physical action on the cell/extracellular interface, altering the redox potential gradient (electron conductance) across the plasma membrane. (ii) Conversely, the formation of an insulin-membrane complex depends, among other factors, on the prevailing trans-membrane redox potential difference. (iii) The consequences of insulin-membrane interaction are both immediate and sustained, and, under appropriate conditions, they are reflected in the affinity of intracellular haemoglobin for oxygen.6. At a more general level it has been shown that in many respects haemoglobin behaves as a built-in intracellular redox indicator dye. Like most synthetic redox indicators, it is pH dependent.
摘要
  1. 三个实验系列的结果表明,在考虑与游离血红蛋白不同的、与结构结合的细胞内血红蛋白的变构行为时,必须考虑许多调节因素。似乎细胞内血红蛋白在氧气摄取和释放过程中通过构型变化维持其最大的内部稳定性,这种构型变化不仅涉及其酸碱结合基团,还涉及与基质大分子框架的部分电子转移复合物。相反,细胞内血红蛋白对氧气的亲和力反映了在血红蛋白 - 基质复合位点处存在的正或负电子压力。

  2. 完整细胞中的活跃糖酵解需要基质物质持续平衡代谢氧化还原电位的变化(就像它需要持续缓冲酸性代谢产物一样)。随之而来的基质氧化还原电位和容量的变化会传递给血红蛋白,并反映在对氧气的亲和力变化上。

  3. 细胞内血红蛋白 - 基质复合物的行为会进一步受到细胞外电子供体和受体以及细胞/细胞外界面作为它们之间电化学屏障的能力的影响。可能是最后一个变量直接受到胰岛素的影响。

  4. 已经引入了两个参数作为细胞结合血红蛋白独特变构特性的经验测量指标:(i)D-pH 代表表观细胞/细胞外 pH 梯度;(ii)D-O₂ 代表在恒定 P(O₂)下细胞裂解时释放的氧气量。在各种实验条件下,胰岛素会影响这两个参数。

  5. 胰岛素的作用与一个基于三个主要论点的概念一致。(i)胰岛素对细胞/细胞外界面有直接的物理作用,改变跨质膜的氧化还原电位梯度(电子传导)。(ii)相反,胰岛素 - 膜复合物的形成除其他因素外,还取决于当时的跨膜氧化还原电位差。(iii)胰岛素 - 膜相互作用的后果既是即时的也是持续的,并且在适当条件下,它们反映在细胞内血红蛋白对氧气的亲和力上。

  6. 在更一般的层面上,已经表明在许多方面血红蛋白表现为一种内置的细胞内氧化还原指示染料。与大多数合成氧化还原指示剂一样,它依赖于 pH。

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Allosteric proteins and cellular control systems.别构蛋白与细胞控制系统。
J Mol Biol. 1963 Apr;6:306-29. doi: 10.1016/s0022-2836(63)80091-1.
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On haemolysis by anionic detergents.关于阴离子洗涤剂引起的溶血作用。
Proc R Soc Lond B Biol Sci. 1956 Mar 26;146(923):225-41. doi: 10.1098/rspb.1957.0007.
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Sulfhydryl groups and the structure of hemoglobin.巯基与血红蛋白的结构
J Gen Physiol. 1956 Mar 20;39(4):585-605. doi: 10.1085/jgp.39.4.585.

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