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Inhibition of insulin fibrillation by osmolytes: Mechanistic Insights

机译:渗透液对胰岛素原纤化的抑制作用:机理研究

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摘要

We have studied here using a number of biophysical tools the effects of osmolytes, betaine, citrulline, proline and sorbitol which differ significantly in terms of their physical characteristics such as, charge distribution, polarity, H-bonding abilities etc, on the fibrillation of insulin. Among these, betaine, citrulline, and proline are very effective in decreasing the extent of fibrillation. Proline also causes a substantial delay in the onset of fibrillation in the concentration range (50–250 mM) whereas such an effect is seen for citrulline only at 250 mM, and in case of betaine this effect is not seen at all in the whole concentration range. The enthalpies of interaction at various stages of fibrillation process have suggested that the preferential exclusion of the osmolyte and its polar interaction with the protein are important in inhibition. The results indicate that the osmolytes are most effective when added prior to the elongation stage of fibrillation. These observations have significant biological implications, since insulin fibrillation is known to cause injection amyloidosis and our data may help in designing lead drug molecules and development of potential therapeutic strategies.
机译:我们在这里使用许多生物物理工具研究了渗透液,甜菜碱,瓜氨酸,脯氨酸和山梨糖醇的影响,这些影响在其物理特性(例如电荷分布,极性,氢键结合能力等)方面对胰岛素的原纤化有很大不同。 。其中,甜菜碱,瓜氨酸和脯氨酸在减少原纤维化程度方面非常有效。脯氨酸在浓度范围(50-250μmM)中也会引起纤维性颤动的发作,而瓜氨酸仅在250μmM时才有这种作用,而在甜菜碱的情况下,在整个浓度下都没有这种作用范围。在原纤化过程的各个阶段相互作用的焓表明,渗透压的优先排除及其与蛋白质的极性相互作用对抑制作用很重要。结果表明,在原纤化延长阶段之前添加渗透压剂最有效。这些发现具有重要的生物学意义,因为已知胰岛素原纤化会引起注射性淀粉样变性,并且我们的数据可能有助于设计先导药物分子和开发潜在的治疗策略。

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