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首页> 外文期刊>ACS medicinal chemistry letters >Synthesis of Aspartame by Thermolysin: An X-ray Structural Study
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Synthesis of Aspartame by Thermolysin: An X-ray Structural Study

机译:嗜热菌素合成阿斯巴甜的X射线结构研究

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摘要

Protease mediated peptide synthesis (PMPS) was ?rst described in the 1930s but remains underexploited today. In most PMPS, the reaction equilibrium is shifted toward synthesis by the aqueous insolubility of product generated. Substrates and proteases are selected by trial and error, yields are modest, and reaction times are slow. Once implemented, however, PMPS reactions can be simple, environmentally benign, and readily scalable to a commercial level. We examined the PMPS of a precursor of the arti?cial sweetener aspartame, a multiton peptide synthesis catalyzed by the enzyme thermolysin. X-ray structures of thermolysin in complex with aspartame substrates separately, and after PMPS in a crystal, rationalize the reaction’s substrate preferences and reveal an unexpected form of substrate inhibition that explains its sluggishness. Structure guided optimization of this and other PMPS reactions could expand the economic viability of commercial peptides beyond current high-potency, low-volume therapeutics, with substantial green chemistry advantages.
机译:蛋白酶介导的肽合成(PMPS)于1930年代首次被描述,但至今仍未得到充分利用。在大多数PMPS中,由于生成产物的水不溶性,反应平衡向合成转移。通过反复试验选择底物和蛋白酶,产率适中,反应时间缓慢。然而,一旦实施,PMPS反应可以是简单的,对环境无害的,并且易于扩展到商业水平。我们研究了人工甜味剂阿斯巴甜(aspartame)的前体的PMPS,阿斯巴甜是一种通过热解酶催化的多吨肽合成。嗜热菌蛋白酶的X射线结构分别与阿斯巴甜底物复合,并在晶体中加入PMPS后,使反应的底物偏好合理化,并显示出意料之外的底物抑制形式,这解释了其缓慢。此和其他PMPS反应的结构指导优化可以扩大商业肽的经济可行性,使其超越目前的高效能,小批量疗法,并具有显着的绿色化学优势。

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