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Development of a Practical, Biocatalytic Synthesis of tert-Butyl (R)-3-Hydroxyl-5-hexenoate: A Key Intermediate to the Statin Side Chain

机译:叔丁基(R)-3-羟丙基-5-己酸酯的实际,生物催化合成的实际,生物催化合成:汀类蛋白侧链的关键中间体

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摘要

The HMG-CoA reductase inhibitors, statins, are one of the most effective and bestselling cholesterol-lowering drugs. The use of statins has greatly extended people's lives and improved the quality of their life. Development of a more efficient, stereoselective, and sustainable synthesis of statins is continuingly of utmost importance. In the present study, through screening of ketoreductases (KREDs) and reaction optimization, we have successfully performed a highly stereoselective reduction of ketoester 1a catalyzed by KRED-06 at a pilot-plant scale without the addition of exogenous NADP(+), generating 3.21 kg of enantiomerically pure tert-butyl (R)-3-hydroxyl-S-hexenoate ((R)-2a) (96.2% yield, >99.9% enantiomeric excess (ee)). This newly developed biocatalytic process alleviates the cryogenic conditions (-40 degrees C) employed in our first-generation synthesis of (R)-2a using NaBH4 and (L)-tartaric acid. Coupled with our previously established synthesis of bromocarbonate 3a via a one-pot diastereoselective carboxylation/bromocyclization of (R)-2a, we have developed an innovative, practical synthesis route to statin side chain, possessing great potential to be implemented into industrial production of statins.
机译:HMG-COA还原酶抑制剂,他汀类药物是最有效和最畅销的胆固醇药物之一。他汀类药物的使用大大延长了人们的生命,并提高了他们的生活质量。制定更有效,立体选择性和可持续合成的他汀类药物是持续最重要的。在本研究中,通过筛选酮还原酶(KREDS)和反应优化,我们已经成功地对KED-06催化的高度立体选择性减少在试验植物秤上,而不会加入外源NADP(+),产生3.21 kg对映体纯叔丁基(R)-3-羟基-s-己酸酯((r)-2a)(96.2%收率,> 99.9%的对映体过量(EE))。这种新开发的生物催化过程可减轻我们使用NaBH4和(L) - 羧酸的第一代合成(R)-2a的第一代合成中使用的低温条件(-40℃)。通过先前建立的溴碳酸盐3A合成通过单盆的非致死羧酸羧化/(R)-2a的溴核化,我们已经开发出一种创新的实际合成途径到他汀类药物侧链,具有巨大的潜力,可以实施在他汀类工业生产中。

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