Mahmoudian M, Baines B S, Drake C S, Hale R S, Jones P, Piercey J E, Montgomery D S, Purvis I J, Storer R, Dawson M J
Department of Natural Products Discovery, Glaxo Group Research Ltd, Greenford, Middlesex, England.
Enzyme Microb Technol. 1993 Sep;15(9):749-55. doi: 10.1016/0141-0229(93)90005-m.
Although equipotent in terms of antiviral activity, the two enantiomers of 2'-deoxy-3'-thiacytidine (BCH 189) differ markedly in their cytotoxicity. (2'R-cis)-2'-deoxy-3'-thiacytidine (3TC) is substantially less toxic than its optical antipode, and is undergoing development for the therapy of HIV infection. Cytidine deaminase from Escherichia coli is shown here to deaminate 2'-deoxy-3'-thiacytidine enantioselectively to leave 3TC essentially optically pure. This reaction has been used to develop a process for production of 3TC in multikilogram amounts. The production of cytidine deaminase was enhanced by strain improvement, fermentation development, and finally by cloning and overexpression of the gene. The enzyme was immobilized on Eupergit-C, which allowed it to be reused many times. The biotransformation conditions were optimized so that the best use could be made of the catalyst. A robust scaleable product isolation process was developed to yield the crystalline product. Overall, yields through the resolution process of 76% were obtained. All aspects of this process are capable of substantial further scaleup with only minor modifications.
虽然2'-脱氧-3'-硫代胞苷(BCH 189)的两种对映体在抗病毒活性方面相当,但它们的细胞毒性却有显著差异。(2'R-顺式)-2'-脱氧-3'-硫代胞苷(3TC)的毒性远低于其旋光对映体,目前正在开发用于治疗HIV感染。本文显示,来自大肠杆菌的胞苷脱氨酶能对2'-脱氧-3'-硫代胞苷进行对映选择性脱氨,使3TC基本保持光学纯。该反应已被用于开发一种生产多千克量3TC的工艺。通过菌株改良、发酵优化,最终通过基因克隆和过表达,提高了胞苷脱氨酶的产量。该酶固定在Eupergit-C上,可多次重复使用。对生物转化条件进行了优化,以便充分利用催化剂。开发了一种稳健的可扩展产品分离工艺,以获得结晶产品。总体而言,拆分过程的产率为76%。该工艺的所有方面只需进行微小修改就能大幅进一步扩大规模。