Appl Environ Microbiol. 1996 Jul;62(7):2603-9. doi: 10.1128/aem.62.7.2603-2609.1996.
Cunninghamella blakesleeana DSM 1906 was found to be an efficient biocatalyst for the biotransformation of cycloalkylcarboxylic acids into hydroxy and oxo derivatives. When cultivated in submerged culture, the fungus grew in pellets. In comparison with malt extract-glucose-peptone-yeast extract medium (medium E), Czapek-Dox medium was found to reduce pellet size. Cycloalkylcarboxylic acids were protected against microbial degradation by chemical transformation into 2-cycloalkyl-1,3-benzoxazoles. The transformations of protected cyclopentyl-, cyclohexyl-, cycloheptyl-, and cyclooctylcarboxylic acids by C. blakesleeana were investigated. The biotransformations were performed in medium E by using an aerated, stirred-tank bioreactor. The transformation of 2-cyclopentyl-1,3-benzoxazole yielded (1S,3S)-3-(benz-1,3-oxazol-2-yl)cyclopentan-1-ol as the main product. The main by-product was (1R)-3-(benz-1,3-oxazol-2-yl)cyclopentan-1-one, and 2-(benz-1,3-oxazol-2-yl)cyclopentan-1-ol was also obtained in small amounts. During the experiment, the enantiomeric excess of the main product increased up to 64%. 2-Cyclohexyl-1,3-benzoxazole was hydroxylated to 4-(benz-1,3-oxazol-2-yl)cyclohexan-1-ol. 2-Cycloheptyl-1,3-benzoxazole and 2-cyclooctyl-1,3-benzoxazole were transformed into several alcohols and ketones, all in low yields (2 to 19%).
发现 Cunninghamella blakesleeana DSM 1906 是将环烷基羧酸生物转化为羟基和羰基衍生物的有效生物催化剂。在液体深层培养中,真菌呈颗粒状生长。与麦芽提取物-葡萄糖-蛋白胨-酵母提取物培养基(培养基 E)相比,发现 Czapek-Dox 培养基可减小颗粒大小。通过将环烷基羧酸化学转化为 2-环烷基-1,3-苯并恶唑,可防止其被微生物降解。研究了 C. blakesleeana 对保护的环戊基、环己基、环庚基和环辛基羧酸的转化。在使用通气搅拌罐生物反应器的培养基 E 中进行生物转化。2-环戊基-1,3-苯并恶唑的转化生成(1S,3S)-3-(苯并[1,3]恶唑-2-基)环戊烷-1-醇作为主要产物。主要副产物为(1R)-3-(苯并[1,3]恶唑-2-基)环戊烷-1-酮,并且还少量获得了 2-(苯并[1,3]恶唑-2-基)环戊烷-1-醇。在实验过程中,主要产物的对映体过量增加到 64%。2-环己基-1,3-苯并恶唑被羟化为 4-(苯并[1,3]恶唑-2-基)环己烷-1-醇。2-环庚基-1,3-苯并恶唑和 2-环辛基-1,3-苯并恶唑转化为几种醇和酮,产率均较低(2-19%)。