Laane C, Boeren S, Vos K, Veeger C
Department of Biochemistry, Agricultural University, De Dreijen 11, 6703 BC, Wageningen, The Netherlands.
Biotechnol Bioeng. 1987 Jul;30(1):81-7. doi: 10.1002/bit.260300112.
General rules for the optimization of different biocatalytic systems in various types of media containing organic solvents are derived by combining data from the literature, and the logarithm of the partition coefficient, log P, as a quantitative measure of solvent polarity. (1) Biocatalysis in organic solvents is low in polar solvents having a log P < 2, is moderate in solvents having a log P between 2 and 4, and is high in a polar solvents having a log P > 4. It was found that this correlation between polarity and activity parallels the ability of organic solvents to distort the essential water layer that stabilizes the biocatalysts. (2) Further optimization of biocatalysis in organic solvents is achieved when the polarity of the microenvironment of the biocatalyst (log P(i)) and the continuous organic phase (log P(cph)) is tuned to the polarities of both the substrate (log P(s)) and the product (log P(p)) according to the following rules: |log P(i) - log P(s)| and |log P(cph) - log P(p)| should be minimal and |log P(cph) - log P(s)| and |log P(i) - log P(p)| should be maximal, with the exception that in the case of substrate inhibition log P(i), should be optimized with respect to log P(s) In addition to these simple optimization rules, the future developments of biocatalysis in organic solvents are discussed.
通过整合文献数据以及作为溶剂极性定量指标的分配系数对数log P,得出了在含有机溶剂的各类介质中优化不同生物催化体系的一般规则。(1)在log P < 2的极性溶剂中,有机溶剂中的生物催化活性较低;在log P介于2和4之间的溶剂中,活性适中;在log P > 4的极性溶剂中,活性较高。研究发现,这种极性与活性之间的相关性与有机溶剂扭曲稳定生物催化剂的必需水层的能力相似。(2)当根据以下规则将生物催化剂微环境的极性(log P(i))和连续有机相的极性(log P(cph))调整为底物(log P(s))和产物(log P(p))的极性时,可实现有机溶剂中生物催化的进一步优化:|log P(i) - log P(s)|和|log P(cph) - log P(p)|应最小,|log P(cph) - log P(s)|和|log P(i) - log P(p)|应最大,但在底物抑制的情况下,log P(i)应相对于log P(s)进行优化。除了这些简单的优化规则外,还讨论了有机溶剂中生物催化的未来发展。