Wilson Lorena, Illanes Andrés, Pessela Benevides C C, Abian Olga, Fernández-Lafuente Roberto, Guisán José M
Departamento de Biocatalisis, Instituto de Catalisis,Campus UAM Cantoblanco, 28049 Madrid, Spain.
Biotechnol Bioeng. 2004 Jun 5;86(5):558-62. doi: 10.1002/bit.20107.
The encapsulation of crosslinked enzyme aggregates (CLEA) of penicillin G acylase into a very rigid polymeric matrix based on polyvinyl alcohol (LentiKats) has been used successfully to improve the inadequate mechanical properties of CLEA. This encapsulation decreased CLEA activity by only around 40%. As compensation, a significant improvement in the stability of the CLEA in the presence of organic solvents was detected. This could be related to the highly hydrophilic environment inside the LentiKats biocatalysts: Partition experiments showed that the concentration of dioxane inside LentiKats was lower than in the reaction medium. In fact, thermal stability was about the same as in the corresponding CLEA. This permitted great improvement in the reaction rate for thermodynamically controlled synthesis of a model antibiotic (using phenylacetic acid and 7-amino-deacetoxycefalosporanic acid). Even more importantly, yields could be improved by using LentiKats-encapsulated CLEA, very likely by a favorable product/substrate partition. Thus, this very simple technique not only provides an efficient technique for solving the mechanical stability problem associated with CLEA, but also greatly improves the behavior of CLEA in organic media.
将青霉素G酰化酶的交联酶聚集体(CLEA)封装到基于聚乙烯醇的非常刚性的聚合物基质(LentiKats)中已成功用于改善CLEA不足的机械性能。这种封装仅使CLEA活性降低约40%。作为补偿,检测到CLEA在有机溶剂存在下的稳定性有显著提高。这可能与LentiKats生物催化剂内部高度亲水的环境有关:分配实验表明,LentiKats内部二恶烷的浓度低于反应介质中的浓度。实际上,热稳定性与相应的CLEA大致相同。这使得在热力学控制合成模型抗生素(使用苯乙酸和7-氨基去乙酰氧基头孢烷酸)时反应速率有了很大提高。更重要的是,使用LentiKats封装的CLEA可以提高产率,很可能是由于有利的产物/底物分配。因此,这种非常简单的技术不仅提供了一种解决与CLEA相关的机械稳定性问题的有效技术,而且还极大地改善了CLEA在有机介质中的性能。