巨芽孢杆菌
棕榈酸
区域选择性
化学
细胞色素P450
基质(水族馆)
定向进化
突变
脂肪酸
唾液酸
生物化学
立体化学
组合化学
酶
生物
基因
细菌
催化作用
突变
遗传学
突变体
生态学
作者
Fredi Brühlmann,Laurent Fourage,Christophe Ullmann,Olivier P. Haefliger,Nicolas Jeckelmann,Cédric Dubois,Denis Wahler
标识
DOI:10.1016/j.jbiotec.2014.05.002
摘要
Directed evolution via iterative cycles of random and targeted mutagenesis was applied to the P450 domain of the subterminal fatty acid hydroxylase CYP102A1 of Bacillus megaterium to shift its regioselectivity towards the terminal position of palmitic acid. A powerful and versatile high throughput assay based on LC-MS allowed the simultaneous detection of primary and secondary oxidation products, which was instrumental for identifying variants with a strong preference for the terminal oxidation of palmitic acid. The best variants identified acquired up to 11 amino acid alterations. Substitutions at F87, I263, and A328, relatively close to the bound substrate based on available crystallographic information contributed significantly to the altered regioselectivity. However, non-obvious residues much more distant from the bound substrate showed surprising strong contributions to the increased selectivity for the terminal position of palmitic acid.
科研通智能强力驱动
Strongly Powered by AbleSci AI