Enzyme Promiscuity: Engine of Evolutionary Innovation

被引:111
作者
Pandya, Chetanya [1 ]
Farelli, Jeremiah D. [2 ]
Dunaway-Mariano, Debra [3 ]
Allen, Karen N. [1 ,2 ]
机构
[1] Boston Univ, Bioinformat Grad Program, Boston, MA 02215 USA
[2] Boston Univ, Dept Chem, Boston, MA 02215 USA
[3] Univ New Mexico, Dept Chem & Chem Biol, Albuquerque, NM 87131 USA
基金
美国国家卫生研究院;
关键词
BETA-PHOSPHOGLUCOMUTASE CATALYSIS; ACYLAMINO ACID RACEMASE; ESCHERICHIA-COLI; HOTDOG-FOLD; SUBSTRATE-SPECIFICITY; PHOSPHONOACETALDEHYDE HYDROLASE; DEHALOGENASE SUPERFAMILY; BIOCHEMICAL FUNCTION; ENOLASE SUPERFAMILY; HAD SUPERFAMILY;
D O I
10.1074/jbc.R114.572990
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Catalytic promiscuity and substrate ambiguity are keys to evolvability, which in turn is pivotal to the successful acquisition of novel biological functions. Action on multiple substrates (substrate ambiguity) can be harnessed for performance of functions in the cell that supersede catalysis of a single metabolite. These functions include proofreading, scavenging of nutrients, removal of antimetabolites, balancing of metabolite pools, and establishing system redundancy. In this review, we present examples of enzymes that perform these cellular roles by leveraging substrate ambiguity and then present the structural features that support both specificity and ambiguity. We focus on the phosphatases of the haloalkanoate dehalogenase superfamily and the thioesterases of the hotdog fold superfamily.
引用
收藏
页码:30229 / 30236
页数:8
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