» Articles » PMID: 19492856

Directed Evolution of Serum Paraoxonase PON3 by Family Shuffling and Ancestor/consensus Mutagenesis, and Its Biochemical Characterization

Overview
Journal Biochemistry
Specialty Biochemistry
Date 2009 Jun 5
PMID 19492856
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Serum paraoxonases (PONs) are calcium-dependent lactonases with anti-atherogenic and detoxification functions. Here we describe the directed evolution and characterization of recombinant variants of serum paraoxonase PON3 that express in an active and soluble manner in Escherichia coli. These variants were obtained by combining family shuffling and phylogeny-based mutagenesis: the limited diversity of accessible, cloned PON3 genes was complemented by spiking the shuffling reaction with ancestor/consensus mutations, mutations to residues that comprise the consensus or appear in the predicted ancestors of the PON family. We screened the resulting libraries for PON3's lactonase activity while ensuring that the selected variants retained the substrate specificity of wild-type mammalian PON3s. The availability of highly stable, recombinant PON3 that is free of all other serum components enabled us to explore unknown biochemical features of PON3, including its binding to HDL particles, the effect of HDL on PON3's stability and enzymatic activity, and ex vivo tests of its anti-atherogenic properties. Overall, it appears that PON3 possesses properties very similar to those of PON1: the enzyme's lactonase activity is selectively stimulated by binding to apoAI-HDL, with a concomitant increase in its stability. PON3 also exhibits potentially anti-atherogenic functions, although at levels lower than those of PON1.

Citing Articles

Dan Tawfik's Lessons for Protein Engineers about Enzymes Adapting to New Substrates.

Matsumura I, Patrick W Biochemistry. 2022; 62(2):158-162.

PMID: 35820168 PMC: 9851151. DOI: 10.1021/acs.biochem.2c00230.


A PON for All Seasons: Comparing Paraoxonase Enzyme Substrates, Activity and Action including the Role of PON3 in Health and Disease.

Mohammed C, Lamichhane S, Connolly J, Soehnlen S, Khalaf F, Malhotra D Antioxidants (Basel). 2022; 11(3).

PMID: 35326240 PMC: 8945423. DOI: 10.3390/antiox11030590.


Therapeutic enzyme engineering using a generative neural network.

Giessel A, Dousis A, Ravichandran K, Smith K, Sur S, McFadyen I Sci Rep. 2022; 12(1):1536.

PMID: 35087131 PMC: 8795449. DOI: 10.1038/s41598-022-05195-x.


Ancestral sequences of a large promiscuous enzyme family correspond to bridges in sequence space in a network representation.

Buchholz P, van Loo B, Eenink B, Bornberg-Bauer E, Pleiss J J R Soc Interface. 2021; 18(184):20210389.

PMID: 34727710 PMC: 8564622. DOI: 10.1098/rsif.2021.0389.


Continuous directed evolution of proteins with improved soluble expression.

Wang T, Badran A, Huang T, Liu D Nat Chem Biol. 2018; 14(10):972-980.

PMID: 30127387 PMC: 6143403. DOI: 10.1038/s41589-018-0121-5.