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Semi-Rational Design of L-Isoleucine Dioxygenase Generated Its Activity for Aromatic Amino Acid Hydroxylation

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논문

Semi-Rational Design of L-Isoleucine Dioxygenase Generated Its Activity for Aromatic Amino Acid Hydroxylation

학술지

Molecules : a journal of synthetic chemistry and natural product chemistry

저자명

An, Jianhong; Guan, Jiaojiao; Nie, Yao

초록

<P>Fe (II)-and 2-ketoglutarate-dependent dioxygenases (Fe (II)/&alpha;-KG DOs) have been applied to catalyze hydroxylation of amino acids. However, the Fe (II)/&alpha;-KG DOs that have been developed and characterized are not sufficient. L-isoleucine dioxygenase (IDO) is an Fe (II)/&alpha;-KG DO that specifically catalyzes the formation of 4-hydroxyisoleucine (4-HIL) from L-isoleucine (L-Ile) and exhibits a substrate specificity toward L-aliphatic amino acids. To expand the substrate spectrum of IDO toward aromatic amino acids, in this study, we analyzed the regularity of the substrate spectrum of IDO using molecular dynamics (MD) simulation and found that the distance between Fe<SUP>2+</SUP>, C2 of &alpha;-KG and amino acid chain&rsquo;s C4 may be critical for regulating the substrate specificity of the enzyme. The mutation sites (Y143, S153 and R227) were also subjected to single point saturation mutations based on polarity pockets and residue free energy contributions. It was found that Y143D, Y143I and S153A mutants exhibited catalytic L-phenylalanine activity, while Y143I, S153A, S153Q and S153Y exhibited catalytic L-homophenylalanine activity. Consequently, this study extended the substrate spectrum of IDO with aromatic amino acids and enhanced its application property.</P>

발행연도

2023

발행기관

MDPI

ISSN

1420-3049

28

9

페이지

pp.3750

주제어

Fe (II)/α-KG-dependent dioxygenases; L-isoleucine dioxygenase; aromatic amino acid

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1 2023-12-11

논문; 2023-04-27

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