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Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations

In microorganisms and plants, aspartate kinase (AK) is the initial committed enzyme of the biosynthesis of the aspartate acid family amino acids and is inhibited by end products. In the paper, we mutated the key allosteric regulatory site A380 around the binding site of the Lys inhibitor in Coryneba...

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Autores principales: Liu, Xiaoting, Han, Caijing, Fang, Li, Fan, Zhanqing, Wang, Yanan, Gao, Xin, Shi, Junhua, Min, Weihong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8690038/
https://www.ncbi.nlm.nih.gov/pubmed/35423034
http://dx.doi.org/10.1039/d0ra09153g
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author Liu, Xiaoting
Han, Caijing
Fang, Li
Fan, Zhanqing
Wang, Yanan
Gao, Xin
Shi, Junhua
Min, Weihong
author_facet Liu, Xiaoting
Han, Caijing
Fang, Li
Fan, Zhanqing
Wang, Yanan
Gao, Xin
Shi, Junhua
Min, Weihong
author_sort Liu, Xiaoting
collection PubMed
description In microorganisms and plants, aspartate kinase (AK) is the initial committed enzyme of the biosynthesis of the aspartate acid family amino acids and is inhibited by end products. In the paper, we mutated the key allosteric regulatory site A380 around the binding site of the Lys inhibitor in Corynebacterium pekinense AK (CpAK). A single-mutant A380C was obtained with 12.35-fold higher enzyme activity through high-throughput screening. On this basis, T379 as another key allosteric regulatory site was further modified, and the double-mutant T379N/A380C with 22.79-fold higher enzyme activity was obtained. Molecular dynamics (MD) simulations were used to investigate the mechanism of allosteric inhibition by Lys. The results indicated that the binding of Lys with CpAK resulted in conformational changes and a larger distance between the phosphorus atom of ATP and the oxygen atom of Asp, which was detrimental for the catalytic reaction. However, the mutation of allosteric sites opens the “switch” of allosteric regulation and can prevent the conformational transformation. Some key residues such as G168, R203, and D193 play an important role in maintaining the substrate binding with CpAK and further enhance the enzyme activity.
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spelling pubmed-86900382022-04-13 Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations Liu, Xiaoting Han, Caijing Fang, Li Fan, Zhanqing Wang, Yanan Gao, Xin Shi, Junhua Min, Weihong RSC Adv Chemistry In microorganisms and plants, aspartate kinase (AK) is the initial committed enzyme of the biosynthesis of the aspartate acid family amino acids and is inhibited by end products. In the paper, we mutated the key allosteric regulatory site A380 around the binding site of the Lys inhibitor in Corynebacterium pekinense AK (CpAK). A single-mutant A380C was obtained with 12.35-fold higher enzyme activity through high-throughput screening. On this basis, T379 as another key allosteric regulatory site was further modified, and the double-mutant T379N/A380C with 22.79-fold higher enzyme activity was obtained. Molecular dynamics (MD) simulations were used to investigate the mechanism of allosteric inhibition by Lys. The results indicated that the binding of Lys with CpAK resulted in conformational changes and a larger distance between the phosphorus atom of ATP and the oxygen atom of Asp, which was detrimental for the catalytic reaction. However, the mutation of allosteric sites opens the “switch” of allosteric regulation and can prevent the conformational transformation. Some key residues such as G168, R203, and D193 play an important role in maintaining the substrate binding with CpAK and further enhance the enzyme activity. The Royal Society of Chemistry 2020-12-22 /pmc/articles/PMC8690038/ /pubmed/35423034 http://dx.doi.org/10.1039/d0ra09153g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Liu, Xiaoting
Han, Caijing
Fang, Li
Fan, Zhanqing
Wang, Yanan
Gao, Xin
Shi, Junhua
Min, Weihong
Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title_full Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title_fullStr Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title_full_unstemmed Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title_short Mechanism of the feedback-inhibition resistance in aspartate kinase of Corynebacterium pekinense: from experiment to MD simulations
title_sort mechanism of the feedback-inhibition resistance in aspartate kinase of corynebacterium pekinense: from experiment to md simulations
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8690038/
https://www.ncbi.nlm.nih.gov/pubmed/35423034
http://dx.doi.org/10.1039/d0ra09153g
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