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α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al

Our previous investigation of substrates reduction catalyzed by nitrogenase suggested that α-Ile(423) of MoFe protein possibly functions as an electron transfer gate to Mo site of active center-“FeMoco”. Amino acid residue α-Lys(424) connects directly to α-Ile(423), and they are located in the same...

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Autores principales: Song, Lina, Liu, Pengxi, Jiang, Wei, Guo, Qingjuan, Zhang, Chunxi, Basit, Abdul, Li, Ying, Li, Jilun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6477116/
https://www.ncbi.nlm.nih.gov/pubmed/31057512
http://dx.doi.org/10.3389/fmicb.2019.00802
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author Song, Lina
Liu, Pengxi
Jiang, Wei
Guo, Qingjuan
Zhang, Chunxi
Basit, Abdul
Li, Ying
Li, Jilun
author_facet Song, Lina
Liu, Pengxi
Jiang, Wei
Guo, Qingjuan
Zhang, Chunxi
Basit, Abdul
Li, Ying
Li, Jilun
author_sort Song, Lina
collection PubMed
description Our previous investigation of substrates reduction catalyzed by nitrogenase suggested that α-Ile(423) of MoFe protein possibly functions as an electron transfer gate to Mo site of active center-“FeMoco”. Amino acid residue α-Lys(424) connects directly to α-Ile(423), and they are located in the same α-helix (α423-431). In the present study, function of α-Lys(424) was investigated by replacing it with Arg (alkaline, like Lys), Gln (neutral), Glu (acidic), and Ala (neutral) through site-directed mutagenesis and homologous recombination. The mutants were, respectively, termed 424R, 424Q, 424E, and 424A. Studies of diazotrophic cell growth, cytological, and enzymatic properties indicated that none of the substitutions altered the secondary structure of MoFe protein, or normal expression of nifA, nifL, and nifD. Substitution of alkaline amino acid (i.e., 424R) maintained acetylene (C(2)H(2)) and proton (H(+)) reduction activities at normal levels similar to that of wild-type (WT), because its FeMoco content did not reduce. In contrast, substitution of acidic or neutral amino acid (i.e., 424Q, 424E, 424A) impaired the catalytic activity of nitrogenase to varying degrees. Combination of MoFe protein structural simulation and the results of a series of experiments, the function of α-Lys(424) in ensuring insertion of FeMoco to MoFe protein was further confirmed, and the contribution of α-Lys(424) in maintaining low potential of the microenvironment causing efficient catalytic activity of nitrogenase was demonstrated.
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spelling pubmed-64771162019-05-03 α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al Song, Lina Liu, Pengxi Jiang, Wei Guo, Qingjuan Zhang, Chunxi Basit, Abdul Li, Ying Li, Jilun Front Microbiol Microbiology Our previous investigation of substrates reduction catalyzed by nitrogenase suggested that α-Ile(423) of MoFe protein possibly functions as an electron transfer gate to Mo site of active center-“FeMoco”. Amino acid residue α-Lys(424) connects directly to α-Ile(423), and they are located in the same α-helix (α423-431). In the present study, function of α-Lys(424) was investigated by replacing it with Arg (alkaline, like Lys), Gln (neutral), Glu (acidic), and Ala (neutral) through site-directed mutagenesis and homologous recombination. The mutants were, respectively, termed 424R, 424Q, 424E, and 424A. Studies of diazotrophic cell growth, cytological, and enzymatic properties indicated that none of the substitutions altered the secondary structure of MoFe protein, or normal expression of nifA, nifL, and nifD. Substitution of alkaline amino acid (i.e., 424R) maintained acetylene (C(2)H(2)) and proton (H(+)) reduction activities at normal levels similar to that of wild-type (WT), because its FeMoco content did not reduce. In contrast, substitution of acidic or neutral amino acid (i.e., 424Q, 424E, 424A) impaired the catalytic activity of nitrogenase to varying degrees. Combination of MoFe protein structural simulation and the results of a series of experiments, the function of α-Lys(424) in ensuring insertion of FeMoco to MoFe protein was further confirmed, and the contribution of α-Lys(424) in maintaining low potential of the microenvironment causing efficient catalytic activity of nitrogenase was demonstrated. Frontiers Media S.A. 2019-04-16 /pmc/articles/PMC6477116/ /pubmed/31057512 http://dx.doi.org/10.3389/fmicb.2019.00802 Text en Copyright © 2019 Song, Liu, Jiang, Guo, Zhang, Basit, Li and Li. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Song, Lina
Liu, Pengxi
Jiang, Wei
Guo, Qingjuan
Zhang, Chunxi
Basit, Abdul
Li, Ying
Li, Jilun
α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title_full α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title_fullStr α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title_full_unstemmed α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title_short α-Lys(424) Participates in Insertion of FeMoco to MoFe Protein and Maintains Nitrogenase Activity in Klebsiella oxytoca M5al
title_sort α-lys(424) participates in insertion of femoco to mofe protein and maintains nitrogenase activity in klebsiella oxytoca m5al
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6477116/
https://www.ncbi.nlm.nih.gov/pubmed/31057512
http://dx.doi.org/10.3389/fmicb.2019.00802
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