Literature DB >> 22785484

The role of amino acid residues in the active site of L-methionine γ-lyase from Pseudomonas putida.

Mitsuki Fukumoto1, Daizou Kudou, Shouko Murano, Tomoo Shiba, Dan Sato, Takashi Tamura, Shigeharu Harada, Kenji Inagaki.   

Abstract

Cys116, Lys240*, and Asp241* (asterisks indicate residues from the second subunit of the active dimer) at the active site of L-methionine γ-lyase of Pseudomonas putida (MGL_Pp) are highly conserved among heterologous MGLs. In a previous study, we found that substitution of Cys116 for His led to a drastic increase in activity toward L-cysteine and a decrease in that toward L-methionine. In this study, we examined some properties of the C116H mutant by kinetic analysis and 3D structural analysis. We assumed that substitution of Cys116 for His broke the original hydrogen-bond network and that this induced a significant effect of Tyr114 as a general acid catalyst, possibly due to the narrow space in the active site. The C116H mutant acquired a novel β-elimination activity and lead a drastic conformation change in the histidine residue at position 116 by binding the substrate, suggesting that this His residue affects the reaction specificity of C116H. Furthermore, we suggest that Lys240* is important for substrate recognition and structural stability and that Asp241* is also involved in substrate specificity in the elimination reaction. Based on this, we suggest that the hydrogen-bond network among Cys116, Lys240*, and Asp241* contributes to substrate specificity that is, to L-methionine recognition at the active site in MGL_Pp.

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Year:  2012        PMID: 22785484     DOI: 10.1271/bbb.110906

Source DB:  PubMed          Journal:  Biosci Biotechnol Biochem        ISSN: 0916-8451            Impact factor:   2.043


  7 in total

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Journal:  ACS Catal       Date:  2020-01-13       Impact factor: 13.084

2.  Structural and mechanistic insights into homocysteine degradation by a mutant of methionine γ-lyase based on substrate-assisted catalysis.

Authors:  Dan Sato; Tomoo Shiba; Shunsuke Yunoto; Kazuo Furutani; Mitsuki Fukumoto; Daizou Kudou; Takashi Tamura; Kenji Inagaki; Shigeharu Harada
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Authors:  Noorpreet Inder Kaur Dhanjal; Siddharth Sharma; K Sandeep Prabhu; N Tejo Prakash
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4.  The methionase chain reaction: an enzyme-based autocatalytic amplification system for the detection of thiols.

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Journal:  Chem Commun (Camb)       Date:  2020-02-17       Impact factor: 6.222

5.  Enhancing Mn(II)-Binding and Manganese Peroxidase Activity in a Designed Cytochrome c Peroxidase through Fine-Tuning Secondary-Sphere Interactions.

Authors:  Parisa Hosseinzadeh; Evan N Mirts; Thomas D Pfister; Yi-Gui Gao; Christopher Mayne; Howard Robinson; Emad Tajkhorshid; Yi Lu
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Review 6.  Enzymes in Metabolic Anticancer Therapy.

Authors:  Maristella Maggi; Claudia Scotti
Journal:  Adv Exp Med Biol       Date:  2019       Impact factor: 2.622

7.  Genomics Insights into Pseudomonas sp. CG01: An Antarctic Cadmium-Resistant Strain Capable of Biosynthesizing CdS Nanoparticles Using Methionine as S-Source.

Authors:  Carla Gallardo-Benavente; Jessica L Campo-Giraldo; Juan Castro-Severyn; Andrés Quiroz; José M Pérez-Donoso
Journal:  Genes (Basel)       Date:  2021-01-27       Impact factor: 4.096

  7 in total

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