Literature DB >> 20400222

QM/MM methods: looking inside heme proteins biochemistry.

Victor Guallar1, Frank H Wallrapp.   

Abstract

Mixed quantum mechanics/molecular mechanics methods offer a valuable computational tool for understanding biochemical events. When combined with conformational sampling techniques, they allow for an exhaustive exploration of the enzymatic mechanism. Heme proteins are ubiquitous and essential for every organism. In this review we summarize our efforts towards the understanding of heme biochemistry. We present: 1) results on ligand migration on globins coupled to the ligand binding event, 2) results on the localization of the spin density in compound I of cytochromes and peroxidases, 3) novel methodologies for mapping the electron transfer pathways and 4) novel data on Tryptophan 2,3-dioxygenase. For this enzyme our results strongly indicate that the distal oxygen will end up on the C3 indole carbon, whereas the proximal oxygen will end up in the C2 position. Interestingly, the process involves the formation of an epoxide and a heme ferryl intermediate. The overall energy profile indicates an energy barrier of approximately 18 kcal/mol and an exothermic driving force of almost 80 kcal/mol. 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20400222     DOI: 10.1016/j.bpc.2010.03.010

Source DB:  PubMed          Journal:  Biophys Chem        ISSN: 0301-4622            Impact factor:   2.352


  8 in total

1.  Complete reaction mechanism of indoleamine 2,3-dioxygenase as revealed by QM/MM simulations.

Authors:  Luciana Capece; Ariel Lewis-Ballester; Syun-Ru Yeh; Dario A Estrin; Marcelo A Marti
Journal:  J Phys Chem B       Date:  2012-01-23       Impact factor: 2.991

2.  Novel combinations of experimental and computational analysis tested on the binding of metalloprotoporphyrins to albumin.

Authors:  Jie Hu; Eduardo Hernandez Soraiz; Courtney N Johnson; Borries Demeler; Lorenzo Brancaleon
Journal:  Int J Biol Macromol       Date:  2019-05-10       Impact factor: 6.953

3.  ReaxFF/AMBER-A Framework for Hybrid Reactive/Nonreactive Force Field Molecular Dynamics Simulations.

Authors:  Ali Rahnamoun; Mehmet Cagri Kaymak; Madushanka Manathunga; Andreas W Götz; Adri C T van Duin; Kenneth M Merz; Hasan Metin Aktulga
Journal:  J Chem Theory Comput       Date:  2020-11-03       Impact factor: 6.006

Review 4.  Structure and reaction mechanism in the heme dioxygenases.

Authors:  Igor Efimov; Jaswir Basran; Sarah J Thackray; Sandeep Handa; Christopher G Mowat; Emma Lloyd Raven
Journal:  Biochemistry       Date:  2011-03-18       Impact factor: 3.162

5.  Force field independent metal parameters using a nonbonded dummy model.

Authors:  Fernanda Duarte; Paul Bauer; Alexandre Barrozo; Beat Anton Amrein; Miha Purg; Johan Aqvist; Shina Caroline Lynn Kamerlin
Journal:  J Phys Chem B       Date:  2014-04-15       Impact factor: 2.991

6.  Biophysical characterization of the interaction of human albumin with an anionic porphyrin.

Authors:  Sarah C Rozinek; Robert J Thomas; Lorenzo Brancaleon
Journal:  Biochem Biophys Rep       Date:  2016-07-18

7.  Quantum mechanical modeling: a tool for the understanding of enzyme reactions.

Authors:  Gábor Náray-Szabó; Julianna Oláh; Balázs Krámos
Journal:  Biomolecules       Date:  2013-09-23

8.  Catalytic surface radical in dye-decolorizing peroxidase: a computational, spectroscopic and site-directed mutagenesis study.

Authors:  Dolores Linde; Rebecca Pogni; Marina Cañellas; Fátima Lucas; Victor Guallar; Maria Camilla Baratto; Adalgisa Sinicropi; Verónica Sáez-Jiménez; Cristina Coscolín; Antonio Romero; Francisco Javier Medrano; Francisco J Ruiz-Dueñas; Angel T Martínez
Journal:  Biochem J       Date:  2015-03-01       Impact factor: 3.857

  8 in total

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