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Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom

Introduction: Snakebite envenomation is considered a neglected tropical disease, and SVTLEs critical elements are involved in serious coagulopathies that occur on envenoming. Although some enzymes of this group have been structurally investigated, it is essential to characterize other proteins to be...

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Autores principales: De-Simone, Salvatore Giovanni, Lechuga, Guilherme Curty, Napoleão-Pêgo, Paloma, Gomes, Larissa Rodrigues, Provance, David William, Nirello, Vinícius Dias, Sodero, Ana Carolina Rennó, Guedes, Herbert Leonel de Mattos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8271572/
https://www.ncbi.nlm.nih.gov/pubmed/34203140
http://dx.doi.org/10.3390/molecules26133930
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author De-Simone, Salvatore Giovanni
Lechuga, Guilherme Curty
Napoleão-Pêgo, Paloma
Gomes, Larissa Rodrigues
Provance, David William
Nirello, Vinícius Dias
Sodero, Ana Carolina Rennó
Guedes, Herbert Leonel de Mattos
author_facet De-Simone, Salvatore Giovanni
Lechuga, Guilherme Curty
Napoleão-Pêgo, Paloma
Gomes, Larissa Rodrigues
Provance, David William
Nirello, Vinícius Dias
Sodero, Ana Carolina Rennó
Guedes, Herbert Leonel de Mattos
author_sort De-Simone, Salvatore Giovanni
collection PubMed
description Introduction: Snakebite envenomation is considered a neglected tropical disease, and SVTLEs critical elements are involved in serious coagulopathies that occur on envenoming. Although some enzymes of this group have been structurally investigated, it is essential to characterize other proteins to better understand their unique properties such as the Lachesis muta rhombeata 47 kDa (Lmr-47) venom serine protease. Methods: The structure of Lmr-47 was studied in solution, using SAXS, DLS, CD, and in silico by homology modeling. Molecular docking experiments simulated 21 competitive inhibitors. Results: At pH 8.0, Lmr-47 has an Rg of 34.5 ± 0.6 Å, Dmax of 130 Å, and SR of 50 Å, according to DLS data. Kratky plot analysis indicates a rigid shape at pH 8.0. Conversely, the pH variation does not change the center of mass’s intrinsic fluorescence, possibly indicating the absence of fluorescent amino acids in the regions affected by pH variation. CD experiments show a substantially random coiled secondary structure not affected by pH. The low-resolution model of Lmr-47 presented a prolate elongated shape at pH 8.0. Using the 3D structure obtained by molecular modeling, docking experiments identified five good and three suitable competitive inhibitors. Conclusion: Together, our work provided insights into the structure of the Lmr-47 and identified inhibitors that may enhance our understanding of thrombin-like family proteins.
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spelling pubmed-82715722021-07-11 Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom De-Simone, Salvatore Giovanni Lechuga, Guilherme Curty Napoleão-Pêgo, Paloma Gomes, Larissa Rodrigues Provance, David William Nirello, Vinícius Dias Sodero, Ana Carolina Rennó Guedes, Herbert Leonel de Mattos Molecules Article Introduction: Snakebite envenomation is considered a neglected tropical disease, and SVTLEs critical elements are involved in serious coagulopathies that occur on envenoming. Although some enzymes of this group have been structurally investigated, it is essential to characterize other proteins to better understand their unique properties such as the Lachesis muta rhombeata 47 kDa (Lmr-47) venom serine protease. Methods: The structure of Lmr-47 was studied in solution, using SAXS, DLS, CD, and in silico by homology modeling. Molecular docking experiments simulated 21 competitive inhibitors. Results: At pH 8.0, Lmr-47 has an Rg of 34.5 ± 0.6 Å, Dmax of 130 Å, and SR of 50 Å, according to DLS data. Kratky plot analysis indicates a rigid shape at pH 8.0. Conversely, the pH variation does not change the center of mass’s intrinsic fluorescence, possibly indicating the absence of fluorescent amino acids in the regions affected by pH variation. CD experiments show a substantially random coiled secondary structure not affected by pH. The low-resolution model of Lmr-47 presented a prolate elongated shape at pH 8.0. Using the 3D structure obtained by molecular modeling, docking experiments identified five good and three suitable competitive inhibitors. Conclusion: Together, our work provided insights into the structure of the Lmr-47 and identified inhibitors that may enhance our understanding of thrombin-like family proteins. MDPI 2021-06-28 /pmc/articles/PMC8271572/ /pubmed/34203140 http://dx.doi.org/10.3390/molecules26133930 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De-Simone, Salvatore Giovanni
Lechuga, Guilherme Curty
Napoleão-Pêgo, Paloma
Gomes, Larissa Rodrigues
Provance, David William
Nirello, Vinícius Dias
Sodero, Ana Carolina Rennó
Guedes, Herbert Leonel de Mattos
Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title_full Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title_fullStr Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title_full_unstemmed Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title_short Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
title_sort small angle x-ray scattering, molecular modeling, and chemometric studies from a thrombin-like (lmr-47) enzyme of lachesis m. rhombeata venom
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8271572/
https://www.ncbi.nlm.nih.gov/pubmed/34203140
http://dx.doi.org/10.3390/molecules26133930
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