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In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties

Scytovirin is a lectin isolated from the cyanobacterium Scytonema varium that has shown activity against HIV, SARS coronavirus and Zaire Ebola virus. Its 95 amino acids are divided into two structural domains (SD), the first spanning amino acids 1–48 (SD1) and the second 49–95 (SD2). Interestingly,...

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Autores principales: Siqueira, Andrei Santos, Lima, Alex Ranieri Jerônimo, de Souza, Rafael Conceição, Santos, Alberdan Silva, Vianez Júnior, João Lídio da Silva Gonçalves, Gonçalves, Evonnildo Costa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088960/
https://www.ncbi.nlm.nih.gov/pubmed/28756560
http://dx.doi.org/10.1007/s11033-017-4116-1
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author Siqueira, Andrei Santos
Lima, Alex Ranieri Jerônimo
de Souza, Rafael Conceição
Santos, Alberdan Silva
Vianez Júnior, João Lídio da Silva Gonçalves
Gonçalves, Evonnildo Costa
author_facet Siqueira, Andrei Santos
Lima, Alex Ranieri Jerônimo
de Souza, Rafael Conceição
Santos, Alberdan Silva
Vianez Júnior, João Lídio da Silva Gonçalves
Gonçalves, Evonnildo Costa
author_sort Siqueira, Andrei Santos
collection PubMed
description Scytovirin is a lectin isolated from the cyanobacterium Scytonema varium that has shown activity against HIV, SARS coronavirus and Zaire Ebola virus. Its 95 amino acids are divided into two structural domains (SD), the first spanning amino acids 1–48 (SD1) and the second 49–95 (SD2). Interestingly, the domains are nearly identical but differ in their affinities for carbohydrates. With the aim of enhancing understanding of the binding properties of scytovirin, we performed molecular dynamics (MD) simulations of scytovirin complexed with Man4. We set up three systems: (i) Man4 bound to both domains (SD1 + SD2) using the full-length protein; (ii) Man4 bound to an incomplete protein, containing only SD1 and (iii) Man4 bound to an incomplete protein containing only SD2. Contrary to other reports, binding free energy results suggest that Man4 can bind simultaneously to SD1 and SD2 binding regions, but SD1 individually has the best values of energy and the best affinity for Man4. Decomposition of the binding free energy showed that the residues that interact with Man4 were different in the three systems, suggesting that the binding mechanism of Man4 varies between full-length protein, SD1 and SD2. The results presented here may help to formulate strategies to use scytovirin and promote mutagenesis studies to improve the antiviral activity of scytovirin.
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spelling pubmed-70889602020-03-23 In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties Siqueira, Andrei Santos Lima, Alex Ranieri Jerônimo de Souza, Rafael Conceição Santos, Alberdan Silva Vianez Júnior, João Lídio da Silva Gonçalves Gonçalves, Evonnildo Costa Mol Biol Rep Short Communication Scytovirin is a lectin isolated from the cyanobacterium Scytonema varium that has shown activity against HIV, SARS coronavirus and Zaire Ebola virus. Its 95 amino acids are divided into two structural domains (SD), the first spanning amino acids 1–48 (SD1) and the second 49–95 (SD2). Interestingly, the domains are nearly identical but differ in their affinities for carbohydrates. With the aim of enhancing understanding of the binding properties of scytovirin, we performed molecular dynamics (MD) simulations of scytovirin complexed with Man4. We set up three systems: (i) Man4 bound to both domains (SD1 + SD2) using the full-length protein; (ii) Man4 bound to an incomplete protein, containing only SD1 and (iii) Man4 bound to an incomplete protein containing only SD2. Contrary to other reports, binding free energy results suggest that Man4 can bind simultaneously to SD1 and SD2 binding regions, but SD1 individually has the best values of energy and the best affinity for Man4. Decomposition of the binding free energy showed that the residues that interact with Man4 were different in the three systems, suggesting that the binding mechanism of Man4 varies between full-length protein, SD1 and SD2. The results presented here may help to formulate strategies to use scytovirin and promote mutagenesis studies to improve the antiviral activity of scytovirin. Springer Netherlands 2017-07-29 2017 /pmc/articles/PMC7088960/ /pubmed/28756560 http://dx.doi.org/10.1007/s11033-017-4116-1 Text en © Springer Science+Business Media B.V. 2017 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Short Communication
Siqueira, Andrei Santos
Lima, Alex Ranieri Jerônimo
de Souza, Rafael Conceição
Santos, Alberdan Silva
Vianez Júnior, João Lídio da Silva Gonçalves
Gonçalves, Evonnildo Costa
In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title_full In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title_fullStr In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title_full_unstemmed In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title_short In silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
title_sort in silico analysis of the cyanobacterial lectin scytovirin: new insights into binding properties
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7088960/
https://www.ncbi.nlm.nih.gov/pubmed/28756560
http://dx.doi.org/10.1007/s11033-017-4116-1
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