Cargando…

Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell

Tuberculosis (TB) is one of the prevalent causes of death worldwide, with 95% of these deaths occurring in developing countries, like India. The causative agent, Mycobacterium tuberculosis (MTb) has the tenacious ability to circumvent the host’s immune system for its own advantage. Macrophages are o...

Descripción completa

Detalles Bibliográficos
Autores principales: Ahluwalia, Pankaj Kumar, Pandey, Rajan Kumar, Sehajpal, Prabodh Kumar, Prajapati, Vijay Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5296369/
https://www.ncbi.nlm.nih.gov/pubmed/28228760
http://dx.doi.org/10.3389/fimmu.2017.00107
_version_ 1782505589952217088
author Ahluwalia, Pankaj Kumar
Pandey, Rajan Kumar
Sehajpal, Prabodh Kumar
Prajapati, Vijay Kumar
author_facet Ahluwalia, Pankaj Kumar
Pandey, Rajan Kumar
Sehajpal, Prabodh Kumar
Prajapati, Vijay Kumar
author_sort Ahluwalia, Pankaj Kumar
collection PubMed
description Tuberculosis (TB) is one of the prevalent causes of death worldwide, with 95% of these deaths occurring in developing countries, like India. The causative agent, Mycobacterium tuberculosis (MTb) has the tenacious ability to circumvent the host’s immune system for its own advantage. Macrophages are one of the phagocytic cells that are central to immunity against MTb. These are highly plastic cells dependent on the milieu and can showcase M1/M2 polarization. M1 macrophages are bactericidal in action, but M2 macrophages are anti-inflammatory in their immune response. This computational study is an effort to elucidate the role of miRNAs that influences the survival of MTb in the macrophage. To identify the miRNAs against critical transcription factors, we selected only conserved hits from TargetScan database. Further, validation of these miRNAs was achieved using four databases viz. DIANA-microT, miRDB, miRanda-mirSVR, and miRNAMap. All miRNAs were identified through a conserved seed sequence against the 3′-UTR of transcription factors. This bioinformatics study found that miR-27a and miR-27b has a putative binding site at 3′-UTR of IRF4, and miR-302c against IRF5. miR-155, miR-132, and miR-455-5p are predicted microRNAs against suppressor of cytokine signaling transcription factors. Several other microRNAs, which have an affinity for critical transcription factors, are also predicted in this study. This MTb-associated modulation of microRNAs to modify the expression of the target gene(s) plays a critical role in TB pathogenesis. Other than M1/M2 plasticity, MTb has the ability to convert macrophage into foam cells that are rich in lipids and cholesterol. We have highlighted few microRNAs which overlap between M2/foam cell continuums. miR-155, miR-33, miR-27a, and miR-27b plays a dual role in deciding macrophage polarity and its conversion to foam cells. This study shows a glimpse of microRNAs which can be modulated by MTb not only to prevent its elimination but also to promote its survival.
format Online
Article
Text
id pubmed-5296369
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-52963692017-02-22 Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell Ahluwalia, Pankaj Kumar Pandey, Rajan Kumar Sehajpal, Prabodh Kumar Prajapati, Vijay Kumar Front Immunol Immunology Tuberculosis (TB) is one of the prevalent causes of death worldwide, with 95% of these deaths occurring in developing countries, like India. The causative agent, Mycobacterium tuberculosis (MTb) has the tenacious ability to circumvent the host’s immune system for its own advantage. Macrophages are one of the phagocytic cells that are central to immunity against MTb. These are highly plastic cells dependent on the milieu and can showcase M1/M2 polarization. M1 macrophages are bactericidal in action, but M2 macrophages are anti-inflammatory in their immune response. This computational study is an effort to elucidate the role of miRNAs that influences the survival of MTb in the macrophage. To identify the miRNAs against critical transcription factors, we selected only conserved hits from TargetScan database. Further, validation of these miRNAs was achieved using four databases viz. DIANA-microT, miRDB, miRanda-mirSVR, and miRNAMap. All miRNAs were identified through a conserved seed sequence against the 3′-UTR of transcription factors. This bioinformatics study found that miR-27a and miR-27b has a putative binding site at 3′-UTR of IRF4, and miR-302c against IRF5. miR-155, miR-132, and miR-455-5p are predicted microRNAs against suppressor of cytokine signaling transcription factors. Several other microRNAs, which have an affinity for critical transcription factors, are also predicted in this study. This MTb-associated modulation of microRNAs to modify the expression of the target gene(s) plays a critical role in TB pathogenesis. Other than M1/M2 plasticity, MTb has the ability to convert macrophage into foam cells that are rich in lipids and cholesterol. We have highlighted few microRNAs which overlap between M2/foam cell continuums. miR-155, miR-33, miR-27a, and miR-27b plays a dual role in deciding macrophage polarity and its conversion to foam cells. This study shows a glimpse of microRNAs which can be modulated by MTb not only to prevent its elimination but also to promote its survival. Frontiers Media S.A. 2017-02-08 /pmc/articles/PMC5296369/ /pubmed/28228760 http://dx.doi.org/10.3389/fimmu.2017.00107 Text en Copyright © 2017 Ahluwalia, Pandey, Sehajpal and Prajapati. 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) or licensor 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 Immunology
Ahluwalia, Pankaj Kumar
Pandey, Rajan Kumar
Sehajpal, Prabodh Kumar
Prajapati, Vijay Kumar
Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title_full Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title_fullStr Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title_full_unstemmed Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title_short Perturbed microRNA Expression by Mycobacterium tuberculosis Promotes Macrophage Polarization Leading to Pro-survival Foam Cell
title_sort perturbed microrna expression by mycobacterium tuberculosis promotes macrophage polarization leading to pro-survival foam cell
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5296369/
https://www.ncbi.nlm.nih.gov/pubmed/28228760
http://dx.doi.org/10.3389/fimmu.2017.00107
work_keys_str_mv AT ahluwaliapankajkumar perturbedmicrornaexpressionbymycobacteriumtuberculosispromotesmacrophagepolarizationleadingtoprosurvivalfoamcell
AT pandeyrajankumar perturbedmicrornaexpressionbymycobacteriumtuberculosispromotesmacrophagepolarizationleadingtoprosurvivalfoamcell
AT sehajpalprabodhkumar perturbedmicrornaexpressionbymycobacteriumtuberculosispromotesmacrophagepolarizationleadingtoprosurvivalfoamcell
AT prajapativijaykumar perturbedmicrornaexpressionbymycobacteriumtuberculosispromotesmacrophagepolarizationleadingtoprosurvivalfoamcell