Cargando…

Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p

OBJECTIVES: Genetic and epigenetic mechanisms regulate antimicrobial immunity against Mycobacterium tuberculosis (Mtb) infection. METHODS: The present study assessed circular RNA TRAPPC6B (circTRAPPC6B) for antimicrobial immune functions and defined mechanisms wherein circTRAPPC6B regulates Mtb grow...

Descripción completa

Detalles Bibliográficos
Autores principales: Luo, Hou‐Long, Pi, Jiang, Zhang, Jun‐Ai, Yang, En‐Zhuo, Xu, Huan, Luo, Hong, Shen, Ling, Peng, Ying, Liu, Gan‐Bin, Song, Cai‐Mei, Li, Ke‐Yue, Wu, Xian‐Jin, Zheng, Bi‐Ying, Shen, Hong‐Bo, Chen, Zheng W, Xu, Jun‐Fa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890665/
https://www.ncbi.nlm.nih.gov/pubmed/33708385
http://dx.doi.org/10.1002/cti2.1254
_version_ 1783652546647162880
author Luo, Hou‐Long
Pi, Jiang
Zhang, Jun‐Ai
Yang, En‐Zhuo
Xu, Huan
Luo, Hong
Shen, Ling
Peng, Ying
Liu, Gan‐Bin
Song, Cai‐Mei
Li, Ke‐Yue
Wu, Xian‐Jin
Zheng, Bi‐Ying
Shen, Hong‐Bo
Chen, Zheng W
Xu, Jun‐Fa
author_facet Luo, Hou‐Long
Pi, Jiang
Zhang, Jun‐Ai
Yang, En‐Zhuo
Xu, Huan
Luo, Hong
Shen, Ling
Peng, Ying
Liu, Gan‐Bin
Song, Cai‐Mei
Li, Ke‐Yue
Wu, Xian‐Jin
Zheng, Bi‐Ying
Shen, Hong‐Bo
Chen, Zheng W
Xu, Jun‐Fa
author_sort Luo, Hou‐Long
collection PubMed
description OBJECTIVES: Genetic and epigenetic mechanisms regulate antimicrobial immunity against Mycobacterium tuberculosis (Mtb) infection. METHODS: The present study assessed circular RNA TRAPPC6B (circTRAPPC6B) for antimicrobial immune functions and defined mechanisms wherein circTRAPPC6B regulates Mtb growth, autophagy and microRNA in macrophages. RESULTS: The Mtb infection of monocytes/macrophages resulted in a significantly decreased level of circTRAPPC6B that inhibited intracellular Mtb growth in macrophages. Conversely, circTRAPPC6B expression enhanced autophagy or autophagy‐associated protein LC3‐II production in Mtb‐infected macrophages. circTRAPPC6B‐enhanced autophagy aggregation or sequestration was also observed in fluorescence in situ hybridisation (FISH) analysis and confocal imaging. Mechanistically, circTRAPPC6B targets an inhibiting element miR‐874‐3p, as shown by bioinformatics, dual‐luciferase reporter gene analysis and pull‐down assay, respectively. Notably, miR‐874‐3p prohibited autophagy via suppressing autophagy protein ATG16L1 by binding to its 3′‐untranslated region (UTR) in Mtb‐infected macrophages and thus promoting intracellular Mtb growth. Concurrently, circTRAPPC6B enhanced autophagy in Mtb‐infected macrophages by blocking the ability of miR‐874‐3p to inhibit ATG16L1. Thus, circTRAPPC6B antagonises the ability of miR‐874‐3p to suppress ATG16L1 expression and activate and enhance autophagy sequestration to restrict Mtb growth in macrophages. CONCLUSION: The current findings suggested that both circTRAPPC6B and miR‐874‐3p mechanisms can be explored as potential therapeutics against Mtb infection.
format Online
Article
Text
id pubmed-7890665
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-78906652021-03-10 Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p Luo, Hou‐Long Pi, Jiang Zhang, Jun‐Ai Yang, En‐Zhuo Xu, Huan Luo, Hong Shen, Ling Peng, Ying Liu, Gan‐Bin Song, Cai‐Mei Li, Ke‐Yue Wu, Xian‐Jin Zheng, Bi‐Ying Shen, Hong‐Bo Chen, Zheng W Xu, Jun‐Fa Clin Transl Immunology Original Article OBJECTIVES: Genetic and epigenetic mechanisms regulate antimicrobial immunity against Mycobacterium tuberculosis (Mtb) infection. METHODS: The present study assessed circular RNA TRAPPC6B (circTRAPPC6B) for antimicrobial immune functions and defined mechanisms wherein circTRAPPC6B regulates Mtb growth, autophagy and microRNA in macrophages. RESULTS: The Mtb infection of monocytes/macrophages resulted in a significantly decreased level of circTRAPPC6B that inhibited intracellular Mtb growth in macrophages. Conversely, circTRAPPC6B expression enhanced autophagy or autophagy‐associated protein LC3‐II production in Mtb‐infected macrophages. circTRAPPC6B‐enhanced autophagy aggregation or sequestration was also observed in fluorescence in situ hybridisation (FISH) analysis and confocal imaging. Mechanistically, circTRAPPC6B targets an inhibiting element miR‐874‐3p, as shown by bioinformatics, dual‐luciferase reporter gene analysis and pull‐down assay, respectively. Notably, miR‐874‐3p prohibited autophagy via suppressing autophagy protein ATG16L1 by binding to its 3′‐untranslated region (UTR) in Mtb‐infected macrophages and thus promoting intracellular Mtb growth. Concurrently, circTRAPPC6B enhanced autophagy in Mtb‐infected macrophages by blocking the ability of miR‐874‐3p to inhibit ATG16L1. Thus, circTRAPPC6B antagonises the ability of miR‐874‐3p to suppress ATG16L1 expression and activate and enhance autophagy sequestration to restrict Mtb growth in macrophages. CONCLUSION: The current findings suggested that both circTRAPPC6B and miR‐874‐3p mechanisms can be explored as potential therapeutics against Mtb infection. John Wiley and Sons Inc. 2021-02-18 /pmc/articles/PMC7890665/ /pubmed/33708385 http://dx.doi.org/10.1002/cti2.1254 Text en © 2021 The Authors. Clinical & Translational Immunology published by John Wiley & Sons Australia, Ltd on behalf of Australian and New Zealand Society for Immunology, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Luo, Hou‐Long
Pi, Jiang
Zhang, Jun‐Ai
Yang, En‐Zhuo
Xu, Huan
Luo, Hong
Shen, Ling
Peng, Ying
Liu, Gan‐Bin
Song, Cai‐Mei
Li, Ke‐Yue
Wu, Xian‐Jin
Zheng, Bi‐Ying
Shen, Hong‐Bo
Chen, Zheng W
Xu, Jun‐Fa
Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title_full Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title_fullStr Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title_full_unstemmed Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title_short Circular RNA TRAPPC6B inhibits intracellular Mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microRNA‐874‐3p
title_sort circular rna trappc6b inhibits intracellular mycobacterium tuberculosis growth while inducing autophagy in macrophages by targeting microrna‐874‐3p
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890665/
https://www.ncbi.nlm.nih.gov/pubmed/33708385
http://dx.doi.org/10.1002/cti2.1254
work_keys_str_mv AT luohoulong circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT pijiang circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT zhangjunai circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT yangenzhuo circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT xuhuan circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT luohong circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT shenling circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT pengying circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT liuganbin circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT songcaimei circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT likeyue circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT wuxianjin circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT zhengbiying circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT shenhongbo circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT chenzhengw circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p
AT xujunfa circularrnatrappc6binhibitsintracellularmycobacteriumtuberculosisgrowthwhileinducingautophagyinmacrophagesbytargetingmicrorna8743p