EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.

As a neurotropic virus, human Enterovirus 71 (EV71) infection causes hand-foot-and-mouth disease (HFMD) and may develop severe neurological disorders in infants. Toll-like receptor 7 (TLR7) acts as an innate immune receptor and is also a death receptor in the central nervous system (CNS). However, t...

Full description

Bibliographic Details
Main Authors: Zhen Luo, Rui Su, Wenbiao Wang, Yicong Liang, Xiaofeng Zeng, Muhammad Adnan Shereen, Nadia Bashir, Qi Zhang, Ling Zhao, Kailang Wu, Yingle Liu, Jianguo Wu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-11-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1008142
id doaj-7dc6ef7e0c774763ad2e12cea6bb1e73
record_format Article
spelling doaj-7dc6ef7e0c774763ad2e12cea6bb1e732021-04-21T17:09:10ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742019-11-011511e100814210.1371/journal.ppat.1008142EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.Zhen LuoRui SuWenbiao WangYicong LiangXiaofeng ZengMuhammad Adnan ShereenNadia BashirQi ZhangLing ZhaoKailang WuYingle LiuJianguo WuAs a neurotropic virus, human Enterovirus 71 (EV71) infection causes hand-foot-and-mouth disease (HFMD) and may develop severe neurological disorders in infants. Toll-like receptor 7 (TLR7) acts as an innate immune receptor and is also a death receptor in the central nervous system (CNS). However, the mechanisms underlying the regulation of TLR7-mediated brain pathogenesis upon EV71 infection remain largely elusive. Here we reveal a novel mechanism by which EV71 infects astrocytes in the brain and induces neural pathogenesis via TLR7 and interleukin-6 (IL-6) in C57BL/6 mice and in human astroglioma U251 cells. Upon EV71 infection, wild-type (WT) mice displayed more significant body weight loss, higher clinical scores, and lower survival rates as compared with TLR7-/- mice. In the cerebral cortex of EV71-infected mice, neurofilament integrity was disrupted, and inflammatory cell infiltration and neurodegeneration were induced in WT mice, whereas these were largely absent in TLR7-/- mice. Similarly, IL-6 production, Caspase-3 cleavage, and cell apoptosis were significantly higher in EV71-infected WT mice as compared with TLR7-/- mice. Moreover, EV71 preferentially infected and induced IL-6 in astrocytes of mice brain. In U251 cells, EV71-induced IL-6 production and cell apoptosis were suppressed by shRNA-mediated knockdown of TLR7 (shTLR7). Moreover, in the cerebral cortex of EV71-infected mice, the blockade of IL-6 with anti-IL-6 antibody (IL-6-Ab) restored the body weight loss, attenuated clinical scores, improved survival rates, reduced the disruption of neurofilament integrity, decreased cell apoptotic induction, and lowered levels of Caspase-3 cleavage. Similarly, in EV71-infected U251 cells, IL-6-Ab blocked EV71-induced IL-6 production and cell apoptosis in response to viral infection. Collectively, it's exhibited TLR7 upregulation, IL-6 induction and astrocytic cell apoptosis in EV71-infected human brain. Taken together, we propose that EV71 infects astrocytes of the cerebral cortex in mice and human and triggers TLR7 signaling and IL-6 release, subsequently inducing neural pathogenesis in the brain.https://doi.org/10.1371/journal.ppat.1008142
collection DOAJ
language English
format Article
sources DOAJ
author Zhen Luo
Rui Su
Wenbiao Wang
Yicong Liang
Xiaofeng Zeng
Muhammad Adnan Shereen
Nadia Bashir
Qi Zhang
Ling Zhao
Kailang Wu
Yingle Liu
Jianguo Wu
spellingShingle Zhen Luo
Rui Su
Wenbiao Wang
Yicong Liang
Xiaofeng Zeng
Muhammad Adnan Shereen
Nadia Bashir
Qi Zhang
Ling Zhao
Kailang Wu
Yingle Liu
Jianguo Wu
EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
PLoS Pathogens
author_facet Zhen Luo
Rui Su
Wenbiao Wang
Yicong Liang
Xiaofeng Zeng
Muhammad Adnan Shereen
Nadia Bashir
Qi Zhang
Ling Zhao
Kailang Wu
Yingle Liu
Jianguo Wu
author_sort Zhen Luo
title EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
title_short EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
title_full EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
title_fullStr EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
title_full_unstemmed EV71 infection induces neurodegeneration via activating TLR7 signaling and IL-6 production.
title_sort ev71 infection induces neurodegeneration via activating tlr7 signaling and il-6 production.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2019-11-01
description As a neurotropic virus, human Enterovirus 71 (EV71) infection causes hand-foot-and-mouth disease (HFMD) and may develop severe neurological disorders in infants. Toll-like receptor 7 (TLR7) acts as an innate immune receptor and is also a death receptor in the central nervous system (CNS). However, the mechanisms underlying the regulation of TLR7-mediated brain pathogenesis upon EV71 infection remain largely elusive. Here we reveal a novel mechanism by which EV71 infects astrocytes in the brain and induces neural pathogenesis via TLR7 and interleukin-6 (IL-6) in C57BL/6 mice and in human astroglioma U251 cells. Upon EV71 infection, wild-type (WT) mice displayed more significant body weight loss, higher clinical scores, and lower survival rates as compared with TLR7-/- mice. In the cerebral cortex of EV71-infected mice, neurofilament integrity was disrupted, and inflammatory cell infiltration and neurodegeneration were induced in WT mice, whereas these were largely absent in TLR7-/- mice. Similarly, IL-6 production, Caspase-3 cleavage, and cell apoptosis were significantly higher in EV71-infected WT mice as compared with TLR7-/- mice. Moreover, EV71 preferentially infected and induced IL-6 in astrocytes of mice brain. In U251 cells, EV71-induced IL-6 production and cell apoptosis were suppressed by shRNA-mediated knockdown of TLR7 (shTLR7). Moreover, in the cerebral cortex of EV71-infected mice, the blockade of IL-6 with anti-IL-6 antibody (IL-6-Ab) restored the body weight loss, attenuated clinical scores, improved survival rates, reduced the disruption of neurofilament integrity, decreased cell apoptotic induction, and lowered levels of Caspase-3 cleavage. Similarly, in EV71-infected U251 cells, IL-6-Ab blocked EV71-induced IL-6 production and cell apoptosis in response to viral infection. Collectively, it's exhibited TLR7 upregulation, IL-6 induction and astrocytic cell apoptosis in EV71-infected human brain. Taken together, we propose that EV71 infects astrocytes of the cerebral cortex in mice and human and triggers TLR7 signaling and IL-6 release, subsequently inducing neural pathogenesis in the brain.
url https://doi.org/10.1371/journal.ppat.1008142
work_keys_str_mv AT zhenluo ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT ruisu ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT wenbiaowang ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT yicongliang ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT xiaofengzeng ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT muhammadadnanshereen ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT nadiabashir ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT qizhang ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT lingzhao ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT kailangwu ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT yingleliu ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
AT jianguowu ev71infectioninducesneurodegenerationviaactivatingtlr7signalingandil6production
_version_ 1714666504241283072