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Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections

Intracerebral microhemorrhages (CMHs) are small foci of hemorrhages in the cerebrum. Acute infections induced by some intracellular pathogens, including rickettsia, can result in CMHs. Annexin a2 (ANXA2) has been documented to play a functional role during intracellular bacterial adhesion. Here we r...

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Autores principales: Su, Zhengchen, Chang, Qing, Drelich, Aleksandra, Shelite, Thomas, Judy, Barbara, Liu, Yakun, Xiao, Jie, Zhou, Changchen, He, Xi, Jin, Yang, Saito, Tais, Tang, Shaojun, Soong, Lynn, Wakamiya, Maki, Fang, Xiang, Bukreyev, Alexander, Ksiazek, Thomas, Russell, William K., Gong, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7392349/
https://www.ncbi.nlm.nih.gov/pubmed/32687500
http://dx.doi.org/10.1371/journal.pntd.0007960
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author Su, Zhengchen
Chang, Qing
Drelich, Aleksandra
Shelite, Thomas
Judy, Barbara
Liu, Yakun
Xiao, Jie
Zhou, Changchen
He, Xi
Jin, Yang
Saito, Tais
Tang, Shaojun
Soong, Lynn
Wakamiya, Maki
Fang, Xiang
Bukreyev, Alexander
Ksiazek, Thomas
Russell, William K.
Gong, Bin
author_facet Su, Zhengchen
Chang, Qing
Drelich, Aleksandra
Shelite, Thomas
Judy, Barbara
Liu, Yakun
Xiao, Jie
Zhou, Changchen
He, Xi
Jin, Yang
Saito, Tais
Tang, Shaojun
Soong, Lynn
Wakamiya, Maki
Fang, Xiang
Bukreyev, Alexander
Ksiazek, Thomas
Russell, William K.
Gong, Bin
author_sort Su, Zhengchen
collection PubMed
description Intracerebral microhemorrhages (CMHs) are small foci of hemorrhages in the cerebrum. Acute infections induced by some intracellular pathogens, including rickettsia, can result in CMHs. Annexin a2 (ANXA2) has been documented to play a functional role during intracellular bacterial adhesion. Here we report that ANXA2-knockout (KO) mice are more susceptible to CMHs in response to rickettsia and Ebola virus infections, suggesting an essential role of ANXA2 in protecting vascular integrity during these intracellular pathogen infections. Proteomic analysis via mass spectrometry of whole brain lysates and brain-derived endosomes from ANXA2-KO and wild-type (WT) mice post-infection with R. australis revealed that a variety of significant proteins were differentially expressed, and the follow-up function enrichment analysis had identified several relevant cell-cell junction functions. Immunohistology study confirmed that both infected WT and infected ANXA2-KO mice were subjected to adherens junctional protein (VE-cadherin) damages. However, key blood-brain barrier (BBB) components, tight junctional proteins ZO-1 and occludin, were disorganized in the brains from R. australis-infected ANXA2-KO mice, but not those of infected WT mice. Similar ANXA2-KO dependent CMHs and fragments of ZO-1 and occludin were also observed in Ebola virus-infected ANXA2-KO mice, but not found in infected WT mice. Overall, our study revealed a novel role of ANXA2 in the formation of CMHs during R. australis and Ebola virus infections; and the underlying mechanism is relevant to the role of ANXA2-regulated tight junctions and its role in stabilizing the BBB in these deadly infections.
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spelling pubmed-73923492020-08-12 Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections Su, Zhengchen Chang, Qing Drelich, Aleksandra Shelite, Thomas Judy, Barbara Liu, Yakun Xiao, Jie Zhou, Changchen He, Xi Jin, Yang Saito, Tais Tang, Shaojun Soong, Lynn Wakamiya, Maki Fang, Xiang Bukreyev, Alexander Ksiazek, Thomas Russell, William K. Gong, Bin PLoS Negl Trop Dis Research Article Intracerebral microhemorrhages (CMHs) are small foci of hemorrhages in the cerebrum. Acute infections induced by some intracellular pathogens, including rickettsia, can result in CMHs. Annexin a2 (ANXA2) has been documented to play a functional role during intracellular bacterial adhesion. Here we report that ANXA2-knockout (KO) mice are more susceptible to CMHs in response to rickettsia and Ebola virus infections, suggesting an essential role of ANXA2 in protecting vascular integrity during these intracellular pathogen infections. Proteomic analysis via mass spectrometry of whole brain lysates and brain-derived endosomes from ANXA2-KO and wild-type (WT) mice post-infection with R. australis revealed that a variety of significant proteins were differentially expressed, and the follow-up function enrichment analysis had identified several relevant cell-cell junction functions. Immunohistology study confirmed that both infected WT and infected ANXA2-KO mice were subjected to adherens junctional protein (VE-cadherin) damages. However, key blood-brain barrier (BBB) components, tight junctional proteins ZO-1 and occludin, were disorganized in the brains from R. australis-infected ANXA2-KO mice, but not those of infected WT mice. Similar ANXA2-KO dependent CMHs and fragments of ZO-1 and occludin were also observed in Ebola virus-infected ANXA2-KO mice, but not found in infected WT mice. Overall, our study revealed a novel role of ANXA2 in the formation of CMHs during R. australis and Ebola virus infections; and the underlying mechanism is relevant to the role of ANXA2-regulated tight junctions and its role in stabilizing the BBB in these deadly infections. Public Library of Science 2020-07-20 /pmc/articles/PMC7392349/ /pubmed/32687500 http://dx.doi.org/10.1371/journal.pntd.0007960 Text en © 2020 Su et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Su, Zhengchen
Chang, Qing
Drelich, Aleksandra
Shelite, Thomas
Judy, Barbara
Liu, Yakun
Xiao, Jie
Zhou, Changchen
He, Xi
Jin, Yang
Saito, Tais
Tang, Shaojun
Soong, Lynn
Wakamiya, Maki
Fang, Xiang
Bukreyev, Alexander
Ksiazek, Thomas
Russell, William K.
Gong, Bin
Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title_full Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title_fullStr Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title_full_unstemmed Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title_short Annexin A2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and Ebola virus infections
title_sort annexin a2 depletion exacerbates the intracerebral microhemorrhage induced by acute rickettsia and ebola virus infections
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7392349/
https://www.ncbi.nlm.nih.gov/pubmed/32687500
http://dx.doi.org/10.1371/journal.pntd.0007960
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