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Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux

Treponema pallidum (Tp) has a well-known ability to evade the immune system and can cause neurosyphilis by invading the central nervous system (CNS). Microglia are resident macrophages of the CNS that are essential for host defense against pathogens, this study aims to investigate the interaction be...

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Autores principales: Hu, Yun-Ting, Wu, Kai-Xuan, Wang, Xiao-Tong, Zhao, Yuan-Yi, Jiang, Xiao-Yong, Liu, Dan, Tong, Man-Li, Liu, Li-Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10446187/
https://www.ncbi.nlm.nih.gov/pubmed/37611054
http://dx.doi.org/10.1371/journal.ppat.1011594
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author Hu, Yun-Ting
Wu, Kai-Xuan
Wang, Xiao-Tong
Zhao, Yuan-Yi
Jiang, Xiao-Yong
Liu, Dan
Tong, Man-Li
Liu, Li-Li
author_facet Hu, Yun-Ting
Wu, Kai-Xuan
Wang, Xiao-Tong
Zhao, Yuan-Yi
Jiang, Xiao-Yong
Liu, Dan
Tong, Man-Li
Liu, Li-Li
author_sort Hu, Yun-Ting
collection PubMed
description Treponema pallidum (Tp) has a well-known ability to evade the immune system and can cause neurosyphilis by invading the central nervous system (CNS). Microglia are resident macrophages of the CNS that are essential for host defense against pathogens, this study aims to investigate the interaction between Tp and microglia and the potential mechanism. Here, we found that Tp can exert significant toxic effects on microglia in vivo in Tg (mpeg1: EGFP) transgenic zebrafish embryos. Single-cell RNA sequencing results showed that Tp downregulated autophagy-related genes in human HMC3 microglial cells, which is negatively associated with apoptotic gene expression. Biochemical and cell biology assays further established that Tp inhibits microglial autophagy by interfering with the autophagosome-lysosome fusion process. Transcription factor EB (TFEB) is a master regulator of lysosome biogenesis, Tp activates the mechanistic target of rapamycin complex 1 (mTORC1) signaling to inhibit the nuclear translocation of TFEB, leading to decreased lysosomal biogenesis and accumulated autophagosome. Importantly, the inhibition of autophagosome formation reversed Tp-induced apoptosis and promoted microglial clearance of Tp. Taken together, these findings show that Tp blocks autophagic flux by inhibiting TFEB-mediated lysosomal biosynthesis in human microglia. Autophagosome accumulation was demonstrated to be a key mechanism underlying the effects of Tp in promoting apoptosis and preventing itself from clearing by human microglia. This study offers novel perspectives on the potential mechanism of immune evasion employed by Tp within CNS. The results not only establish the pivotal role of autophagy dysregulation in the detrimental effects of Tp on microglial cells but also bear considerable implications for the development of therapeutic strategies against Tp, specifically involving mTORC1 inhibitors and autophagosome formation inhibitors, in the context of neurosyphilis patients.
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spelling pubmed-104461872023-08-24 Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux Hu, Yun-Ting Wu, Kai-Xuan Wang, Xiao-Tong Zhao, Yuan-Yi Jiang, Xiao-Yong Liu, Dan Tong, Man-Li Liu, Li-Li PLoS Pathog Research Article Treponema pallidum (Tp) has a well-known ability to evade the immune system and can cause neurosyphilis by invading the central nervous system (CNS). Microglia are resident macrophages of the CNS that are essential for host defense against pathogens, this study aims to investigate the interaction between Tp and microglia and the potential mechanism. Here, we found that Tp can exert significant toxic effects on microglia in vivo in Tg (mpeg1: EGFP) transgenic zebrafish embryos. Single-cell RNA sequencing results showed that Tp downregulated autophagy-related genes in human HMC3 microglial cells, which is negatively associated with apoptotic gene expression. Biochemical and cell biology assays further established that Tp inhibits microglial autophagy by interfering with the autophagosome-lysosome fusion process. Transcription factor EB (TFEB) is a master regulator of lysosome biogenesis, Tp activates the mechanistic target of rapamycin complex 1 (mTORC1) signaling to inhibit the nuclear translocation of TFEB, leading to decreased lysosomal biogenesis and accumulated autophagosome. Importantly, the inhibition of autophagosome formation reversed Tp-induced apoptosis and promoted microglial clearance of Tp. Taken together, these findings show that Tp blocks autophagic flux by inhibiting TFEB-mediated lysosomal biosynthesis in human microglia. Autophagosome accumulation was demonstrated to be a key mechanism underlying the effects of Tp in promoting apoptosis and preventing itself from clearing by human microglia. This study offers novel perspectives on the potential mechanism of immune evasion employed by Tp within CNS. The results not only establish the pivotal role of autophagy dysregulation in the detrimental effects of Tp on microglial cells but also bear considerable implications for the development of therapeutic strategies against Tp, specifically involving mTORC1 inhibitors and autophagosome formation inhibitors, in the context of neurosyphilis patients. Public Library of Science 2023-08-23 /pmc/articles/PMC10446187/ /pubmed/37611054 http://dx.doi.org/10.1371/journal.ppat.1011594 Text en © 2023 Hu et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Hu, Yun-Ting
Wu, Kai-Xuan
Wang, Xiao-Tong
Zhao, Yuan-Yi
Jiang, Xiao-Yong
Liu, Dan
Tong, Man-Li
Liu, Li-Li
Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title_full Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title_fullStr Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title_full_unstemmed Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title_short Treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
title_sort treponema pallidum promoted microglia apoptosis and prevented itself from clearing by human microglia via blocking autophagic flux
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10446187/
https://www.ncbi.nlm.nih.gov/pubmed/37611054
http://dx.doi.org/10.1371/journal.ppat.1011594
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