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MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells

Prevention and control of infection by porcine reproductive and respiratory syndrome virus (PRRSV) remains a challenge, due to our limited understanding of the PRRSV invasion mechanism. Our previous study has shown that PRRSV glycoprotein GP5 interacts with MYH9 C-terminal domain protein (PRA). Here...

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Autores principales: Xue, Biyun, Hou, Gaopeng, Zhang, Guixi, Huang, Jingjing, Li, Liangliang, Nan, Yuchen, Mu, Yang, Wang, Lizhen, Zhang, Lu, Han, Ximeng, Ren, Xiaolei, Zhao, Qin, Wu, Chunyan, Wang, Jingfei, Zhou, En-Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6794372/
https://www.ncbi.nlm.nih.gov/pubmed/31649651
http://dx.doi.org/10.3389/fmicb.2019.02313
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author Xue, Biyun
Hou, Gaopeng
Zhang, Guixi
Huang, Jingjing
Li, Liangliang
Nan, Yuchen
Mu, Yang
Wang, Lizhen
Zhang, Lu
Han, Ximeng
Ren, Xiaolei
Zhao, Qin
Wu, Chunyan
Wang, Jingfei
Zhou, En-Min
author_facet Xue, Biyun
Hou, Gaopeng
Zhang, Guixi
Huang, Jingjing
Li, Liangliang
Nan, Yuchen
Mu, Yang
Wang, Lizhen
Zhang, Lu
Han, Ximeng
Ren, Xiaolei
Zhao, Qin
Wu, Chunyan
Wang, Jingfei
Zhou, En-Min
author_sort Xue, Biyun
collection PubMed
description Prevention and control of infection by porcine reproductive and respiratory syndrome virus (PRRSV) remains a challenge, due to our limited understanding of the PRRSV invasion mechanism. Our previous study has shown that PRRSV glycoprotein GP5 interacts with MYH9 C-terminal domain protein (PRA). Here we defined that the first ectodomain of GP5 (GP5-ecto-1) directly interacted with PRA and this interaction triggered PRA and endogenous MYH9 to form filament assembly. More importantly, MYH9 filament assembly was also formed in GP5-ecto-1-transfected MARC-145 cells. Notably, PRRSV infection of MARC-145 cells and porcine alveolar macrophages also induced endogenous MYH9 aggregation and polymerization that were required for subsequent PRRSV internalization. Moreover, overexpression of S100A4, a MYH9-specific disassembly inducer, in MARC-145 cells significantly resulted in diminished MYH9 aggregation and marked inhibition of subsequent virion internalization and infection by both PRRSV-1 and PRRSV-2 isolates. The collective results of this work reveal a novel molecular mechanism employed by MYH9 that helps PRRSV gain entry into permissive cells.
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spelling pubmed-67943722019-10-24 MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells Xue, Biyun Hou, Gaopeng Zhang, Guixi Huang, Jingjing Li, Liangliang Nan, Yuchen Mu, Yang Wang, Lizhen Zhang, Lu Han, Ximeng Ren, Xiaolei Zhao, Qin Wu, Chunyan Wang, Jingfei Zhou, En-Min Front Microbiol Microbiology Prevention and control of infection by porcine reproductive and respiratory syndrome virus (PRRSV) remains a challenge, due to our limited understanding of the PRRSV invasion mechanism. Our previous study has shown that PRRSV glycoprotein GP5 interacts with MYH9 C-terminal domain protein (PRA). Here we defined that the first ectodomain of GP5 (GP5-ecto-1) directly interacted with PRA and this interaction triggered PRA and endogenous MYH9 to form filament assembly. More importantly, MYH9 filament assembly was also formed in GP5-ecto-1-transfected MARC-145 cells. Notably, PRRSV infection of MARC-145 cells and porcine alveolar macrophages also induced endogenous MYH9 aggregation and polymerization that were required for subsequent PRRSV internalization. Moreover, overexpression of S100A4, a MYH9-specific disassembly inducer, in MARC-145 cells significantly resulted in diminished MYH9 aggregation and marked inhibition of subsequent virion internalization and infection by both PRRSV-1 and PRRSV-2 isolates. The collective results of this work reveal a novel molecular mechanism employed by MYH9 that helps PRRSV gain entry into permissive cells. Frontiers Media S.A. 2019-10-09 /pmc/articles/PMC6794372/ /pubmed/31649651 http://dx.doi.org/10.3389/fmicb.2019.02313 Text en Copyright © 2019 Xue, Hou, Zhang, Huang, Li, Nan, Mu, Wang, Zhang, Han, Ren, Zhao, Wu, Wang and Zhou. 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) and the copyright owner(s) 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 Microbiology
Xue, Biyun
Hou, Gaopeng
Zhang, Guixi
Huang, Jingjing
Li, Liangliang
Nan, Yuchen
Mu, Yang
Wang, Lizhen
Zhang, Lu
Han, Ximeng
Ren, Xiaolei
Zhao, Qin
Wu, Chunyan
Wang, Jingfei
Zhou, En-Min
MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title_full MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title_fullStr MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title_full_unstemmed MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title_short MYH9 Aggregation Induced by Direct Interaction With PRRSV GP5 Ectodomain Facilitates Viral Internalization by Permissive Cells
title_sort myh9 aggregation induced by direct interaction with prrsv gp5 ectodomain facilitates viral internalization by permissive cells
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6794372/
https://www.ncbi.nlm.nih.gov/pubmed/31649651
http://dx.doi.org/10.3389/fmicb.2019.02313
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