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Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1

Apical membrane antigen 1 (AMA1) is a type I integral membrane protein that is highly conserved in apicomplexan parasites. Previous studies have shown that Eimeria tenella AMA1 (EtAMA1) is critical for sporozoite invasion of host cells. Here, we show that EtAMA1 is a microneme protein secreted by sp...

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Autores principales: Wang, Qingjie, Zhao, Qiping, Zhu, Shunhai, Huang, Bing, Yu, Shuilan, Liang, Shanshan, Wang, Haixia, Zhao, Huanzhi, Han, Hongyu, Dong, Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: EDP Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7731912/
https://www.ncbi.nlm.nih.gov/pubmed/33306022
http://dx.doi.org/10.1051/parasite/2020068
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author Wang, Qingjie
Zhao, Qiping
Zhu, Shunhai
Huang, Bing
Yu, Shuilan
Liang, Shanshan
Wang, Haixia
Zhao, Huanzhi
Han, Hongyu
Dong, Hui
author_facet Wang, Qingjie
Zhao, Qiping
Zhu, Shunhai
Huang, Bing
Yu, Shuilan
Liang, Shanshan
Wang, Haixia
Zhao, Huanzhi
Han, Hongyu
Dong, Hui
author_sort Wang, Qingjie
collection PubMed
description Apical membrane antigen 1 (AMA1) is a type I integral membrane protein that is highly conserved in apicomplexan parasites. Previous studies have shown that Eimeria tenella AMA1 (EtAMA1) is critical for sporozoite invasion of host cells. Here, we show that EtAMA1 is a microneme protein secreted by sporozoites, confirming previous results. Individual and combined treatment with antibodies of EtAMA1 and its interacting proteins, E. tenella rhoptry neck protein 2 (EtRON2) and Eimeria-specific protein (EtESP), elicited significant anti-invasion effects on the parasite in a concentration-dependent manner. The overexpression of EtAMA1 in DF-1 cells showed a significant increase of sporozoite invasion. Isobaric tags for relative and absolute quantitation (iTRAQ) coupled with LC-MS/MS were used to screen differentially expressed proteins (DEPs) in DF-1 cells transiently transfected with EtAMA1. In total, 3953 distinct nonredundant proteins were identified and 163 of these were found to be differentially expressed, including 91 upregulated proteins and 72 downregulated proteins. The DEPs were mainly localized within the cytoplasm and were involved in protein binding and poly(A)-RNA binding. KEEG analyses suggested that the key pathways that the DEPs belonged to included melanogenesis, spliceosomes, tight junctions, and the FoxO and MAPK signaling pathways. The data in this study not only provide a comprehensive dataset for the overall protein changes caused by EtAMA1 expression, but also shed light on EtAMA1’s potential molecular mechanisms during Eimeria infections.
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spelling pubmed-77319122020-12-18 Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1 Wang, Qingjie Zhao, Qiping Zhu, Shunhai Huang, Bing Yu, Shuilan Liang, Shanshan Wang, Haixia Zhao, Huanzhi Han, Hongyu Dong, Hui Parasite Research Article Apical membrane antigen 1 (AMA1) is a type I integral membrane protein that is highly conserved in apicomplexan parasites. Previous studies have shown that Eimeria tenella AMA1 (EtAMA1) is critical for sporozoite invasion of host cells. Here, we show that EtAMA1 is a microneme protein secreted by sporozoites, confirming previous results. Individual and combined treatment with antibodies of EtAMA1 and its interacting proteins, E. tenella rhoptry neck protein 2 (EtRON2) and Eimeria-specific protein (EtESP), elicited significant anti-invasion effects on the parasite in a concentration-dependent manner. The overexpression of EtAMA1 in DF-1 cells showed a significant increase of sporozoite invasion. Isobaric tags for relative and absolute quantitation (iTRAQ) coupled with LC-MS/MS were used to screen differentially expressed proteins (DEPs) in DF-1 cells transiently transfected with EtAMA1. In total, 3953 distinct nonredundant proteins were identified and 163 of these were found to be differentially expressed, including 91 upregulated proteins and 72 downregulated proteins. The DEPs were mainly localized within the cytoplasm and were involved in protein binding and poly(A)-RNA binding. KEEG analyses suggested that the key pathways that the DEPs belonged to included melanogenesis, spliceosomes, tight junctions, and the FoxO and MAPK signaling pathways. The data in this study not only provide a comprehensive dataset for the overall protein changes caused by EtAMA1 expression, but also shed light on EtAMA1’s potential molecular mechanisms during Eimeria infections. EDP Sciences 2020-12-11 /pmc/articles/PMC7731912/ /pubmed/33306022 http://dx.doi.org/10.1051/parasite/2020068 Text en © Q. Wang et al., published by EDP Sciences, 2020 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 work is properly cited.
spellingShingle Research Article
Wang, Qingjie
Zhao, Qiping
Zhu, Shunhai
Huang, Bing
Yu, Shuilan
Liang, Shanshan
Wang, Haixia
Zhao, Huanzhi
Han, Hongyu
Dong, Hui
Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title_full Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title_fullStr Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title_full_unstemmed Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title_short Further investigation of the characteristics and biological function of Eimeria tenella apical membrane antigen 1
title_sort further investigation of the characteristics and biological function of eimeria tenella apical membrane antigen 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7731912/
https://www.ncbi.nlm.nih.gov/pubmed/33306022
http://dx.doi.org/10.1051/parasite/2020068
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