Cargando…
A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection
Virus infection can lead to the production of interferon, which activates the JAK/STAT pathway and induces the expression of multiple downstream interferon-stimulated genes (ISGs) to achieve their antiviral function. Cytidine/uridine monophosphate kinase 2 (CMPK2) gene has been identified as an ISG...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9132166/ https://www.ncbi.nlm.nih.gov/pubmed/35633731 http://dx.doi.org/10.3389/fmicb.2022.874331 |
_version_ | 1784713322399006720 |
---|---|
author | Li, Xin Feng, Yiyi Liu, Weiwei Tan, Lei Sun, Yingjie Song, Cuiping Liao, Ying Xu, Chenggang Ren, Tao Ding, Chan Qiu, Xusheng |
author_facet | Li, Xin Feng, Yiyi Liu, Weiwei Tan, Lei Sun, Yingjie Song, Cuiping Liao, Ying Xu, Chenggang Ren, Tao Ding, Chan Qiu, Xusheng |
author_sort | Li, Xin |
collection | PubMed |
description | Virus infection can lead to the production of interferon, which activates the JAK/STAT pathway and induces the expression of multiple downstream interferon-stimulated genes (ISGs) to achieve their antiviral function. Cytidine/uridine monophosphate kinase 2 (CMPK2) gene has been identified as an ISG in human and fish, and is also known as a rate-limiting enzyme in mitochondria to maintain intracellular UTP/CTP levels, which is necessary for de novo mitochondrial DNA synthesis. By mining previous microarray data, it was found that both Avian Influenza Virus (AIV) and Newcastle Disease Virus (NDV) infection can lead to the significant upregulation of chicken CMPK2 gene. However, little is known about the function of CMPK2 gene in chickens. In the present study, the open reading frame (ORF) of chicken CMPK2 (chCMPK2) was cloned from DF-1, a chicken embryo fibroblasts cell line, and subjected to further analysis. Sequence analysis showed that chCMPK2 shared high similarity in amino acid with CMPK2 sequences from all the other species, especially reptiles. A thymidylate kinase (TMK) domain was identified in the C-terminus of chCMPK2, which is highly conserved among all species. In vitro, AIV infection induced significant increases in chCMPK2 expression in DF-1, HD11, and the chicken embryonic fibroblasts (CEF), while obvious increase only detected in DF-1 cells and CEF cells after NDV infection. In vivo, the expression levels of chCMPK2 were up-regulated in several tissues from AIV infected chickens, especially the brain, spleen, bursa, kidney, intestine, heart and thymus, and notable increase of chCMPK2 was detected in the bursa, kidney, duodenum, lung, heart, and thymus during NDV infection. Here, using MDA5 and IFN-β knockdown cells, we demonstrated that as a novel ISG, chCMPK2 could be regulated by the MDA5/IFN-β pathway. The high expression level of exogenous chCMPK2 displayed inhibitory effects on AIV and NDV as well as reduced viral RNA in infected cells. We further demonstrated that Asp135, a key site on the TMK catalytic domain, was identified as critical for the antiviral activities of chCMPK2. Taken together, these data demonstrated that chCMPK2 is involved in the chicken immune system and may play important roles in host anti-viral responses. |
format | Online Article Text |
id | pubmed-9132166 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-91321662022-05-26 A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection Li, Xin Feng, Yiyi Liu, Weiwei Tan, Lei Sun, Yingjie Song, Cuiping Liao, Ying Xu, Chenggang Ren, Tao Ding, Chan Qiu, Xusheng Front Microbiol Microbiology Virus infection can lead to the production of interferon, which activates the JAK/STAT pathway and induces the expression of multiple downstream interferon-stimulated genes (ISGs) to achieve their antiviral function. Cytidine/uridine monophosphate kinase 2 (CMPK2) gene has been identified as an ISG in human and fish, and is also known as a rate-limiting enzyme in mitochondria to maintain intracellular UTP/CTP levels, which is necessary for de novo mitochondrial DNA synthesis. By mining previous microarray data, it was found that both Avian Influenza Virus (AIV) and Newcastle Disease Virus (NDV) infection can lead to the significant upregulation of chicken CMPK2 gene. However, little is known about the function of CMPK2 gene in chickens. In the present study, the open reading frame (ORF) of chicken CMPK2 (chCMPK2) was cloned from DF-1, a chicken embryo fibroblasts cell line, and subjected to further analysis. Sequence analysis showed that chCMPK2 shared high similarity in amino acid with CMPK2 sequences from all the other species, especially reptiles. A thymidylate kinase (TMK) domain was identified in the C-terminus of chCMPK2, which is highly conserved among all species. In vitro, AIV infection induced significant increases in chCMPK2 expression in DF-1, HD11, and the chicken embryonic fibroblasts (CEF), while obvious increase only detected in DF-1 cells and CEF cells after NDV infection. In vivo, the expression levels of chCMPK2 were up-regulated in several tissues from AIV infected chickens, especially the brain, spleen, bursa, kidney, intestine, heart and thymus, and notable increase of chCMPK2 was detected in the bursa, kidney, duodenum, lung, heart, and thymus during NDV infection. Here, using MDA5 and IFN-β knockdown cells, we demonstrated that as a novel ISG, chCMPK2 could be regulated by the MDA5/IFN-β pathway. The high expression level of exogenous chCMPK2 displayed inhibitory effects on AIV and NDV as well as reduced viral RNA in infected cells. We further demonstrated that Asp135, a key site on the TMK catalytic domain, was identified as critical for the antiviral activities of chCMPK2. Taken together, these data demonstrated that chCMPK2 is involved in the chicken immune system and may play important roles in host anti-viral responses. Frontiers Media S.A. 2022-05-11 /pmc/articles/PMC9132166/ /pubmed/35633731 http://dx.doi.org/10.3389/fmicb.2022.874331 Text en Copyright © 2022 Li, Feng, Liu, Tan, Sun, Song, Liao, Xu, Ren, Ding and Qiu. https://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 Li, Xin Feng, Yiyi Liu, Weiwei Tan, Lei Sun, Yingjie Song, Cuiping Liao, Ying Xu, Chenggang Ren, Tao Ding, Chan Qiu, Xusheng A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title | A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title_full | A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title_fullStr | A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title_full_unstemmed | A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title_short | A Role for the Chicken Interferon-Stimulated Gene CMPK2 in the Host Response Against Virus Infection |
title_sort | role for the chicken interferon-stimulated gene cmpk2 in the host response against virus infection |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9132166/ https://www.ncbi.nlm.nih.gov/pubmed/35633731 http://dx.doi.org/10.3389/fmicb.2022.874331 |
work_keys_str_mv | AT lixin aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT fengyiyi aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT liuweiwei aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT tanlei aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT sunyingjie aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT songcuiping aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT liaoying aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT xuchenggang aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT rentao aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT dingchan aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT qiuxusheng aroleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT lixin roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT fengyiyi roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT liuweiwei roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT tanlei roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT sunyingjie roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT songcuiping roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT liaoying roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT xuchenggang roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT rentao roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT dingchan roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection AT qiuxusheng roleforthechickeninterferonstimulatedgenecmpk2inthehostresponseagainstvirusinfection |