Genomic programming of human neonatal dendritic cells in congenital systemic and in vitro cytomegalovirus infection reveal plastic and robut immune pathway biology responses

dc.contributor.author
Dantoft, Widad
dc.contributor.author
Martínez Vicente, Pablo
dc.contributor.author
Jafali, James
dc.contributor.author
Pérez Martínez, Lara
dc.contributor.author
Martin, Kimberly
dc.contributor.author
Kotzamanis, Konstantinos
dc.contributor.author
Craigon, Marie
dc.contributor.author
Auer, Manfred
dc.contributor.author
Young, Neil T.
dc.contributor.author
Walsh, Paul
dc.contributor.author
Marchant, Arnaud
dc.contributor.author
Angulo Aguado, Ana
dc.contributor.author
Forster, Thorsten
dc.contributor.author
Ghazal, Peter
dc.date.issued
2019-08-28T10:56:07Z
dc.date.issued
2019-08-28T10:56:07Z
dc.date.issued
2017-09-25
dc.date.issued
2019-08-28T10:56:07Z
dc.identifier
1664-3224
dc.identifier
https://hdl.handle.net/2445/138780
dc.identifier
673590
dc.identifier
28993767
dc.description.abstract
Neonates and especially premature infants are highly susceptible to infection but still can have a remarkable resilience that is poorly understood. The view that neonates have an incomplete or deficient immune system is changing. Human neonatal studies are challenging, and elucidating host protective responses and underlying cognate pathway biology, in the context of viral infection in early life, remains to be fully explored. In both resource rich and poor settings, human cytomegalovirus (HCMV) is the most common cause of congenital infection. By using unbiased systems analyses of transcriptomic resources for HCMV neonatal infection, we find the systemic response of a preterm congenital HCMV infection, involves a focused IFN regulatory response associated with dendritic cells. Further analysis of transcriptional-programming of neonatal dendritic cells in response to HCMV infection in culture revealed an early dominant IFN-chemokine regulatory subnetworks, and at later times the plasticity of pathways implicated in cell-cycle control and lipid metabolism. Further, we identify previously unknown suppressed networks associated with infection, including a select group of GPCRs. Functional siRNA viral growth screen targeting 516-GPCRs and subsequent validation identified novel GPCR-dependent antiviral (ADORA1) and proviral (GPR146, RGS16, PTAFR, SCTR, GPR84, GPR85, NMUR2, FZ10, RDS, CCL17, and SORT1) roles. By contrast a gene family cluster of protocadherins is significantly differentially induced in neonatal cells, suggestive of possible immunomodulatory roles. Unexpectedly, programming responses of adult and neonatal dendritic cells, upon HCMV infection, demonstrated comparable quantitative and qualitative responses showing that functionally, neonatal dendritic cell are not overly compromised. However, a delay in responses of neonatal cells for IFN subnetworks in comparison with adult-derived cells are notable, suggestive of subtle plasticity differences. These findings support a set-point control mechanism rather than immaturity for explaining not only neonatal susceptibility but also resilience to infection. In summary, our findings show that neonatal HCMV infection leads to a highly plastic and functional robust programming of dendritic cells in vivo and in vitro. In comparison with adults, a minimal number of subtle quantitative and temporal differences may contribute to variability in host susceptibility and resilience, in a context dependent manner.
dc.format
27 p.
dc.format
application/pdf
dc.language
eng
dc.publisher
Frontiers Media
dc.relation
Reproducció del document publicat a: https://doi.org/10.3389/fimmu.2017.01146
dc.relation
Frontiers in Immunology, 2017, vol. 8, p. 1146
dc.relation
https://doi.org/10.3389/fimmu.2017.01146
dc.rights
cc-by (c) Dantoft, Widad et al., 2017
dc.rights
http://creativecommons.org/licenses/by/3.0/es
dc.rights
info:eu-repo/semantics/openAccess
dc.source
Articles publicats en revistes (Biomedicina)
dc.subject
Infeccions en els infants
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Virus
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Immunitat
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Biologia de sistemes
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Infants prematurs
dc.subject
Infection in children
dc.subject
Viruses
dc.subject
Immunity
dc.subject
Systems biology
dc.subject
Premature infants
dc.title
Genomic programming of human neonatal dendritic cells in congenital systemic and in vitro cytomegalovirus infection reveal plastic and robut immune pathway biology responses
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion


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