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MyD88-dependent dendritic and epithelial cell crosstalk orchestrates immune responses to allergens.


ABSTRACT: Sensitization to inhaled allergens is dependent on activation of conventional dendritic cells (cDCs) and on the adaptor molecule, MyD88. However, many cell types in the lung express Myd88, and it is unclear how signaling in these different cell types reprograms cDCs and leads to allergic inflammation of the airway. By combining ATAC-seq with RNA profiling, we found that MyD88 signaling in cDCs maintained open chromatin at select loci even at steady state, allowing genes to be rapidly induced during allergic sensitization. A distinct set of genes related to metabolism was indirectly controlled in cDCs through MyD88 signaling in airway epithelial cells (ECs). In mouse models of asthma, Myd88 expression in ECs was critical for eosinophilic inflammation, whereas Myd88 expression in cDCs was required for Th17 cell differentiation and consequent airway neutrophilia. Thus, both cell-intrinsic and cell-extrinsic MyD88 signaling controls gene expression in cDCs and orchestrates immune responses to inhaled allergens.

SUBMITTER: Thomas SY 

PROVIDER: S-EPMC5918466 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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MyD88-dependent dendritic and epithelial cell crosstalk orchestrates immune responses to allergens.

Thomas S Y SY   Whitehead G S GS   Takaku M M   Ward J M JM   Xu X X   Nakano K K   Lyons-Cohen M R MR   Nakano H H   Gowdy K M KM   Wade P A PA   Cook D N DN  

Mucosal immunology 20171025 3


Sensitization to inhaled allergens is dependent on activation of conventional dendritic cells (cDCs) and on the adaptor molecule, MyD88. However, many cell types in the lung express Myd88, and it is unclear how signaling in these different cell types reprograms cDCs and leads to allergic inflammation of the airway. By combining ATAC-seq with RNA profiling, we found that MyD88 signaling in cDCs maintained open chromatin at select loci even at steady state, allowing genes to be rapidly induced dur  ...[more]

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