Back to Search Start Over

Anti-tumour immunity controlled through mRNA m.sup.6A methylation and YTHDF1 in dendritic cells

Authors :
Han, Dali
Liu, Jun
Chen, Chuanyuan
Dong, Lihui
Liu, Yi
Chang, Renbao
Huang, Xiaona
Source :
Nature. February, 2019, Vol. 566 Issue 7743, p270, 5 p.
Publication Year :
2019

Abstract

There is growing evidence that tumour neoantigens have important roles in generating spontaneous antitumour immune responses and predicting clinical responses to immunotherapies.sup.1,2. Despite the presence of numerous neoantigens in patients, complete tumour elimination is rare, owing to failures in mounting a sufficient and lasting antitumour immune response.sup.3,4. Here we show that durable neoantigen-specific immunity is regulated by mRNA N.sup.6-methyadenosine (m.sup.6A) methylation through the m.sup.6A-binding protein YTHDF1.sup.5. In contrast to wild-type mice, Ythdf1-deficient mice show an elevated antigen-specific CD8.sup.+ T cell antitumour response. Loss of YTHDF1 in classical dendritic cells enhanced the cross-presentation of tumour antigens and the cross-priming of CD8.sup.+ T cells in vivo. Mechanistically, transcripts encoding lysosomal proteases are marked by m.sup.6A and recognized by YTHDF1. Binding of YTHDF1 to these transcripts increases the translation of lysosomal cathepsins in dendritic cells, and inhibition of cathepsins markedly enhances cross-presentation of wild-type dendritic cells. Furthermore, the therapeutic efficacy of PD-L1 checkpoint blockade is enhanced in Ythdf1.sup.-/- mice, implicating YTHDF1 as a potential therapeutic target in anticancer immunotherapy.The m.sup.6A reader protein YTHDF1 suppresses the clearance of tumour cells by enhancing the translation of lysosomal proteases in dendritic cells and thereby suppressing tumour antigen presentation.<br />Author(s): Dali Han [sup.1] [sup.2] [sup.3] , Jun Liu [sup.4] [sup.5] [sup.6] , Chuanyuan Chen [sup.1] [sup.2] [sup.3] , Lihui Dong [sup.7] , Yi Liu [sup.7] , Renbao Chang [sup.1] [...]

Details

Language :
English
ISSN :
00280836
Volume :
566
Issue :
7743
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.574097088
Full Text :
https://doi.org/10.1038/s41586-019-0916-x