Maturation signatures of conventional dendritic cell subtypes in COVID-19 suggest direct viral sensing

被引:18
作者
Marongiu, Laura [1 ,2 ]
Protti, Giulia [1 ,2 ]
Facchini, Fabio A. [1 ]
Valache, Mihai [1 ]
Mingozzi, Francesca [1 ]
Ranzani, Valeria [2 ]
Putignano, Anna Rita [2 ]
Salviati, Lorenzo [1 ,2 ]
Bevilacqua, Valeria [2 ]
Curti, Serena [2 ]
Crosti, Mariacristina [2 ]
D'Angio, Mariella [3 ,4 ]
Bettini, Laura Rachele [3 ,4 ]
Biondi, Andrea [3 ,4 ]
Nespoli, Luca [5 ]
Tamini, Nicolo [5 ]
Clementi, Nicola [6 ,7 ]
Mancini, Nicasio [6 ,7 ]
Abrignani, Sergio [2 ,8 ]
Spreafico, Roberto [9 ]
Granucci, Francesca [1 ,2 ]
Sarnicola, Maria Lucia [2 ]
机构
[1] Univ Milano Bicocca, Dept Biotechnol & Biosci, Milan, Italy
[2] Natl Inst Mol Genet Romeo & Enr Invernizzi, Milan, Italy
[3] Univ Milano Bicocca, Pediat Dept, EuroBloodNet, MetabERN,Fdn MBBM Osped, Monza, Italy
[4] Univ Milano Bicocca, Ctr Tettamanti European Reference Network PaedCan, EuroBloodNet, MetabERN,Fdn MBBM Osped, Monza, Italy
[5] Univ Milano Bicocca, ASST San Gerardo Hosp, Sch Med & Surg, Milan, Italy
[6] Univ Vita Salute San Raffaele, Lab Med Microbiol & Virol, Milan, Italy
[7] IRCCS San Raffaele Hosp, Milan, Italy
[8] Univ Milan, Dept Clin Sci & Community Hlth, Milan, Italy
[9] Univ Calif Los Angeles, Inst Quantitat & Computat Biosci, Los Angeles, CA USA
关键词
COVID-19; dendritic cells; single cell transcriptomics; INFECTION; SARS-COV-2; SURVIVAL; IMMUNITY; SUBSETS; MILD;
D O I
10.1002/eji.202149298
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Growing evidence suggests that conventional dendritic cells (cDCs) undergo aberrant maturation in COVID-19, which negatively affects T-cell activation. The presence of effector T cells in patients with mild disease and dysfunctional T cells in severely ill patients suggests that adequate T-cell responses limit disease severity. Understanding how cDCs cope with SARS-CoV-2 can help elucidate how protective immune responses are generated. Here, we report that cDC2 subtypes exhibit similar infection-induced gene signatures, with the upregulation of IFN-stimulated genes and IL-6 signaling pathways. Furthermore, comparison of cDCs between patients with severe and mild disease showed severely ill patients to exhibit profound downregulation of genes encoding molecules involved in antigen presentation, such as MHCII, TAP, and costimulatory proteins, whereas we observed the opposite for proinflammatory molecules, such as complement and coagulation factors. Thus, as disease severity increases, cDC2s exhibit enhanced inflammatory properties and lose antigen presentation capacity. Moreover, DC3s showed upregulation of anti-apoptotic genes and accumulated during infection. Direct exposure of cDC2s to the virus in vitro recapitulated the activation profile observed in vivo. Our findings suggest that SARS-CoV-2 interacts directly with cDC2s and implements an efficient immune escape mechanism that correlates with disease severity by downregulating crucial molecules required for T-cell activation.
引用
收藏
页码:109 / 122
页数:14
相关论文
共 54 条
[1]   Genetic models of human and mouse dendritic cell development and function [J].
Anderson, David A., III ;
Dutertre, Charles-Antoine ;
Ginhoux, Florent ;
Murphy, Kenneth M. .
NATURE REVIEWS IMMUNOLOGY, 2021, 21 (02) :101-115
[2]   Systems biological assessment of immunity to mild versus severe COVID-19 infection in humans [J].
Arunachalam, Prabhu S. ;
Wimmers, Florian ;
Mok, Chris Ka Pun ;
Perera, Ranawaka A. P. M. ;
Scott, Madeleine ;
Hagan, Thomas ;
Sigal, Natalia ;
Feng, Yupeng ;
Bristow, Laurel ;
Tsang, Owen Tak-Yin ;
Wagh, Dhananjay ;
Coller, John ;
Pellegrini, Kathryn L. ;
Kazmin, Dmitri ;
Alaaeddine, Ghina ;
Leung, Wai Shing ;
Chan, Jacky Man Chun ;
Chik, Thomas Shiu Hong ;
Choi, Chris Yau Chung ;
Huerta, Christopher ;
McCullough, Michele Paine ;
Lv, Huibin ;
Anderson, Evan ;
Edupuganti, Srilatha ;
Upadhyay, Amit A. ;
Bosinger, Steve E. ;
Maecker, Holden Terry ;
Khatri, Purvesh ;
Rouphael, Nadine ;
Peiris, Malik ;
Pulendran, Bali .
SCIENCE, 2020, 369 (6508) :1210-+
[3]   scds: computational annotation of doublets in single-cell RNA sequencing data [J].
Bais, Abha S. ;
Kostka, Dennis .
BIOINFORMATICS, 2020, 36 (04) :1150-1158
[4]   Expansion of a BDCA1+CD14+ Myeloid Cell Population in Melanoma Patients May Attenuate the Efficacy of Dendritic Cell Vaccines [J].
Bakdash, Ghaith ;
Buschow, Sonja I. ;
Gorris, Mark A. J. ;
Halilovic, Altuna ;
Hato, Stanleyson V. ;
Skold, Annette E. ;
Schreibelt, Gerty ;
Sittig, Simone P. ;
Torensma, Ruurd ;
Duiveman-de Boer, Tjitske ;
Schroeder, Christoph ;
Smits, Evelien L. ;
Figdor, Carl G. ;
de Vries, I. Jolanda M. .
CANCER RESEARCH, 2016, 76 (15) :4332-4346
[5]   Transcriptional and Functional Analysis of CD1c+ Human Dendritic Cells Identifies a CD163+ Subset Priming CD8+CD103+ T Cells [J].
Bourdely, Pierre ;
Anselmi, Giorgio ;
Vaivode, Kristine ;
Ramos, Rodrigo Nalio ;
Missolo-Koussou, Yoann ;
Hidalgo, Sofia ;
Tosselo, Jimena ;
Nunez, Nicolas ;
Richer, Wilfrid ;
Vincent-Salomon, Anne ;
Saxena, Alka ;
Wood, Kristie ;
Lladser, Alvaro ;
Piaggio, Eliane ;
Helft, Julie ;
Guermonprez, Pierre .
IMMUNITY, 2020, 53 (02) :335-+
[6]   Dendritic Cells Revisited [J].
Cabeza-Cabrerizo, Mar ;
Cardoso, Ana ;
Minutti, Carlos M. ;
da Costa, Mariana Pereira ;
Reis e Sousa, Caetano .
ANNUAL REVIEW OF IMMUNOLOGY, VOL 39, 2021, 39 :131-166
[7]   The receptor DNGR-1 signals for phagosomal rupture to promote cross-presentation of dead-cell-associated antigens [J].
Canton, Johnathan ;
Blees, Hanna ;
Henry, Conor M. ;
Buck, Michael D. ;
Schulz, Oliver ;
Rogers, Neil C. ;
Childs, Eleanor ;
Zelenay, Santiago ;
Rhys, Hefin ;
Domart, Marie-Charlotte ;
Collinson, Lucy ;
Alloatti, Andres ;
Ellison, Cara J. ;
Amigorena, Sebastian ;
Papayannopoulos, Venizelos ;
Thomas, David C. ;
Randow, Felix ;
Reis e Sousa, Caetano .
NATURE IMMUNOLOGY, 2021, 22 (02) :140-U56
[8]   Guidelines for the use of flow cytometry and cell sorting in immunological studies [J].
Cossarizza, Andrea ;
Chang, Hyun-Dong ;
Radbruch, Andreas ;
Akdis, Mubeccel ;
Andrae, Immanuel ;
Annunziato, Francesco ;
Bacher, Petra ;
Barnaba, Vincenzo ;
Battistini, Luca ;
Bauer, Wolfgang M. ;
Baumgart, Sabine ;
Becher, Burkhard ;
Beisker, Wolfgang ;
Berek, Claudia ;
Blanco, Alfonso ;
Borsellino, Giovanna ;
Boulais, Philip E. ;
Brinkman, Ryan R. ;
Buescher, Martin ;
Busch, Dirk H. ;
Bushnell, Timothy P. ;
Cao, Xuetao ;
Cavani, Andrea ;
Chattopadhyay, Pratip K. ;
Cheng, Qingyu ;
Chow, Sue ;
Clerici, Mario ;
Cooke, Anne ;
Cosma, Antonio ;
Cosmi, Lorenzo ;
Cumano, Ana ;
Dang, Van Duc ;
Davies, Derek ;
De Biasi, Sara ;
Del Zotto, Genny ;
Della Bella, Silvia ;
Dellabona, Paolo ;
Deniz, Gunnur ;
Dessing, Mark ;
Diefenbach, Andreas ;
Di Santo, James ;
Dieli, Francesco ;
Dolf, Andreas ;
Donnenberg, Vera S. ;
Doerner, Thomas ;
Ehrhardt, Gotz R. A. ;
Endl, Elmar ;
Engel, Pablo ;
Engelhardt, Britta ;
Esser, Charlotte .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2017, 47 (10) :1584-1797
[9]   Differential IRF8 Transcription Factor Requirement Defines Two Pathways of Dendritic Cell Development in Humans [J].
Cytlak, Urszula ;
Resteu, Anastasia ;
Pagan, Sarah ;
Green, Kile ;
Milne, Paul ;
Maisuria, Sheetal ;
McDonald, David ;
Hulme, Gillian ;
Filby, Andrew ;
Carpenter, Benjamin ;
Queen, Rachel ;
Hambleton, Sophie ;
Hague, Rosie ;
Allen, Hana Lango ;
Thaventhiran, James E. D. ;
Doody, Gina ;
Collin, Matthew ;
Bigley, Venetia .
IMMUNITY, 2020, 53 (02) :353-+
[10]   Marked T cell activation, senescence, exhaustion and skewing towards TH17 in patients with COVID-19 pneumonia [J].
De Biasi, Sara ;
Meschiari, Marianna ;
Gibellini, Lara ;
Bellinazzi, Caterina ;
Borella, Rebecca ;
Fidanza, Lucia ;
Gozzi, Licia ;
Iannone, Anna ;
Lo Tartaro, Domenico ;
Mattioli, Marco ;
Paolini, Annamaria ;
Menozzi, Marianna ;
Milic, Jovana ;
Franceschi, Giacomo ;
Fantini, Riccardo ;
Tonelli, Roberto ;
Sita, Marco ;
Sarti, Mario ;
Trenti, Tommaso ;
Brugioni, Lucio ;
Cicchetti, Luca ;
Facchinetti, Fabio ;
Pietrangelo, Antonello ;
Clini, Enrico ;
Girardis, Massimo ;
Guaraldi, Giovanni ;
Mussini, Cristina ;
Cossarizza, Andrea .
NATURE COMMUNICATIONS, 2020, 11 (01)