Mapping the developing human immune system across organs.


Journal

Science (New York, N.Y.)
ISSN: 1095-9203
Titre abrégé: Science
Pays: United States
ID NLM: 0404511

Informations de publication

Date de publication:
03 06 2022
Historique:
pubmed: 14 5 2022
medline: 7 6 2022
entrez: 13 5 2022
Statut: ppublish

Résumé

Single-cell genomics studies have decoded the immune cell composition of several human prenatal organs but were limited in describing the developing immune system as a distributed network across tissues. We profiled nine prenatal tissues combining single-cell RNA sequencing, antigen-receptor sequencing, and spatial transcriptomics to reconstruct the developing human immune system. This revealed the late acquisition of immune-effector functions by myeloid and lymphoid cell subsets and the maturation of monocytes and T cells before peripheral tissue seeding. Moreover, we uncovered system-wide blood and immune cell development beyond primary hematopoietic organs, characterized human prenatal B1 cells, and shed light on the origin of unconventional T cells. Our atlas provides both valuable data resources and biological insights that will facilitate cell engineering, regenerative medicine, and disease understanding.

Identifiants

pubmed: 35549310
doi: 10.1126/science.abo0510
pmc: PMC7612819
mid: EMS144959
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

eabo0510

Subventions

Organisme : Wellcome Trust
ID : 220268
Pays : United Kingdom
Organisme : Wellcome Trust
ID : 221052
Pays : United Kingdom
Organisme : Wellcome Trust
ID : 206194
Pays : United Kingdom
Organisme : European Research Council
ID : 646794
Pays : International
Organisme : Medical Research Council
ID : MR/S035842/1
Pays : United Kingdom
Organisme : Department of Health
ID : RP-2017-08-ST2-002
Pays : United Kingdom
Organisme : Wellcome Trust
ID : 107931
Pays : United Kingdom
Organisme : Wellcome Trust
ID : 211276
Pays : United Kingdom

Commentaires et corrections

Type : CommentIn
Type : CommentIn

Références

Nat Biotechnol. 2022 Feb;40(2):163-166
pubmed: 35132262
Immunity. 2012 Jan 27;36(1):13-21
pubmed: 22284417
Cell Stem Cell. 2019 Mar 7;24(3):376-389.e8
pubmed: 30661959
Science. 2020 Nov 13;370(6518):
pubmed: 33184181
Allergy. 2000 Aug;55(8):688-97
pubmed: 10955693
Nature. 2019 Oct;574(7778):365-371
pubmed: 31597962
Science. 2021 Jan 22;371(6527):
pubmed: 33479125
Immunity. 2001 Aug;15(2):323-34
pubmed: 11520466
Genes Dev. 1996 Apr 15;10(8):948-62
pubmed: 8608942
J Exp Med. 2016 Jul 25;213(8):1399-407
pubmed: 27432943
Nat Neurosci. 2021 Sep;24(9):1225-1234
pubmed: 34253922
Front Immunol. 2012 May 25;3:122
pubmed: 22654880
Nature. 2021 Jul;595(7868):501-510
pubmed: 34290426
Nat Commun. 2019 Jun 3;10(1):2395
pubmed: 31160568
Front Immunol. 2019 Nov 20;10:2700
pubmed: 31824495
Sci Immunol. 2022 Jan 07;7(67):eabf7777
pubmed: 34995099
Nat Rev Immunol. 2011 Jan;11(1):34-46
pubmed: 21151033
Nat Biotechnol. 2022 Jan;40(1):121-130
pubmed: 34462589
Immunity. 2006 Nov;25(5):701-15
pubmed: 17098202
Proc Natl Acad Sci U S A. 2011 Jan 25;108(4):1468-73
pubmed: 21209332
BMC Bioinformatics. 2013 Apr 15;14:128
pubmed: 23586463
Nat Med. 2021 May;27(5):904-916
pubmed: 33879890
Exp Hematol. 2021 Dec;104:9-16
pubmed: 34687807
J Immunol. 1997 Feb 1;158(3):1175-86
pubmed: 9013957
Science. 2020 May 8;368(6491):600-603
pubmed: 32381715
J Biol Chem. 2003 Mar 7;278(10):8508-15
pubmed: 12496258
Nat Biotechnol. 2019 Apr;37(4):451-460
pubmed: 30899105
Cell. 2021 Jun 24;184(13):3394-3409.e20
pubmed: 34077752
Nat Immunol. 2019 Mar;20(3):301-312
pubmed: 30664737
Science. 2019 Feb 15;363(6428):748-753
pubmed: 30765568
Front Genet. 2021 Nov 15;12:781272
pubmed: 34868271
Proc Natl Acad Sci U S A. 2015 Feb 10;112(6):E556-65
pubmed: 25617367
Nat Methods. 2022 Feb;19(2):171-178
pubmed: 35102346
Nat Immunol. 2006 Mar;7(3):293-301
pubmed: 16429139
Dev Cell. 2017 Feb 6;40(3):221-233
pubmed: 28171746
Nat Biotechnol. 2022 Feb;40(2):245-253
pubmed: 34594043
Science. 2017 Apr 21;356(6335):
pubmed: 28428369
Bioinformatics. 2020 Sep 15;36(18):4817-4818
pubmed: 32614448
Science. 2016 Sep 9;353(6304):
pubmed: 27492475
Genome Biol. 2018 Feb 6;19(1):15
pubmed: 29409532
J Blood Med. 2010;1:13-9
pubmed: 22282679
Int J Cancer. 2006 Apr 15;118(8):1869-76
pubmed: 16284949
J Clin Immunol. 2021 Jul;41(5):881-895
pubmed: 33987750
Immunity. 2021 Dec 14;54(12):2784-2794.e6
pubmed: 34626548
EMBO J. 1995 Apr 18;14(8):1680-9
pubmed: 7737121
Cell Rep. 2017 Jun 6;19(10):2157-2173
pubmed: 28591585
Semin Immunol. 2008 Jun;20(3):164-70
pubmed: 18424165
Nat Biotechnol. 2022 May;40(5):661-671
pubmed: 35027729
Science. 2021 Jul 23;373(6553):
pubmed: 34083450
J Exp Med. 2016 Oct 17;213(11):2293-2314
pubmed: 27811056
Nat Methods. 2018 Dec;15(12):1053-1058
pubmed: 30504886
Bioinformatics. 2021 Apr 5;36(24):5701-5702
pubmed: 33295604
Proc Natl Acad Sci U S A. 2009 Apr 7;106(14):5773-8
pubmed: 19307589
Curr Opin Immunol. 2011 Apr;23(2):220-7
pubmed: 21257299
Development. 2013 Jun;140(12):2463-7
pubmed: 23715539
Nature. 2021 Sep;597(7875):250-255
pubmed: 34497389
Immunity. 2019 Nov 19;51(5):930-948.e6
pubmed: 31604687
Cell Res. 2019 Nov;29(11):881-894
pubmed: 31501518
Dev Cell. 2020 Dec 21;55(6):771-783.e5
pubmed: 33290721
J Exp Med. 1983 Jan 1;157(1):202-18
pubmed: 6600267
Bioinformatics. 2010 Jan 1;26(1):139-40
pubmed: 19910308
Nat Genet. 2021 Dec;53(12):1698-1711
pubmed: 34857954
Science. 2020 Feb 21;367(6480):
pubmed: 32079746
Nat Commun. 2021 Apr 16;12(1):2308
pubmed: 33863906
Cell Syst. 2019 Apr 24;8(4):281-291.e9
pubmed: 30954476
J Exp Med. 1988 Aug 1;168(2):811-6
pubmed: 3261779
Nature. 1996 Aug 15;382(6592):635-8
pubmed: 8757135
Nat Immunol. 2016 May;17(5):565-73
pubmed: 27043411
Int J Clin Exp Pathol. 2017 Nov 01;10(11):11288-11299
pubmed: 31966483
Bioinformatics. 2015 Oct 15;31(20):3356-8
pubmed: 26069265
Eur J Immunol. 1989 Mar;19(3):507-13
pubmed: 2785046
Nat Methods. 2019 May;16(5):409-412
pubmed: 31011186
J Exp Med. 2021 Apr 5;218(4):
pubmed: 33635312
Nat Methods. 2020 Jun;17(6):615-620
pubmed: 32366989
J Exp Med. 2011 Jan 17;208(1):67-80
pubmed: 21220451
Curr Opin Immunol. 2018 Apr;51:24-31
pubmed: 29414528
Exp Cell Res. 2016 Feb 1;341(1):105-109
pubmed: 26615957
Science. 2019 Sep 27;365(6460):1461-1466
pubmed: 31604275
APMIS. 2002 May;110(5):355-71
pubmed: 12076253
Ann N Y Acad Sci. 2013 May;1285:97-114
pubmed: 23692567
Adv Cancer Res. 2010;106:91-111
pubmed: 20399957
Nat Methods. 2022 Feb;19(2):159-170
pubmed: 35027767
Nat Commun. 2018 Oct 22;9(1):4383
pubmed: 30348985
Sci Rep. 2019 Mar 26;9(1):5233
pubmed: 30914743
Proc Natl Acad Sci U S A. 2011 Aug 9;108(32):13241-6
pubmed: 21788511
Sci Immunol. 2021 Apr 23;6(58):
pubmed: 33893173
Glia. 2020 Apr;68(4):740-755
pubmed: 31846124
Bioinformatics. 2020 Feb 1;36(3):964-965
pubmed: 31400197
Nat Commun. 2021 Sep 28;12(1):5692
pubmed: 34584091
Nature. 2021 Oct;598(7880):327-331
pubmed: 34588693
Nat Protoc. 2020 Apr;15(4):1484-1506
pubmed: 32103204
Nature. 2016 Oct 20;538(7625):392-396
pubmed: 27732581
Proc Natl Acad Sci U S A. 2015 Feb 24;112(8):E862-70
pubmed: 25675496
Nat Rev Immunol. 2002 Oct;2(10):760-72
pubmed: 12360214
J Exp Med. 2010 Jan 18;207(1):237-46
pubmed: 20038602
Genome Biol. 2020 Feb 12;21(1):36
pubmed: 32051003

Auteurs

Chenqu Suo (C)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Department of Paediatrics, Cambridge University Hospitals, Cambridge, UK.

Emma Dann (E)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Issac Goh (I)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

Laura Jardine (L)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.
Haematology Department, Freeman Hospital, Newcastle upon Tyne Hospitals NHS Foundation Trust, Newcastle upon Tyne, UK.

Vitalii Kleshchevnikov (V)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Jong-Eun Park (JE)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea.

Rachel A Botting (RA)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

Emily Stephenson (E)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

Justin Engelbert (J)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

Zewen Kelvin Tuong (ZK)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.

Krzysztof Polanski (K)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Nadav Yayon (N)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
European Molecular Biology Laboratory European Bioinformatics Institute, Hinxton, Cambridge, UK.

Chuan Xu (C)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Ondrej Suchanek (O)

Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.

Rasa Elmentaite (R)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Cecilia Domínguez Conde (C)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Peng He (P)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
European Molecular Biology Laboratory European Bioinformatics Institute, Hinxton, Cambridge, UK.

Sophie Pritchard (S)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Mohi Miah (M)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

Corina Moldovan (C)

Department of Cellular Pathology, Newcastle upon Tyne Hospitals NHS Foundation Trust, Newcastle upon Tyne, UK.

Alexander S Steemers (AS)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Pavel Mazin (P)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Martin Prete (M)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.

Dave Horsfall (D)

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

John C Marioni (JC)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
European Molecular Biology Laboratory European Bioinformatics Institute, Hinxton, Cambridge, UK.
Cancer Research UK Cambridge Institute, Li Ka Shing Centre, University of Cambridge, Cambridge, UK.

Menna R Clatworthy (MR)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.

Muzlifah Haniffa (M)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.
Department of Dermatology and National Institute for Health Research (NIHR) Newcastle Biomedical Research Centre, Newcastle upon Tyne Hospitals NHS Foundation Trust, Newcastle upon Tyne, UK.

Sarah A Teichmann (SA)

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Theory of Condensed Matter, Cavendish Laboratory, Department of Physics, University of Cambridge, Cambridge, UK.

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