TY - JOUR
T1 - Polychromic Reporter Mice Reveal Unappreciated Innate Lymphoid Cell Progenitor Heterogeneity and Elusive ILC3 Progenitors in Bone Marrow
AU - Walker, Jennifer A.
AU - Clark, Paula A.
AU - Crisp, Alastair
AU - Barlow, Jillian L.
AU - Szeto, Aydan
AU - Ferreira, Ana C.F.
AU - Rana, Batika M.J.
AU - Jolin, Helen E.
AU - Rodriguez-Rodriguez, Noe
AU - Sivasubramaniam, Meera
AU - Pannell, Richard
AU - Cruickshank, James
AU - Daly, Maria
AU - Haim-Vilmovsky, Liora
AU - Teichmann, Sarah A.
AU - McKenzie, Andrew N.J.
N1 - Publisher Copyright:
© 2019 MRC Laboratory of Molecular Biology
PY - 2019/7/16
Y1 - 2019/7/16
N2 - Innate lymphoid cells (ILCs) play strategic roles in tissue homeostasis and immunity. ILCs arise from lymphoid progenitors undergoing lineage restriction and the development of specialized ILC subsets. We generated “5x polychromILC” transcription factor reporter mice to delineate ILC precursor states by revealing the multifaceted expression of key ILC-associated transcription factors (Id2, Bcl11b, Gata3, RORγt, and RORα) during ILC development in the bone marrow. This approach allowed previously unattained enrichment of rare progenitor subsets and revealed hitherto unappreciated ILC precursor heterogeneity. In vivo and in vitro assays identified precursors with potential to generate all ILC subsets and natural killer (NK) cells, and also permitted discrimination of elusive ILC3 bone marrow antecedents. Single-cell gene expression analysis identified a discrete ILC2-committed population and delineated transition states between early progenitors and a highly heterogeneous ILC1, ILC3, and NK precursor cell cluster. This diversity might facilitate greater lineage potential upon progenitor recruitment to peripheral tissues.
AB - Innate lymphoid cells (ILCs) play strategic roles in tissue homeostasis and immunity. ILCs arise from lymphoid progenitors undergoing lineage restriction and the development of specialized ILC subsets. We generated “5x polychromILC” transcription factor reporter mice to delineate ILC precursor states by revealing the multifaceted expression of key ILC-associated transcription factors (Id2, Bcl11b, Gata3, RORγt, and RORα) during ILC development in the bone marrow. This approach allowed previously unattained enrichment of rare progenitor subsets and revealed hitherto unappreciated ILC precursor heterogeneity. In vivo and in vitro assays identified precursors with potential to generate all ILC subsets and natural killer (NK) cells, and also permitted discrimination of elusive ILC3 bone marrow antecedents. Single-cell gene expression analysis identified a discrete ILC2-committed population and delineated transition states between early progenitors and a highly heterogeneous ILC1, ILC3, and NK precursor cell cluster. This diversity might facilitate greater lineage potential upon progenitor recruitment to peripheral tissues.
KW - bone marrow
KW - ILC development
KW - ILC progenitors
KW - ILC3 progenitor
UR - https://www.scopus.com/pages/publications/85068719007
U2 - 10.1016/j.immuni.2019.05.002
DO - 10.1016/j.immuni.2019.05.002
M3 - Article
C2 - 31128961
AN - SCOPUS:85068719007
SN - 1074-7613
VL - 51
SP - 104-118.e7
JO - Immunity
JF - Immunity
IS - 1
ER -