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An Erg-driven transcriptional program controls B cell lymphopoiesis.

Authors :
Ng, AP
Coughlan, HD
Hediyeh-Zadeh, S
Behrens, K
Johanson, TM
Low, MSY
Bell, CC
Gilan, O
Chan, Y-C
Kueh, AJ
Boudier, T
Feltham, R
Gabrielyan, A
DiRago, L
Hyland, CD
Ierino, H
Mifsud, S
Viney, E
Willson, T
Dawson, MA
Allan, RS
Herold, MJ
Rogers, K
Tarlinton, DM
Smyth, GK
Davis, MJ
Nutt, SL
Alexander, WS
Ng, AP
Coughlan, HD
Hediyeh-Zadeh, S
Behrens, K
Johanson, TM
Low, MSY
Bell, CC
Gilan, O
Chan, Y-C
Kueh, AJ
Boudier, T
Feltham, R
Gabrielyan, A
DiRago, L
Hyland, CD
Ierino, H
Mifsud, S
Viney, E
Willson, T
Dawson, MA
Allan, RS
Herold, MJ
Rogers, K
Tarlinton, DM
Smyth, GK
Davis, MJ
Nutt, SL
Alexander, WS
Publication Year :
2020

Abstract

B lymphoid development is initiated by the differentiation of hematopoietic stem cells into lineage committed progenitors, ultimately generating mature B cells. This highly regulated process generates clonal immunological diversity via recombination of immunoglobulin V, D and J gene segments. While several transcription factors that control B cell development and V(D)J recombination have been defined, how these processes are initiated and coordinated into a precise regulatory network remains poorly understood. Here, we show that the transcription factor ETS Related Gene (Erg) is essential for early B lymphoid differentiation. Erg initiates a transcriptional network involving the B cell lineage defining genes, Ebf1 and Pax5, which directly promotes expression of key genes involved in V(D)J recombination and formation of the B cell receptor. Complementation of Erg deficiency with a productively rearranged immunoglobulin gene rescued B lineage development, demonstrating that Erg is an essential and stage-specific regulator of the gene regulatory network controlling B lymphopoiesis.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1315705847
Document Type :
Electronic Resource