TY - JOUR
T1 - Bach2 promotes B cell receptor–induced proliferation of b lymphocytes and represses cyclin-dependent kinase inhibitors
AU - Miura, Yuichi
AU - Morooka, Mizuho
AU - Sax, Nicolas
AU - Roychoudhuri, Rahul
AU - Ito, Ari
AU - Brydun, Andrey
AU - Funayama, Ryo
AU - Nakayama, Keiko
AU - Satomi, Susumu
AU - Matsumoto, Mitsuyo
AU - Igarashi, Kazuhiko
AU - Muto, Akihiko
N1 - Funding Information:
Astellas Foundation for Research on Metabolic Disorders, and the Naito Foundation. R.R. is supported by the Wellcome Trust/Royal Society (Grant 105663/Z/14/Z), the UK Biotechnology and Biological Sciences Research Council (Grant BB/N007794/1), and Cancer Research UK (Grant C52623/A22597).
Funding Information:
This work was supported by Grants-in-Aid (15H02506, 25670156, 24390066, 23116003, 21249014, 17054028, 16K08572, and 25460352) and the Network Medicine Global-COE Program from the Ministry of Education, Culture, Sports, Science and Technology of Japan and by grants from the Uehara Foundation, the Takeda Foundation, the NOVARTIS Foundation (Japan) for the Promotion of Science, the Astellas Foundation for Research on Metabolic Disorders, and the Naito Foundation. R.R. is supported by the Wellcome Trust/Royal Society (Grant 105663/Z/14/Z), the UK Biotechnology and Biological Sciences Research Council (Grant BB/N007794/1), and Cancer Research UK (Grant C52623/A22597).
Funding Information:
This work was supported by Grants-in-Aid (15H02506, 25670156, 24390066, 23116003, 21249014, 17054028, 16K08572, and 25460352) and the Network Medicine Global-COE Program from the Ministry of Education, Culture, Sports, Science and Technology of Japan and by grants from the Uehara Foundation, the Takeda Foundation, the NOVARTIS Foundation (Japan) for the Promotion of Science, the
Publisher Copyright:
Copyright © 2018 by The American Association of Immunologists, Inc.
PY - 2018/4/15
Y1 - 2018/4/15
N2 - BTB and CNC homology 2 (Bach2) is a transcriptional repressor that is required for the formation of the germinal center (GC) and reactions, including class switch recombination and somatic hypermutation of Ig genes in B cells, within the GC. Although BCR-induced proliferation is essential for GC reactions, the function of Bach2 in regulating B cell proliferation has not been elucidated. In this study, we demonstrate that Bach2 is required to sustain high levels of B cell proliferation in response to BCR signaling. Following BCR engagement in vitro, B cells from Bach2-deficient (Bach2 2 / 2 ) mice showed lower incorporation of BrdU and reduced cell cycle progression compared with wild-type cells. Bach2 2 / 2 B cells also underwent increased apoptosis, as evidenced by an elevated frequency of sub-G 1 cells and early apoptotic cells. Transcriptome analysis of BCR-engaged B cells from Bach2 2 / 2 mice revealed reduced expression of the antiapoptotic gene Bcl2l1 encoding Bcl-x L and elevated expression of cyclin-dependent kinase inhibitor (CKI) family genes, including Cdkn1a, Cdkn2a, and Cdkn2b. Reconstitution of Bcl-x L expression partially rescued the proliferation defect of Bach2 2 / 2 B cells. Chromatin immunoprecipitation experiments showed that Bach2 bound to the CKI family genes, indicating that these genes are direct repression targets of Bach2. These findings identify Bach2 as a requisite factor for sustaining high levels of BCR-induced proliferation, survival, and cell cycle progression, and it promotes expression of Bcl-x L and repression of CKI genes. BCR-induced proliferation defects may contribute to the impaired GC formation observed in Bach2 2 / 2 mice.
AB - BTB and CNC homology 2 (Bach2) is a transcriptional repressor that is required for the formation of the germinal center (GC) and reactions, including class switch recombination and somatic hypermutation of Ig genes in B cells, within the GC. Although BCR-induced proliferation is essential for GC reactions, the function of Bach2 in regulating B cell proliferation has not been elucidated. In this study, we demonstrate that Bach2 is required to sustain high levels of B cell proliferation in response to BCR signaling. Following BCR engagement in vitro, B cells from Bach2-deficient (Bach2 2 / 2 ) mice showed lower incorporation of BrdU and reduced cell cycle progression compared with wild-type cells. Bach2 2 / 2 B cells also underwent increased apoptosis, as evidenced by an elevated frequency of sub-G 1 cells and early apoptotic cells. Transcriptome analysis of BCR-engaged B cells from Bach2 2 / 2 mice revealed reduced expression of the antiapoptotic gene Bcl2l1 encoding Bcl-x L and elevated expression of cyclin-dependent kinase inhibitor (CKI) family genes, including Cdkn1a, Cdkn2a, and Cdkn2b. Reconstitution of Bcl-x L expression partially rescued the proliferation defect of Bach2 2 / 2 B cells. Chromatin immunoprecipitation experiments showed that Bach2 bound to the CKI family genes, indicating that these genes are direct repression targets of Bach2. These findings identify Bach2 as a requisite factor for sustaining high levels of BCR-induced proliferation, survival, and cell cycle progression, and it promotes expression of Bcl-x L and repression of CKI genes. BCR-induced proliferation defects may contribute to the impaired GC formation observed in Bach2 2 / 2 mice.
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U2 - 10.4049/jimmunol.1601863
DO - 10.4049/jimmunol.1601863
M3 - Article
C2 - 29540581
AN - SCOPUS:85046832303
SN - 0022-1767
VL - 200
SP - 2882
EP - 2893
JO - Journal of Immunology
JF - Journal of Immunology
IS - 8
ER -