Regulation of basophil and mast cell development by transcription factors
Basophils and mast cells play important roles in host defense against parasitic infections and allergic responses. Several progenitor populations, either shared or specific, for basophils and/or mast cells have been identified, thus elucidating the developmental pathways of these cells. Multiple tra...
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doaj-3caa86c37b034e7898208956d537f7722020-11-25T01:36:33ZengElsevierAllergology International1323-89302016-04-0165212713410.1016/j.alit.2016.01.006Regulation of basophil and mast cell development by transcription factorsHaruka SasakiDaisuke KurotakiTomohiko TamuraBasophils and mast cells play important roles in host defense against parasitic infections and allergic responses. Several progenitor populations, either shared or specific, for basophils and/or mast cells have been identified, thus elucidating the developmental pathways of these cells. Multiple transcription factors essential for their development and the relationships between them have been also revealed. For example, IRF8 induces GATA2 expression to promote the generation of both basophils and mast cells. The STAT5-GATA2 axis induces C/EBPα and MITF expression, facilitating the differentiation into basophils and mast cells, respectively. In addition, C/EBPα and MITF mutually suppress each other's expression. This review provides an overview of recent advances in our understanding of how transcription factors regulate the development of basophils and mast cells.http://www.sciencedirect.com/science/article/pii/S1323893016000071BasophilsHematopoiesisMast cellsProgenitorsTranscription factors |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Haruka Sasaki Daisuke Kurotaki Tomohiko Tamura |
spellingShingle |
Haruka Sasaki Daisuke Kurotaki Tomohiko Tamura Regulation of basophil and mast cell development by transcription factors Allergology International Basophils Hematopoiesis Mast cells Progenitors Transcription factors |
author_facet |
Haruka Sasaki Daisuke Kurotaki Tomohiko Tamura |
author_sort |
Haruka Sasaki |
title |
Regulation of basophil and mast cell development by transcription factors |
title_short |
Regulation of basophil and mast cell development by transcription factors |
title_full |
Regulation of basophil and mast cell development by transcription factors |
title_fullStr |
Regulation of basophil and mast cell development by transcription factors |
title_full_unstemmed |
Regulation of basophil and mast cell development by transcription factors |
title_sort |
regulation of basophil and mast cell development by transcription factors |
publisher |
Elsevier |
series |
Allergology International |
issn |
1323-8930 |
publishDate |
2016-04-01 |
description |
Basophils and mast cells play important roles in host defense against parasitic infections and allergic responses. Several progenitor populations, either shared or specific, for basophils and/or mast cells have been identified, thus elucidating the developmental pathways of these cells. Multiple transcription factors essential for their development and the relationships between them have been also revealed. For example, IRF8 induces GATA2 expression to promote the generation of both basophils and mast cells. The STAT5-GATA2 axis induces C/EBPα and MITF expression, facilitating the differentiation into basophils and mast cells, respectively. In addition, C/EBPα and MITF mutually suppress each other's expression. This review provides an overview of recent advances in our understanding of how transcription factors regulate the development of basophils and mast cells. |
topic |
Basophils Hematopoiesis Mast cells Progenitors Transcription factors |
url |
http://www.sciencedirect.com/science/article/pii/S1323893016000071 |
work_keys_str_mv |
AT harukasasaki regulationofbasophilandmastcelldevelopmentbytranscriptionfactors AT daisukekurotaki regulationofbasophilandmastcelldevelopmentbytranscriptionfactors AT tomohikotamura regulationofbasophilandmastcelldevelopmentbytranscriptionfactors |
_version_ |
1725062357001961472 |