In vivo CRISPR screening identifies SAGA complex members as key regulators of hematopoiesis
Abstract
Abstract The biological mechanisms that sustain the vast blood production required for healthy life remain incompletely understood. To search for cell intrinsic regulators of hematopoiesis, we perform a genome-wide in vivo hematopoietic stem and progenitor cell (HSPC)-based CRISPR knockout screen. We discover SAGA complex members, including Tada2b and Taf5l , as key regulators of hematopoiesis. Loss of Tada2b or Taf5l strongly inhibits hematopoiesis in vivo, causing a buildup of immature hematopoietic cells in the bone marrow. The SAGA complex deposits histone H3 lysine 9 acetylation (H3K9ac) and removes histone H2B ubiquitination (H2Bub). Loss of Tada2b leads to a reduction in H3K9ac levels and altered H2Bub enrichment in HSPCs, implicating disruption of SAGA complex activity. This is associated with upregulation of interferon pathway genes, reduced mitochondrial activity, and increased megakaryocyte progenitor cell commitment. Loss of these factors also enhances the cell outgrowth and the interferon pathway in an in vivo human myelodysplastic syndrome cell line model. In summary, this study identifies the SAGA complex as an important regulator of hematopoiesis.
Article Details
Authors (21)
Archana Shankar
Leonid Olender
Ian Hsu
Masashi Miyauchi
Róbert Pálovics
Grace A. Meaker
Satoshi Kaito
Ola Rizq
Hwei Minn Khoo
Yavor Bozhilov
Kyomi J. Igarashi
Joydeep Bhadury
Institute for Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine
Christy Munson
Paul K. Mack
Tze-Kai Tan
Jan Rehwinkel
Atushi Iwama
Tony Wyss-Coray
Hiromitsu Nakauchi
Michael S. Haney
Adam C. Wilkinson