TY - JOUR
T1 - Screening for genes that regulate the differentiation of human megakaryocytic lineage cells
AU - Zhu, Fangfang
AU - Feng, Mingye
AU - Sinha, Rahul
AU - Seita, Jun
AU - Mori, Yasuo
AU - Weissman, Irving L.
N1 - Funding Information:
ACKNOWLEDGMENTS. We thank Tal Raveh for her help in editing this manuscript; Terry Storm and Tejaswitha Naik for laboratory management; Patty Lovelace for help with flow cytometry; and the FACS core at Stanford Institute for Stem Cell Biology and Regenerative Medicine. This work is supported by National Institutes of Health (NIH) Grants U01-HL099999-07 and R01-CA086065 (to I.L.W.) and the Ludwig Foundation. F.Z. is a Seibel Scholar of the Seibel Stem Cell Institute. This work is also supported by NIH Pathway to Independence Award R00CA201075 (to M.F.) and the Damon Runyon–Dale F. Frey Award for Breakthrough Scientists DFS-22-16 (to M.F.).
Publisher Copyright:
© 2018 National Academy of Sciences. All rights reserved.
PY - 2018/10/2
Y1 - 2018/10/2
N2 - Different combinations of transcription factors (TFs) function at each stage of hematopoiesis, leading to distinct expression patterns of lineage-specific genes. The identification of such regulators and their functions in hematopoiesis remain largely unresolved. In this study, we utilized screening approaches to study the transcriptional regulators of megakaryocyte progenitor (MkP) generation, a key step before platelet production. Promising candidate genes were generated from a microarray platform gene expression commons and individually manipulated in human hematopoietic stem and progenitor cells (HSPCs). Deletion of some of the candidate genes (the hit genes) by CRISPR/Cas9 led to decreased MkP generation during HSPC differentiation, while more MkPs were produced when some hit genes were overexpressed in HSPCs.We then demonstrated that overexpression of these genes can increase the frequency of mature megakaryocytic colonies by functional colony forming unitmegakaryocyte (CFU-Mk) assay and the release of platelets after in vitro maturation. Finally, we showed that the histone deacetylase inhibitors could also increase MkP differentiation, possibly by regulating some of the newly identified TFs. Therefore, identification of such regulators will advance the understanding of basic mechanisms of HSPC differentiation and conceivably enable the generation and maturation of megakaryocytes and platelets in vitro.
AB - Different combinations of transcription factors (TFs) function at each stage of hematopoiesis, leading to distinct expression patterns of lineage-specific genes. The identification of such regulators and their functions in hematopoiesis remain largely unresolved. In this study, we utilized screening approaches to study the transcriptional regulators of megakaryocyte progenitor (MkP) generation, a key step before platelet production. Promising candidate genes were generated from a microarray platform gene expression commons and individually manipulated in human hematopoietic stem and progenitor cells (HSPCs). Deletion of some of the candidate genes (the hit genes) by CRISPR/Cas9 led to decreased MkP generation during HSPC differentiation, while more MkPs were produced when some hit genes were overexpressed in HSPCs.We then demonstrated that overexpression of these genes can increase the frequency of mature megakaryocytic colonies by functional colony forming unitmegakaryocyte (CFU-Mk) assay and the release of platelets after in vitro maturation. Finally, we showed that the histone deacetylase inhibitors could also increase MkP differentiation, possibly by regulating some of the newly identified TFs. Therefore, identification of such regulators will advance the understanding of basic mechanisms of HSPC differentiation and conceivably enable the generation and maturation of megakaryocytes and platelets in vitro.
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U2 - 10.1073/pnas.1805434115
DO - 10.1073/pnas.1805434115
M3 - Article
C2 - 30150396
AN - SCOPUS:85054390625
SN - 0027-8424
VL - 115
SP - E9308-E9316
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 40
ER -