» Articles » PMID: 29263096

Histone Demethylase LSD1 Regulates Hematopoietic Stem Cells Homeostasis and Protects from Death by Endotoxic Shock

Overview
Specialty Science
Date 2017 Dec 22
PMID 29263096
Citations 18
Authors
Affiliations
Soon will be listed here.
Abstract

Hematopoietic stem cells (HSCs) maintain a quiescent state during homeostasis, but with acute infection, they exit the quiescent state to increase the output of immune cells, the so-called "emergency hematopoiesis." However, HSCs' response to severe infection during septic shock and the pathological impact remain poorly elucidated. Here, we report that the histone demethylase KDM1A/LSD1, serving as a critical regulator of mammalian hematopoiesis, is a negative regulator of the response to inflammation in HSCs during endotoxic shock typically observed during acute bacterial or viral infection. Inflammation-induced LSD1 deficiency results in an acute expansion of a pathological population of hyperproliferative and hyperinflammatory myeloid progenitors, resulting in a septic shock phenotype and acute death. Unexpectedly, in vivo administration of bacterial lipopolysaccharide (LPS) to wild-type mice results in acute suppression of LSD1 in HSCs with a septic shock phenotype that resembles that observed following induced deletion of The suppression of LSD1 in HSCs is caused, at least in large part, by a cohort of inflammation-induced microRNAs. Significantly, reconstitution of mice with bone marrow progenitor cells expressing inhibitors of these inflammation-induced microRNAs blocked the suppression of LSD1 in vivo following acute LPS administration and prevented mortality from endotoxic shock. Our results indicate that LSD1 activators or miRNA antagonists could serve as a therapeutic approach for life-threatening septic shock characterized by dysfunction of HSCs.

Citing Articles

Weighted gene co-expression network analysis reveals the hub genes and molecular mechanism of quiescence.

Apoorvha J, Brindha S, Ganesan M, Roy S 3 Biotech. 2025; 15(2):42.

PMID: 39829641 PMC: 11735823. DOI: 10.1007/s13205-024-04203-3.


RNA modification in normal hematopoiesis and hematologic malignancies.

Chen X, Yuan Y, Zhou F, Li L, Pu J, Jiang X MedComm (2020). 2024; 5(11):e787.

PMID: 39445003 PMC: 11496571. DOI: 10.1002/mco2.787.


An overview of the mechanisms and potential roles of extracellular vesicles in septic shock.

Cao M, Shi M, Zhou B, Jiang H Front Immunol. 2024; 14:1324253.

PMID: 38343439 PMC: 10853337. DOI: 10.3389/fimmu.2023.1324253.


Demethylase-independent roles of LSD1 in regulating enhancers and cell fate transition.

Zeng C, Chen J, Cooke E, Subuddhi A, Roodman E, Chen F Nat Commun. 2023; 14(1):4944.

PMID: 37607921 PMC: 10444793. DOI: 10.1038/s41467-023-40606-1.


Histone demethylases in the regulation of immunity and inflammation.

Qu L, Yin T, Zhao Y, Lv W, Liu Z, Chen C Cell Death Discov. 2023; 9(1):188.

PMID: 37353521 PMC: 10290154. DOI: 10.1038/s41420-023-01489-9.


References
1.
Spooncer E, Heyworth C, Dunn A, Dexter T . Self-renewal and differentiation of interleukin-3-dependent multipotent stem cells are modulated by stromal cells and serum factors. Differentiation. 1986; 31(2):111-8. DOI: 10.1111/j.1432-0436.1986.tb00391.x. View

2.
Wang J, Telese F, Tan Y, Li W, Jin C, He X . LSD1n is an H4K20 demethylase regulating memory formation via transcriptional elongation control. Nat Neurosci. 2015; 18(9):1256-64. PMC: 4625987. DOI: 10.1038/nn.4069. View

3.
Guo H, Ingolia N, Weissman J, Bartel D . Mammalian microRNAs predominantly act to decrease target mRNA levels. Nature. 2010; 466(7308):835-40. PMC: 2990499. DOI: 10.1038/nature09267. View

4.
Wang J, Hevi S, Kurash J, Lei H, Gay F, Bajko J . The lysine demethylase LSD1 (KDM1) is required for maintenance of global DNA methylation. Nat Genet. 2008; 41(1):125-9. DOI: 10.1038/ng.268. View

5.
Siomi H, Siomi M . Posttranscriptional regulation of microRNA biogenesis in animals. Mol Cell. 2010; 38(3):323-32. DOI: 10.1016/j.molcel.2010.03.013. View