4.7 Article

ROS-directed activation of Toll/NF-?B in the hematopoietic niche triggers benzene-induced emergency hematopoiesis

期刊

FREE RADICAL BIOLOGY AND MEDICINE
卷 193, 期 -, 页码 190-201

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2022.10.002

关键词

Benzene; Hematopoiesis; Niche; ROS; Toll; NF; ?B; Drosophila

资金

  1. DST-Science Engineering Research Board [ECR/2016/001863]
  2. Nitte Chancellor's Research Grant [N [D.U.] /REG/CIR/2019-20/242]
  3. Directorate of Minorities Karnataka [Dom/fellowship/CR-33/2018-2019]

向作者/读者索取更多资源

This study demonstrates the crucial role of the hematopoietic niche in benzene-induced hematopoietic injury using a Drosophila model, revealing the mechanism of aberrant hemocyte production induced by benzene.
Hematopoietic stem cells/progenitor cells (HSC/HPCs) orchestrate the hematopoietic process, effectively regu-lated by the hematopoietic niche under normal and stressed conditions. The hematopoietic niche provides various soluble factors which influence the differentiation and self-renewal of HSC/HSPs. Unceasing differen-tiation/proliferation/high metabolic activity of HSC/HPCs makes them susceptible to damage by environmental toxicants like benzene. Oxidative stress, epigenetic modifications, and DNA damage in the HSC/HPCs are the key factors of benzene-induced hematopoietic injury. However, the role of the hematopoietic niche in benzene -induced hematopoietic injury/response is still void. Therefore, the current study aims to unravel the role of the hematopoietic niche in benzene-induced hematotoxicity using a genetically tractable model, Drosophila melanogaster. The lymph gland is a dedicated hematopoietic organ in Drosophila larvae. A group of 30-45 cells called the posterior signaling center (PSC) in the lymph gland acts as a niche that regulates Drosophila HSC/HPCs maintenance. Benzene exposure to Drosophila larvae (48 h) resulted in aberrant hemocyte production, especially hyper-differentiation of lamellocytes followed by premature lymph gland dispersal and reduced adult emergence upon developmental exposure. Subsequent genetic experiments revealed that benzene-induced lamellocyte production and premature lymph gland dispersal were PSC mediated. The genetic experiments further showed that benzene generates Dual oxidase (Duox)-dependent Reactive Oxygen Species (ROS) in the PSC, activating Toll/NF-kappa B signaling, which is essential for the aberrant hemocyte production, lymph gland dispersal, and larval survival. Together, the study establishes a functional perspective of the hematopoietic niche in a benzene -induced hematopoietic emergency in a genetic model, Drosophila, which might be relevant to higher organisms.

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