ArticleEMBO reports2022
Dual control of dopamine in Drosophila myeloid-like progenitor cell proliferation and regulation of lymph gland growth.
Article in EMBO reports, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed, 21 citations in OpenAlex.
- COP9 signalosome regulates EGFR and Notch signaling during myeloid-type progenitor cell fate decision in Drosophila.EMBO reports · 2026Article
- Metabolic coupling of ROS generation and antioxidant synthesis by the GABA shunt pathway in myeloid-like blood progenitor cells of Drosophila.PLoS genetics · 2025Article
- Autophagy controls differentiation of Drosophila blood cells by regulating Notch levels in response to nutrient availability.Nature communications · 2025Article
- Dual role of PpV in Drosophila crystal cell proliferation and survival.Journal of molecular cell biology · 2025Article
- Wnt signaling couples G2 phase control with differentiation during hematopoiesis in Drosophila.Developmental cell · 2024Article
- The NF-κB Factor Relish maintains blood progenitor homeostasis in the developing Drosophila lymph gland.PLoS genetics · 2024Article
- Effects of Dopamine on stem cells and its potential roles in the treatment of inflammatory disorders: a narrative review.Stem cell research & therapy · 2023Review
- Kinetics of blood cell differentiation during hematopoiesis revealed by quantitative long-term live imaging.eLife · 2023Article
- Peeling Back the Layers of Lymph Gland Structure and Regulation.International journal of molecular sciences · 2022Review
- Dual control of dopamine in Drosophila myeloid-like progenitor cell proliferation and regulation of lymph gland growth.EMBO reports · 2022Article
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Authors and funding
4 authors at 2 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
In Drosophila, definitive haematopoiesis takes place in a specialized organ termed "lymph gland". It harbours multi-potent stem-like blood progenitor cells whose development controls overall growth of this haematopoietic tissue and formation of mature blood cells. With respect to its development, neurotransmitters have emerged as potent regulators of blood-progenitor cell development and function. In this study, we extend our understanding of neurotransmitters and show that progenitors are self-sufficient with regard to synthesizing dopamine, a well-established neurotransmitter. These cells also have modules for dopamine sensing through the receptor and transporter. We found that modulating expression of these components in progenitor cells affected lymph gland growth, which suggested growth-promoting function of dopamine in blood-progenitor cells. Cell-cycle analysis of developing lymph glands revealed an unexpected requirement for intracellular dopamine in moderating the progression of early progenitor cells from S to G2 phase of the cell cycle, while activation of dopamine receptor signalling later in development regulated their progression from G2 and entry into mitosis. The dual capacity in which dopamine operated, first intracellularly to coordinate S/G2 transition and later extracellularly in G2/M transition, was critical for the growth of the lymph gland. Overall, the data presented highlight a novel non-canonical use of dopamine in the myeloid system that reveals an uncharacterized function of intracellular dopamine in cell-cycle phasing with outcomes on haematopoietic growth and immunity as well.
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