Developmental Genetics Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Knowledge City, Sector 81, SAS Nagar, Manauli PO, Punjab 140306, India.
Molecular Cell and Developmental Biology Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Knowledge City, Sector 81, SAS Nagar, Manauli PO, Punjab 140306, India.
Development. 2019 Dec 23;146(24):dev178202. doi: 10.1242/dev.178202.
Stem cell compartments in metazoa get regulated by systemic factors as well as local stem cell niche-derived factors. However, the mechanisms by which systemic signals integrate with local factors in maintaining tissue homeostasis remain unclear. Employing the lymph gland, which harbors differentiated blood cells, and stem-like progenitor cells and their niche, we demonstrate how a systemic signal interacts and harmonizes with local factor/s to achieve cell type-specific tissue homeostasis. Our genetic analyses uncovered a novel function of , a receptor protein tyrosine phosphatase. Niche-specific loss of leads to upregulated insulin signaling, causing increased niche cell proliferation and ectopic progenitor differentiation. Insulin signaling assayed by PI3K activation is downregulated after the second instar larval stage, a time point that coincides with the appearance of Lar in the hematopoietic niche. We further demonstrate that Lar physically associates with InR and serves as a negative regulator for insulin signaling in the larval hematopoietic niche. Whether Lar serves as a localized invariable negative regulator of systemic signals such as insulin in other stem cell niches remains to be explored.
后生动物的干细胞隔室受全身因素以及局部干细胞生态位衍生因素的调节。然而,全身信号与维持组织内稳态的局部因素整合的机制仍不清楚。我们利用含有分化血细胞、干细胞样祖细胞及其生态位的淋巴腺,展示了全身信号如何与局部因素相互作用和协调,以实现特定细胞类型的组织内稳态。我们的遗传分析揭示了受体蛋白酪氨酸磷酸酶的一个新功能。特定于生态位的缺失会导致胰岛素信号上调,导致生态位细胞增殖和异位祖细胞分化增加。在第二龄幼虫阶段后,即造血生态位中出现 Lar 的时间点,PI3K 激活检测到的胰岛素信号被下调。我们进一步证明 Lar 与 InR 物理结合,并作为幼虫造血生态位中胰岛素信号的负调节剂。Lar 是否在其他干细胞生态位中充当胰岛素等全身信号的局部不变负调节剂还有待探索。