4.8 Article

TREM2 regulates purinergic receptor-mediated calcium signaling and motility in human iPSC-derived microglia

期刊

ELIFE
卷 11, 期 -, 页码 -

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eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.73021

关键词

iPSC-derived microglia; TREM2; Alzheimer's disease; P2Y receptor; Ca2+ signaling; store-operated Ca2+ entry; Human

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资金

  1. National Institutes of Health [R01 NS14609, R01 AI121945, R01 AG048099, R01 AG056303, R01 AG055524, AG066519, U01 AI160397, T32 NS082174, RF1DA048813, AG059236-01A1]
  2. Marie SklodowskaCurie grant agreement iMIND [84166]
  3. National Research Foundation [2020R1A2C2010285, 2020 M3C7A1023941]
  4. UCI Sue & Bill Gross Stem Cell Research Center
  5. Susan Scott Foundation
  6. National Research Foundation of Korea [2020R1A2C2010285] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The membrane protein TREM2 plays a crucial role in regulating key functions of microglial cells, such as calcium signaling, phagocytosis, and chemotaxis. Loss of TREM2 leads to exaggerated calcium signaling in response to purinergic agonists, resulting in altered cell motility and chemotaxis.
The membrane protein TREM2 (Triggering Receptor Expressed on Myeloid cells 2) regulates key microglial functions including phagocytosis and chemotaxis. Loss-of-function variants of TREM2 are associated with increased risk of Alzheimer's disease (AD). Because abnormalities in Ca2+ signaling have been observed in several AD models, we investigated TREM2 regulation of Ca2+ signaling in human induced pluripotent stem cell-derived microglia (iPSC-microglia) with genetic deletion of TREM2. We found that iPSC-microglia lacking TREM2 (TREM2 KO) show exaggerated Ca2+ signals in response to purinergic agonists, such as ADP, that shape microglial injury responses. This ADP hypersensitivity, driven by increased expression of P2Y(12) and P2Y(13) receptors, results in greater release of Ca2+ from the endoplasmic reticulum stores, which triggers sustained Ca2+ influx through Orai channels and alters cell motility in TREM2 KO microglia. Using iPSC-microglia expressing the genetically encoded Ca2+ probe, Salsa6f, we found that cytosolic Ca2+ tunes motility to a greater extent in TREM2 KO microglia. Despite showing greater overall displacement, TREM2 KO microglia exhibit reduced directional chemotaxis along ADP gradients. Accordingly, the chemotactic defect in TREM2 KO microglia was rescued by reducing cytosolic Ca2+ using a P2Y(12) receptor antagonist. Our results show that loss of TREM2 confers a defect in microglial Ca2+ response to purinergic signals, suggesting a window of Ca2+ signaling for optimal microglial motility.

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