Novel function of TREK-1 in regulating adipocyte differentiation and lipid accumulation

  • Kim, Ajung
  • Jung, Seoyeong
  • Kim, Yongeun
  • Jung, Jonghoon
  • Lee, Soomin
  • ... Park, Jae-Yong
  • 외 4명
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초록

K2P (two-pore domain potassium) channels, a diversified class of K+-selective ion channels, have been found to affect a wide range of physiological processes in the body. Despite their established significance in regulating proliferation and differentiation in multiple cell types, K2P channels' specific role in adipogenic differentiation (adipogenesis) remains poorly understood. In this study, we investigated the engagement of K2P channels, specifically KCNK2 (also known as TREK-1), in adipogenesis using primary cultured adipocytes and TREK-1 knockout (KO) mice. Our findings showed that TREK-1 expression in adipocytes decreases substantially during adipogenesis. This typically causes an increased Ca2+ influx and alters the electrical potential of the cell membrane in 3T3-L1 cell lines. Furthermore, we observed an increase in differentiation and lipid accumulation in both 3T3-L1 cell lines and primary cultured adipocytes when the TREK-1 activity was blocked with Spadin, the specific inhibitors, and TREK-1 shRNA. Finally, our findings revealed that mice lacking TREK-1 gained more fat mass and had worse glucose tolerance when fed a high-fat diet (HFD) compared to the wild-type controls. The findings demonstrate that increase of the membrane potential at adipocytes through the downregulation of TREK-1 can influence the progression of adipogenesis.

키워드

Calcium IonGlucoseLipidCalciumCalciumPeptidesPotassium Channel Protein Trek-1Potassium Channels, Tandem Pore DomainSpadin PeptideCalcium IonGlucoseLipidPotassium ChannelPotassium Channel Blocking AgentPotassium Channel Kcnk2Short Hairpin RnaTranscriptomeUnclassified DrugCalciumPeptidePotassium Channel Protein Trek-1Spadin PeptideTandem Pore Domain Potassium Channel3t3-l1 Cell LineAdipocyteAdipogenesisAnimal CellAnimal ExperimentAnimal TissueArticleCalcium Cell LevelCalcium SignalingCalcium TransportCell DifferentiationCell Membrane PotentialControlled StudyElectric PotentialFat MassGlucose ToleranceKnockout MouseLipid DietLipid StorageMaleMouseNonhumanPrimary Cell CultureProtein ExpressionAnimalC57bl MouseCytologyGeneticsLipid MetabolismMembrane PotentialMetabolism3t3-l1 CellsAdipocytesAdipogenesisAnimalsCalciumCell DifferentiationDiet, High-fatLipid MetabolismMaleMembrane PotentialsMiceMice, Inbred C57blMice, KnockoutPeptidesPotassium Channels, Tandem Pore DomainBROWN ADIPOSE-TISSUEPROTEIN-KINASEPPAR-GAMMAIN-VIVOCALCIUMCHANNELTHERMOGENESIS
제목
Novel function of TREK-1 in regulating adipocyte differentiation and lipid accumulation
저자
Kim, AjungJung, SeoyeongKim, YongeunJung, JonghoonLee, SoominLee, HojinKim, Min JungPark, Jae-YongHwang, Eun MiLee, Jaekwang
DOI
10.1038/s41419-025-07478-3
발행일
2025-03-08
유형
Article
저널명
Cell Death & Disease
16
1