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Karadsheh, G.

Publications and source records attributed to Karadsheh, G..

3 recordsLinked to original sources

Thiamine transporter 2 and Janus kinase 2 inhibitor, fedratinib suppresses thermogenic activation of human neck area-derived adipocytes

IntroductionBrown adipocytes consume higher amounts of metabolic substrates and regulators including thiamine during adrenergic stimulation supporting heat generation. Our previous findings showed that fedratinib, a potent inhibitor of thiamine transporter (ThTr) 2 and Janus kinase 2 (JAK2), reduced thermogenic activity; however, the underlying molecular mechanisms remain elusive. MethodsPrimary human subcutaneous (SC) and deep neck (DN)-derived adipocytes were treated with dibutyryl (db)-cAMP, fedratinib, or the combination of the two compounds after differentiation. Global transcriptomic analysis was performed by bulk RNA-sequencing. Differentially expressed genes were subjected to pathway enrichment analysis. We also utilized publicly available single-cell RNA-sequencing datasets and adiposetissue.org to correlate ThTr2 expression in adipose tissue to clinical parameters of patient cohorts. Amino acid flux was measured by metabolomics. Results and discussionThTr2 expression was observed exclusively enriched in the adipocytes cluster within human brown and white adipose tissue. In response to ThTr2 inhibition, the db-cAMP-stimulated upregulation of the canonical thermogenic markers and proton leak respiration, which associates with UCP1-dependent heat generation, was prevented in both adipocyte types. RNA-sequencing found 40 and 41 downregulated genes potentially underlying the metabolic changes in SC and DN-derived adipocytes, respectively, which were involved in various biological pathways, including transcriptional regulation of brown and beige adipocytes differentiation, signaling by interleukins, nicotinamide salvaging, and gene and protein expression by JAK/STAT signaling after interleukin-12 stimulation. The expression of recently identified thermogenesis regulators, such as transglutaminase (TGM) 2 and inhibitor of DNA binding (ID) 1, was also abrogated by ThTr2 inhibition during adrenergic stimulation. Intriguingly, glutamate transporter (GLT) 1 and L-amino acid transporter (LAT) 2 expression was also attenuated by fedratinib, restricting amino acid consumption. Finally, we found that the expression of ThTr2 in human white adipose tissue was inversely correlated with body mass index, waist-hip ratio, leptin secretion, and plasma insulin, glucose, cholesterol and triacylglycerol levels, supporting the importance of thiamine metabolism in adipocyte and metabolic health. O_LIFedratinib prevented adrenergic-stimulated upregulation of thermogenic genes. C_LIO_LIThe consumption of amino acids and the expression of their transporters decreased by fedratinib during adrenergic stimulation. C_LIO_LIOxygen consumption and proton leak respiration reflecting heat generation were abrogated by fedratinib. C_LI

cell biology↗

Iron uptake mediated by TFRC and secretion of transferrin types stimulate thermogenic activation in human adipocytes

Adrenergic-driven thermogenic activation of brown adipose tissue requires high amounts of nutrients including iron supporting mitochondrial biogenesis. This was governed by rapid gene expression changes in human cervical-derived brown adipocytes. Transferrin receptor 1 (TFRC) was strongly upregulated in response to dibutyryl-cAMP. Pharmacological inhibition and siRNA-mediated knockdown of TFRC during adrenergic stimulation decreased intracellular iron content and prevented elevation of oxygen consumption and induction of thermogenic markers. Deferoxamine-mediated iron chelation also showed comparable effects. Contrarily, the expression of ferroportin iron exporter was suppressed during activation, however, its pharmacological inhibition did not further increase thermogenesis. Brown adipocytes constitutively expressed and secreted high amounts of transferrin while the released melanotransferrin at activated condition was predicted to further augment iron influx stimulating heat production.

cell biology↗

Upregulation of Inhibitor of DNA Binding 1 and 3 is Important for Efficient Thermogenic Response in Human Adipocytes

Brown and beige adipocytes can be activated by {beta}-adrenergic agonist via cAMP-dependent signaling. Performing RNA-sequencing analysis in human cervical area-derived adipocytes, we found that dibutyryl-cAMP, which can mimic in vivo stimulation of browning and thermogenesis, enhanced the expression of browning and batokine genes and upregulated several signaling pathway genes linked to thermogenesis. We observed that the expression of Inhibitor of DNA binding and cell differentiation (ID) 1 and particularly ID3 was strongly induced by the adrenergic stimulation. The degradation of ID1 and ID3 elicited by the ID antagonist AGX51 during thermogenic activation prevented the induction of proton leak respiration that reflects thermogenesis and abrogated cAMP analogue-stimulated upregulation of thermogenic genes and mitochondrial complex I, II, and IV subunits. The presented data suggests that ID proteins contribute to efficient thermogenic response of adipocytes during adrenergic stimulation. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=117 SRC="FIGDIR/small/601234v1_ufig1.gif" ALT="Figure 1"> View larger version (16K): org.highwire.dtl.DTLVardef@bf8235org.highwire.dtl.DTLVardef@fd89dcorg.highwire.dtl.DTLVardef@165eeedorg.highwire.dtl.DTLVardef@12921ea_HPS_FORMAT_FIGEXP M_FIG C_FIG

cell biology↗