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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Regulation of methylglyoxal-elicited leukocyte recruitment by endothelial SGK1/GSK3 signaling
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Regulation of methylglyoxal-elicited leukocyte recruitment by endothelial SGK1/GSK3 signaling

机译:内皮SGK1 / GSK3信号传导对甲基乙二醛引起的白细胞募集的调节

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Excessive levels of the glycolysis metabolite methylglyoxal (MG) elicit enhanced expression of adhesion molecules which foster leukocyte-endothelial cell interactions. The signaling mechanisms involved remain elusive. To address this, we investigated the signal transduction of leukocyte- and endothelial-expressed phosphoinositide 3-kinase (PI3K) effector kinases glycogen synthase kinase 3 (GSK3) and serum- and glucocorticoid-inducible kinase 1 (SGK1) in the regulation of MG-elicited leukocyte recruitment. Using intravital microscopy of mouse cremasteric microvasculature, we demonstrate that GSK3 inhibitors lithium and SB216763 mitigate MG-elicited leukocyte recruitment and microvascular hyperpermeability. In SVEC4-10EE2 endothelial cells, but not in neutrophils, MG transiently activates GSK3 by reducing inhibitory phospho-GSK3α/β (Ser21/9) which parallels decrease of phospho-Akt at early time points (<. 30. min). At later time points (≥. 1. h), MG induces GSK3 deactivation which is dissipated by siRNA silencing of SGK. MG treatment potentiates endothelial SGK1 mRNA, total SGK1, phospho-SGK1 and phospho-NDRG1. The SGK1 inhibitor GSK650394 attenuates MG-elicited leukocyte recruitment. Pharmacological inhibition or silencing endothelial GSK3 or SGK attenuates MG-triggered nuclear factor (NF)-κB activity. Furthermore, silencing SGK blunts MG-triggered redox-sensitive phosphorylation of endothelial transcription factor CREB. Inhibition of SGK1 or GSK3 mitigates the expression of endothelial adhesion molecules P- and E-selectins and ICAM-1. Moreover, SGK1-dependent CREB activation participates in MG-elicited ICAM-1 upregulation. We conclude that temporal activation of endothelial SGK1 and GSK3 is decisive in MG-elicited upregulation of transcription factors, adhesion molecule expression, and leukocyte-vascular endothelium interactions. This novel signaling pathway may link excessive MG levels in vivo to inflammation, thus, unraveling potential therapeutic targets.
机译:糖酵解代谢产物甲基乙二醛(MG)的水平过高会引起粘附分子的表达增强,从而促进白细胞与内皮细胞之间的相互作用。涉及的信号机制仍然难以捉摸。为了解决这个问题,我们研究了白细胞和内皮表达的磷酸肌醇3激酶(PI3K)效应激酶糖原合酶激酶3(GSK3)以及血清和糖皮质激素诱导的激酶1(SGK1)的信号转导。引起白细胞募集。使用小鼠cremasteric微脉管系统的活体显微镜,我们证明了GSK3抑制剂锂和SB216763减轻了MG引起的白细胞募集和微血管通透性过高。在SVEC4-10EE2内皮细胞中,而不在嗜中性粒细胞中,MG通过减少抑制性磷酸-GSK3α/β(Ser21 / 9)瞬时激活GSK3,这与早期时间点(<。30. min)磷酸-Akt的下降相似。在随后的时间点(≥。1 h),MG诱导GSK3失活,这被SGK的siRNA沉默所消散。 MG治疗可增强内皮SGK1 mRNA,总SGK1,磷酸SGK1和磷酸NDRG1。 SGK1抑制剂GSK650394减弱了MG引起的白细胞募集。药理学抑制或沉默内皮GSK3或SGK会减弱MG触发的核因子(NF)-κB活性。此外,沉默SGK使MG触发的内皮转录因子CREB的氧化还原敏感磷酸化变钝。抑制SGK1或GSK3可减轻内皮粘附分子P-和E-选择素和ICAM-1的表达。此外,依赖SGK1的CREB激活参与了MG引起的ICAM-1上调。我们得出结论,在MG引起的转录因子,粘附分子表达和白细胞-血管内皮相互作用的上调中,内皮SGK1和GSK3的暂时激活是决定性的。这种新颖的信号通路可能将体内过多的MG水平与炎症联系起来,从而揭示潜在的治疗靶点。

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