Novel components in the nuclear factor-kappa B (NF-κB) signaling pathways of endothelial cells under hyperglycemic-ischemic conditions

Madhu V. Singh, Thomas Wong, Sonia Moorjani, Arul M. Mani, Ayotunde O. Dokun
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Abstract

Diabetes worsens the outcomes of a number of vascular disorders including peripheral arterial disease (PAD) at least in part through induction of chronic inflammation. However, in experimental PAD, recovery requires the nuclear factor-kappa B (NF-κB) activation. Previously we showed that individually, both ischemia and high glucose activate the canonical and non-canonical arms of the NF-κB pathway, but prolonged high glucose exposure specifically impairs ischemia-induced activation of the canonical NF-κB pathway through activation of protein kinase C beta (PKCβ). Although a cascade of phosphorylation events propels the NF-κB signaling, little is known about the impact of hyperglycemia on the canonical and non-canonical NF-κB pathway signaling. Moreover, signal upstream of PKCβ that lead to its activation in endothelial cells during hyperglycemia exposure have not been well defined. In this study, we used endothelial cells exposed to hyperglycemia and ischemia (HGI) and an array of approximately 250 antibodies to approximately 100 proteins and their phosphorylated forms to identify the NF-κB signaling pathway that is altered in ischemic EC that has been exposed to high glucose condition. Comparison of signals from hyperglycemic and ischemic cell lysates yielded a number of proteins whose phosphorylation was either increased or decreased under HGI conditions. Pathway analyses using bioinformatics tools implicated BLNK/BTK known for B cell antigen receptor (BCR)-coupled signaling. Inhibition of BLNK/BTK in endothelial cells by a specific pharmacological inhibitor terreic acid attenuated PKC activation and restored the IκBα degradation suggesting that these molecules play a critical role in hyperglycemic attenuation of the canonical NF-κB pathway. Thus, we have identified a potentially new component of the NF-κB pathway upstream of PKC in endothelial cells that contributes to the poor post ischemic adaptation during hyperglycemia.
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高血糖-缺血条件下内皮细胞核因子-卡巴B(NF-κB)信号通路中的新成分
糖尿病会加重包括外周动脉疾病(PAD)在内的多种血管疾病的后果,至少部分原因是诱发了慢性炎症。然而,在实验性 PAD 中,恢复需要核因子-kappa B(NF-κB)的激活。我们以前的研究表明,缺血和高糖都会单独激活 NF-κB 通路的规范臂和非规范臂,但长期暴露于高糖会通过激活蛋白激酶 C beta(PKCβ)特异性地损害缺血诱导的规范 NF-κB 通路的激活。虽然一系列磷酸化事件推动了 NF-κB 信号转导,但人们对高血糖对 NF-κB 信号转导的规范和非规范影响知之甚少。此外,在高血糖暴露期间,导致内皮细胞中 PKCβ 被激活的 PKCβ 上游信号尚未得到很好的界定。在这项研究中,我们使用了暴露于高血糖和缺血(HGI)的内皮细胞和约 250 种抗体阵列,这些抗体针对约 100 种蛋白质及其磷酸化形式,以确定暴露于高血糖条件下的缺血内皮细胞中发生改变的 NF-κB 信号通路。通过比较高血糖和缺血细胞裂解物的信号,发现在 HGI 条件下,一些蛋白质的磷酸化增加或减少。使用生物信息学工具进行的通路分析显示,BLNK/BTK 与 B 细胞抗原受体(BCR)耦合信号传导有关。通过特异性药理抑制剂妥瑞酸抑制内皮细胞中的 BLNK/BTK,可减轻 PKC 的活化并恢复 IκBα 的降解,这表明这些分子在高血糖对典型 NF-κB 通路的衰减中起着关键作用。因此,我们发现了内皮细胞中 PKC 上游 NF-κB 通路的一个潜在新成分,它是造成高血糖时缺血后适应不良的原因。
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