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首页> 外文期刊>Pharmacological research: The official journal of The Italian Pharmacological Society >iRAGE as a novel carboxymethylated peptide that prevents advanced glycation end product-induced apoptosis and endoplasmic reticulum stress in vascular smooth muscle cells
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iRAGE as a novel carboxymethylated peptide that prevents advanced glycation end product-induced apoptosis and endoplasmic reticulum stress in vascular smooth muscle cells

机译:iRAGE是一种新型羧甲基化肽,可防止晚期糖基化终产物诱导的血管平滑肌细胞凋亡和内质网应激

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摘要

Advanced glycation end-products (AGE) and the receptor for AGE (RAGE) have been linked to numerous diabetic vascular complications. RAGE activation promotes a self-sustaining state of chronic inflammation and has been shown to induce apoptosis in various cell types. Although previous studies in vascular smooth muscle cells (VSMC) showed that RAGE activation increases vascular calcification and interferes with their contractile phenotype, little is known on the potential of RAGE to induce apoptosis in VSMC. Using a combination of apoptotic assays, we showed that RAGE stimulation with its ligand CML-HSA promotes apoptosis of VSMC. The formation of stress granules and the increase in the level of the associated protein HuR point toward RAGE-dependent endoplasmic reticulum (ER) stress, which is proposed as a key contributor of RAGE-induced apoptosis in VSMC as it has been shown to promote cell death via numerous mechanisms, including up-regulation of caspase-9. Chronic NF-kappa B activation and modulation of Bcl-2 homologs are also suspected to contribute to RAGE-dependent apoptosis in VSMC. With the goal of reducing RAGE signaling and its detrimental impact on VSMC, we designed a RAGE antagonist (iRAGE) derived from the primary amino acid sequence of HSA. The resulting CML peptide was selected for the high glycation frequency of the primary sequence in the native protein in vivo. Pretreatment with iRAGE blocked 69.6% of the increase in NF-kappa B signaling caused by RAGE activation with CML-HSA after 48 h. Preincubation with iRAGE was successful in reducing RAGE-induced apoptosis, as seen through enhanced cell survival by SPR and reduced PARP cleavage. Activation of executioner caspases was 63.5% lower in cells treated with iRAGE before stimulation with CML-HSA. To our knowledge, iRAGE is the first antagonist shown to block AGE-RAGE interaction and we propose the molecule as an initial candidate for drug discovery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:晚期糖基化终产物(AGE)和AGE受体(RAGE)与许多糖尿病血管并发症有关。 RAGE激活可促进慢性炎症的自我维持状态,并已显示出可诱导多种细胞类型凋亡的作用。尽管先前对血管平滑肌细胞(VSMC)的研究表明RAGE激活会增加血管钙化并干扰其收缩表型,但对于RAGE诱导VSMC凋亡的潜力知之甚少。使用凋亡检测的组合,我们显示RAGE与其配体CML-HSA的刺激促进了VSMC的凋亡。应激颗粒的形成和相关蛋白HuR水平的增加指向RAGE依赖的内质网(ER)应激,这被认为是RAGE诱导的VSMC凋亡的关键因素,因为它已被证明可以促进细胞通过多种机制导致死亡,包括上调caspase-9。还怀疑慢性NF-κB激活和Bcl-2同源物的调节可导致VSMC中RAGE依赖性细胞凋亡。为了减少RAGE信号转导及其对VSMC的有害影响,我们设计了一种源自HSA一级氨基酸序列的RAGE拮抗剂(iRAGE)。选择得到的CML肽是为了体内天然蛋白中一级序列的高糖基化频率。用iRAGE进行的预处理在48小时后阻止了由CML-HSA激活RAGE引起的NF-κB信号传导增加的69.6%。通过iRAGE的预温育成功地减少了RAGE诱导的细胞凋亡,这可以通过SPR增强的细胞存活率和减少的PARP裂解看出。在用CML-HSA刺激之前,用iRAGE处理的细胞中,死刑犯半胱天冬酶的激活降低了63.5%。据我们所知,iRAGE是第一个能阻断AGE-RAGE相互作用的拮抗剂,我们建议将该分子作为药物发现的最初候选对象。 (C)2015 Elsevier Ltd.保留所有权利。

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