Characterizing an Alternatively Spliced Variant of Chemokine Receptor 2 in Painful Diabetic Neuropathy

Justine Soltys, Lei Yu
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Abstract

Prior research efforts have demonstrated a link between neuroinflammation and the progres-sion of Painful Diabetic Neuropathy (PDN), a chronic cascade of nerve damage that presents as tingling, numbness, hypersensitivity to touch, or intense pain. Current treatments are focused on pain manage-ment, serving to temporarily mask these symptoms without repressing or slowing nerve damage. The chemokine-receptor system has been closely stud-ied for its role in perpetuating neuropathic pain, alt-hough its precise mechanistic involvement remains unclear due to the network’s complexity. Because of its likely role in regulating neuropathic pain, target-ing CCR2 may be the key to effective treatment of PDN.Alternative splicing of CCR2 leads to two dis-tinct isoforms with different C-terminus sequences, CCR2A and CCR2B. The present study was intended to differentiate between these isoforms through spe-cific primer design, selection of optimized pairs, RT-PCR, and amplicon sequencing to verify the PCR products. However, the study has revealed a third, previously unreported isoform, CCR2C, due to evi-dence of alternative splicing and both the absence and insertion of parts of A and B. In the long term, we predict that the relationship between CCR2’s alternatively spliced transcript variants will lead to a distinct pattern of isoform prevalence in individuals suffering from PDN. Discerning the genetic profiles of patients with PDN and healthy individuals will clar-ify the complex mechanism driving CCR2’s intracel-lular interactions and offer more effective therapeu-tic options.
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疼痛性糖尿病神经病变中趋化因子受体2的选择性剪接变体的特征
先前的研究已经证明了神经炎症与疼痛性糖尿病神经病变(PDN)进展之间的联系,PDN是一种慢性级联神经损伤,表现为刺痛、麻木、对触摸过敏或剧烈疼痛。目前的治疗主要集中在疼痛管理上,暂时掩盖这些症状,而不抑制或减缓神经损伤。趋化因子受体系统在持续神经性疼痛中的作用已被密切研究,尽管由于网络的复杂性,其确切的机制参与尚不清楚。由于其可能在调节神经性疼痛中发挥作用,靶向CCR2可能是有效治疗PDN的关键。CCR2的选择性剪接导致CCR2A和CCR2B两种具有不同c端序列的不同同工异构体。本研究旨在通过特异性引物设计,选择优化对,RT-PCR和扩增子测序来验证PCR产物来区分这些同种异构体。然而,由于选择性剪接的证据以及a和b部分的缺失和插入,该研究揭示了第三种以前未报道的同种异构体CCR2C。从长远来看,我们预测CCR2的选择性剪接转录体变体之间的关系将导致PDN患者中同种异构体的独特流行模式。识别PDN患者和健康个体的遗传谱将阐明驱动CCR2细胞内相互作用的复杂机制,并提供更有效的治疗选择。
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