UNLOCKING THE THERAPEUTIC POTENTIAL: EXPLORING NF-κB AS A VIABLE TARGET FOR DIVERSE PHARMACOLOGICAL APPROACHES

Ajeet Pal Singh, Ashish Kumar Sharma, Thakur Gurejet Singh
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Abstract

NF-κB is a vital transcription factor that responds to diverse stimuli like cytokines, infections, and stress. It forms different dimers, binds to specific DNA sequences, and regulates gene expression. It operates through two pathways: canonical (for inflammation and immunity) and non-canonical (for specific processes). These pathways tightly control activity of NF-κB and impacting gene expression. Aberrant NF-κB activation is linked to cancer and other diseases, making it a potential therapeutic target. This review explores the role of NF-κB in disease and its therapeutic potential in various conditions. Intricate signal transduction processes lead to NF-κB activation by phosphorylating IκB proteins, allowing NF-κB dimers to enter the nucleus and influence gene expression. This dynamic regulation involves co-activators and interactions with other transcription factors, shaping complex gene expression programs. Understanding the multifaceted functions off NF-κB is crucial as its deregulation is associated with a range of diseases, including cancer, autoimmune disorders, and inflammatory conditions. Exploring recent studies offers insights into potential therapeutic strategies aimed at modulating NF-κB activity to restore health and combat various pathological conditions. This Comprehensive review is based on the role of NF-κB in disease pathogenesis and therapeutic implications.
释放治疗潜力:探索 NF-κB 作为不同药物学方法的可行目标
NF-κB 是一种重要的转录因子,可对细胞因子、感染和压力等各种刺激做出反应。它形成不同的二聚体,与特定的 DNA 序列结合,并调节基因表达。它通过两种途径发挥作用:典型途径(用于炎症和免疫)和非典型途径(用于特定过程)。这些途径严格控制 NF-κB 的活性,并影响基因表达。NF-κB 的异常激活与癌症和其他疾病有关,因此成为潜在的治疗靶点。本综述探讨了 NF-κB 在疾病中的作用及其在各种情况下的治疗潜力。错综复杂的信号转导过程通过磷酸化 IκB 蛋白导致 NF-κB 激活,使 NF-κB 二聚体进入细胞核并影响基因表达。这种动态调控涉及共激活因子以及与其他转录因子的相互作用,从而形成复杂的基因表达程序。了解 NF-κB 的多方面功能至关重要,因为它的失调与癌症、自身免疫性疾病和炎症等一系列疾病有关。对最新研究的探讨为旨在调节 NF-κB 活性以恢复健康和对抗各种病症的潜在治疗策略提供了见解。本综述基于 NF-κB 在疾病发病机制中的作用和治疗意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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