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NF-kappaB Signaling Pathways in Neurological Inflammation: A Mini Review

机译:NF-κB信号通路在神经性炎症:迷你审查。

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摘要

The NF-κB (nuclear factor κ-light-chain-enhancer of activated B cells) transcription factor family is a pleiotropic regulator of many cellular signaling pathways, providing a mechanism for the cells in response to a wide variety of stimuli linking to inflammation. The stimulated cells will be regulated by not only the canonical but also non-canonical NF-κB pathways. To initiate both of these pathways, IκB-degradation triggers NF-κB release and the nuclear translocated-heterodimer (or homodimer) can associate with the κB sites of promoter to regulate the gene transcriptions. NF-κB ubiquitously expresses in neurons and the constitutive NF-κB activation is associated with processing of neuronal information. NF-κB can regulate the transcription of genes such as chemokines, cytokines, proinflammatory enzymes, adhesion molecules, proinflammatory transcription factors, and other factors to modulate the neuronal survival. In neuronal insult, NF-κB constitutively active in neuron cell bodies can protect neurons against different injuries and regulate the neuronal inflammatory reactions. Besides neurons, NF-κB transcription factors are abundant in glial cells and cerebral blood vessels and the diverse functions of NF-κB also regulate the inflammatory reaction around the neuronal environment. NF-κB transcription factors are abundant in the brain and exhibit diverse functions. Several central nerve system (CNS) diseases are linked to NF-κB activated by inflammatory mediators. The RelA and c-Rel expression produce opposite effects on neuronal survival. Importantly, c-Rel expression in CNS plays a critical role in anti-apoptosis and reduces the age-related behaviors. Moreover, the different subunits of NF-κB dimer formation can modulate the neuroninflammation, neuronal protection, or neurotoxicity. The diverse functions of NF-κB depend on the subunits of the NF-κB dimer-formation which enable us to develop a therapeutic approach to neuroinflammation based on a new concept of inflammation as a strategic tool in neuronal cells. However, the detail role of NF-κB in neuroinflammation, remains to be clarified. In the present article, we provide an updated review of the current state of our knowledge about relationship between NF-κB and neuroinflammation.
机译:NF-κB(激活的B细胞的核因子κ-轻链增强子)转录因子家族是许多细胞信号通路的多效调节剂,为细胞响应与炎症相关的多种刺激提供了一种机制。受刺激的细胞不仅会受到规范的NF-κB通路的调节,还会受到非规范的NF-κB通路的调节。要启动这两个途径,IκB降解会触发NF-κB释放,核易位异二聚体(或同型二聚体)可以与启动子的κB位点结合以调节基因转录。 NF-κB在神经元中普遍表达,而组成型NF-κB激活与神经元信息的处理有关。 NF-κB可以调节趋化因子,细胞因子,促炎酶,粘附分子,促炎转录因子等基因的转录,从而调节神经元的存活。在神经元损伤中,在神经元细胞体中具有组成型活性的NF-κB可以保护神经元免受不同损伤并调节神经元炎症反应。除了神经元外,神经胶质细胞和脑血管中还存在丰富的NF-κB转录因子,NF-κB的多种功能也调节神经元周围环境的炎症反应。 NF-κB转录因子在大脑中含量丰富,并具有多种功能。几种中枢神经系统(CNS)疾病与炎症介质激活的NF-κB有关。 RelA和c-Rel表达对神经元存活产生相反的影响。重要的是,CNS中的c-Rel表达在抗凋亡中起着关键作用,并减少了与年龄有关的行为。此外,NF-κB二聚体形成的不同亚基可以调节神经元炎症,神经元保护或神经毒性。 NF-κB的各种功能取决于NF-κB二聚体形成的亚基,这使我们能够基于炎症作为神经元细胞中的战略工具的新概念,开发出一种治疗神经炎症的方法。但是,NF-κB在神经炎症中的详细作用尚待阐明。在本文中,我们提供了有关NF-κB与神经炎症之间关系的最新知识的最新综述。

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