NF-kappaB功能的调控。

Kirsteen J Campbell, Neil D Perkins
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引用次数: 129

摘要

自发现以来的20年里,对NF-kappaB(核因子- kappab)转录因子家族的研究揭示了其惊人的功能多样性。nf - κ b蛋白是细胞对大量不同刺激的免疫、炎症、应激、增殖和凋亡反应的调节因子。NF-kappaB复合物可以在所有类型的细胞中发现,这表明NF-kappaB可以被诱导的不同环境的数量是巨大的。此外,许多报道表明NF-kappaB的功能明显相反或相互矛盾。很明显,了解NF-kappaB亚基的核定位和DNA结合的途径是不够的。如果我们要整体理解NF-kappaB通路,理解NF-kappaB亚基功能的调控也很重要。这些问题包括在特定情况下控制NF-kappaB调控的基因的特异性和时间的机制。它们还包括NF-kappaB亚基有时可以抑制而不是激活转录的原因,以及NF-kappaB反应如何与细胞中其他重要的转录因子途径整合,例如在DNA损伤或癌基因激活后诱导p53肿瘤抑制因子。了解调节NF-kappaB功能的机制对我们理解NF-kappaB亚基在人类炎症性疾病和癌症中的作用具有重要意义,也可能影响未来基于NF-kappaB的临床治疗方法的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of NF-kappaB function.

In the 20 years since its discovery, research into the NF-kappaB (nuclear factor-kappaB) family of transcription factors has revealed an amazing diversity of functions. NF-kappaB proteins are regulators of the immune, inflammatory, stress, proliferative and apoptotic responses of a cell to a very large number of different stimuli. NF-kappaB complexes can be found in all cell types, indicating that the number of different contexts in which NF-kappaB can become induced is enormous. Moreover, many reports suggest apparently opposing or contradictory functions for NF-kappaB. It is clear that it is not simply enough to understand the pathways leading to nuclear localization and DNA binding of NF-kappaB subunits. It is also important that we comprehend the regulation of NF-kappaB subunit functionality if we are to understand the NF-kappaB pathway as a whole. These issues include the mechanisms controlling the specificity and timing of genes regulated by NF-kappaB under particular circumstances. They also include the reasons why NF-kappaB subunits can sometimes repress rather than activate transcription and how the NF-kappaB response is integrated with other important transcription factor pathways in the cell, such as the induction of the p53 tumour suppressor following DNA damage or oncogene activation. Understanding the mechanisms that regulate NF-kappaB function has important implications for our understanding of the role that NF-kappaB subunits play in human inflammatory diseases and cancer, and could also impact on the use of future NF-kappaB-based clinical therapies.

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