首页> 外文期刊>The Journal of biological chemistry >Carbon dioxide-dependent regulation of NF-κB family members RelB and p100 gives molecular insight into CO2-dependent immune regulation
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Carbon dioxide-dependent regulation of NF-κB family members RelB and p100 gives molecular insight into CO2-dependent immune regulation

机译:依赖二氧化碳的NF-κB家族成员RelB和p100的调控可提供有关CO2依赖性免疫调控的分子洞察力

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CO2 is a physiological gas normally produced in the body during aerobic respiration. Hypercapnia (elevated blood pCO2 >≈50 mm Hg) is a feature of several lung pathologies, e.g. chronic obstructive pulmonary disease. Hypercapnia is associated with increased susceptibility to bacterial infections and suppression of inflammatory signaling. The NF-κB pathway has been implicated in these effects; however, the molecular mechanisms underpinning cellular sensitivity of the NF-κB pathway to CO2 are not fully elucidated. Here, we identify several novel CO2-dependent changes in the NF-κB pathway. NF-κB family members p100 and RelB translocate to the nucleus in response to CO2. A cohort of RelB protein-protein interactions (e.g. with Raf-1 and IκBα) are altered by CO2 exposure, although others are maintained (e.g. with p100). RelB is processed by CO2 in a manner dependent on a key C-terminal domain located in its transactivation domain. Loss of the RelB transactivation domain alters NF-κB-dependent transcriptional activity, and loss of p100 alters sensitivity of RelB to CO2. Thus, we provide molecular insight into the CO2 sensitivity of the NF-κB pathway and implicate altered RelB/p100-dependent signaling in the CO2-dependent regulation of inflammatory signaling.
机译:CO2是有氧呼吸过程中通常在体内产生的一种生理气体。高碳酸血症(血液中pCO2升高>≈50mm Hg)是多种肺部疾病的特征,例如慢性阻塞性肺疾病。高碳酸血症与细菌感染的敏感性增加和炎症信号的抑制有关。 NF-κB途径与这些作用有关。然而,尚未完全阐明支撑NF-κB途径对CO2的细胞敏感性的分子机制。在这里,我们确定了NF-κB途径中一些新型的依赖CO2的变化。响应于CO2,NF-κB家族成员p100和RelB易位至细胞核。 RelB蛋白质-蛋白质相互作用的一个队列(例如与Raf-1和IκBα的相互作用)通过暴露于CO2得以改变,尽管其他的相互作用得以维持(例如,使用p100)。 RelB由CO2处理,其方式取决于位于其反式激活结构域中的关键C末端结构域。 RelB反式激活结构域的丢失会改变NF-κB依赖的转录活性,而p100的缺失会改变RelB对CO2的敏感性。因此,我们提供了对NF-κB途径的CO2敏感性的分子洞察力,并将改变的RelB / p100依赖性信号传导牵连到炎症信号的CO2依赖性调节中。

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