首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Pro-interleukin (IL)-1β Shares a Core Region of Stability as Compared with Mature IL-1β While Maintaining a Distinctly Different Configurational Landscape
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Pro-interleukin (IL)-1β Shares a Core Region of Stability as Compared with Mature IL-1β While Maintaining a Distinctly Different Configurational Landscape

机译:前白介素(IL)-1β与成熟的IL-1β相比共享一个核心核心区域同时保持截然不同的构型景观

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摘要

Interleukin-1β (IL-1β) is a master cytokine involved in initiating the innate immune response in vertebrates (Dinarello, C. A. (1994) FASEB J. 8, 1314–1325). It is first synthesized as an inactive 269-residue precursor (pro-interleukin-1β or pro-IL-1β). Pro-IL-1β requires processing by caspase-1 to generate the active, mature 153-residue cytokine. In this study, we combined hydrogen/deuterium exchange mass spectrometry, circular dichroism spectroscopy, and enzymatic digestion comparative studies to investigate the configurational landscape of pro-IL-1β and the role the N terminus plays in modulating the landscape. We find that the N terminus keeps pro-IL-1β in a protease-labile state while maintaining a core region of stability in the C-terminal region, the eventual mature protein. In mature IL-1β, this highly protected region maps back to the area protected earliest in the NMR studies characterizing an on-route kinetic refolding intermediate. This protected region also encompasses two important functional loops that participate in the IL-1β/receptor binding interface required for biological activity. We propose that the purpose of the N-terminal precursor region in pro-IL-1β is to suppress the function of the eventual mature region while keeping a structurally and also functionally important core region primed for the final folding into the native, active state of the mature protein. The presence of the self-inhibiting precursor region provides yet another layer of regulation in the life cycle of this important cytokine.
机译:白介素-1β(IL-1β)是一种主要细胞因子,参与启动脊椎动物的先天免疫应答(Dinarello,C. A.(1994)FASEB J. 8,1314–1325)。它首先被合成为无活性的269个残基的前体(pro-interleukin-1β或pro-IL-1β)。 Pro-IL-1β需要通过caspase-1进行加工,以生成活跃的,具有153个残基的成熟细胞因子。在这项研究中,我们结合了氢/氘交换质谱,圆二色性光谱和酶消化比较研究,以研究pro-IL-1β的构型态以及N末端在调控景观中的作用。我们发现N末端将pro-IL-1β保持在蛋白酶不稳定状态,同时在C末端区域(最终的成熟蛋白质)中保持稳定的核心区域。在成熟的IL-1β中,这个高度受保护的区域会映射回NMR研究中最早表征为在途动力学重折叠中间体的受保护区域。该保护区还包含两个重要的功能环,它们参与了生物活性所需的IL-1β/受体结合界面。我们提出,IL-1β前体的N末端前体区域的目的是抑制最终成熟区域的功能,同时保留一个结构上和功能上重要的核心区域,以准备最终折叠成天然的,活性状态的成熟的蛋白质。自抑制前体区域的存在为这一重要细胞因子的生命周期提供了另一层调控。

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