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首页> 外文期刊>Journal of Molecular Biology >Compensatory Energetic Mechanisms Mediating the Assembly of Signaling Complexes Between Interleukin-2 and its alpha, beta, and gamma(c) Receptors.
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Compensatory Energetic Mechanisms Mediating the Assembly of Signaling Complexes Between Interleukin-2 and its alpha, beta, and gamma(c) Receptors.

机译:介导白介素2及其α,β和γ(c)受体之间信号复合体组装的补偿性能量机制。

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Interleukin-2 is a key immuno-regulatory cytokine whose actions are mediated by three different cell surface receptors: the alpha, beta and the "common gamma" (gamma(c)) chains. We have undertaken a complete thermodynamic characterization of the stepwise assembly cycle for multiple possible combinations of the receptor-ligand, and receptor-receptor interactions that are necessary for formation of the high-affinity IL-2/alphabetagamma(c) signaling complex. We find an entropically favorable high affinity interaction between IL-2 and its alpha receptor, a moderately entropically favorable low affinity interaction between IL-2 and its beta receptor, and no interaction between IL-2 and the shared receptor, gamma(c). Formation of the stable intermediate trimolecular complexes of IL-2 with alpha and beta receptors, as well as IL-2 with beta and gamma(c) receptors proceeds through enthalpy-entropy compensation mechanisms. Surprisingly, we see a moderate affinity interaction between the unliganded receptor alpha and beta chains, suggesting that a preformed alphabeta complex may serve as the initial interaction complex for IL-2. Reconstitution of the IL-2/Ralphabetagamma(c) high-affinity quaternary signaling complex shows it to be assembled through cooperative energetics to form a 1:1:1:1 assembly. Collectively, the favorable entropy of the bimolecular interactions appears to be offset by the loss in rigid body entropy of the receptor components in the higher-order complexes, but overcome by the formation of increasingly enthalpically favorable composite interfaces. This enthalpic mechanism utilized by gamma(c) contrasts with the favorable entropic mechanism utilized by gp130 for degenerate cytokine interaction. In conclusion, we find that several energetically redundant pathways exist for formation of IL-2 receptor signaling complexes, suggesting a more complex equilibrium on the cell surface than has been previously appreciated.
机译:白介素-2是一种关键的免疫调节细胞因子,其作用由三种不同的细胞表面受体介导:α,β和“常见γ”(gamma(c))链。我们已经完成了受体-配体和受体-受体相互作用的多种可能组合的逐步组装循环的完整热力学表征,这对于形成高亲和力的IL-2 / alphabetagamma(c)信号复合物是必需的。我们发现IL-2与它的α受体之间存在熵有利的高亲和力相互作用,IL-2与它的β受体之间存在适度的熵有利的低亲和力相互作用,而IL-2与共享受体gamma(c)之间没有相互作用。 IL-2与α和β受体以及IL-2与β和gamma(c)受体的稳定中间三分子复合物的形成通过焓-熵补偿机制进行。出人意料的是,我们看到未配体的受体α和β链之间存在适度的亲和力相互作用,这表明预先形成的字母复合物可以充当IL-2的初始相互作用复合物。 IL-2 / Ralphabetagamma(c)高亲和力四级信号复合物的重构表明,它是通过协同能学组装成1:1:1:1的组装体。总的来说,双分子相互作用的有利熵似乎被高阶络合物中受体组分的刚体熵的损失所抵消,但是通过形成越来越多的焓有利的复合界面而克服了。 γ(c)利用的这种焓机制与gp130用于简并的细胞因子相互作用的有利的熵机制相反。总之,我们发现存在一些能量上多余的途径来形成IL-2受体信号转导复合物,这表明细胞表面上的平衡比以前认识到的更为复杂。

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