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Interleukin-22 Forms Dimers that are Recognized by Two Interleukin-22R1 Receptor Chains

机译:被两个白介素-22R1受体链识别的白介素22形成二聚体

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摘要

Interleukin-22 (IL-22) is a class 2 cytokine whose primary structure is similar to that of interleukin 10 (IL-10) and interferon-γ (IFN-γ). IL-22 induction during acute phase immune response indicates its involvement in mechanisms of inflammation. Structurally different from IL-10 and a number of other members of IL-10 family, which form intertwined inseparable V-shaped dimers of two identical polypeptide chains, a single polypeptide chain of IL-22 folds on itself in a relatively globular structure. Here we present evidence, based on native gel electrophoresis, glutaraldehyde cross-linking, dynamic light scattering, and small angle x-ray scattering experiments, that human IL-22 forms dimers and tetramers in solution under protein concentrations assessable by these experiments. Unexpectedly, low-resolution molecular shape of IL-22 dimers is strikingly similar to that of IL-10 and other intertwined cytokine dimeric forms. Furthermore, we determine an ab initio molecular shape of the IL-22/IL-22R1 complex which reveals the V-shaped IL-22 dimer interacting with two cognate IL-22R1 molecules. Based on this collective evidence, we argue that dimerization might be a common mechanism of all class 2 cytokines for the molecular recognition with their respective membrane receptor. We also speculate that the IL-22 tetramer formation could represent a way to store the cytokine in nonactive form at high concentrations that could be readily converted into functionally active monomers and dimers upon interaction with the cognate cellular receptors.
机译:白介素22(IL-22)是2类细胞因子,其主要结构与白介素10(IL-10)和干扰素-γ(IFN-γ)相似。急性期免疫应答中的IL-22诱导表明它参与了炎症机制。与IL-10和IL-10家族的许多其他成员在结构上不同,它们形成两条相同多肽链的相互交织在一起的不可分离的V形二聚体,一条IL-22多肽链自身以相对球形的结构折叠。在这里,我们基于天然凝胶电泳,戊二醛交联,动态光散射和小角度X射线散射实验提供证据,证明在这些实验可评估的蛋白质浓度下,人IL-22在溶液中形成二聚体和四聚体。出乎意料的是,IL-22二聚体的低分辨率分子形状与IL-10和其他相互缠绕的细胞因子二聚体形式极为相似。此外,我们确定了IL-22 / IL-22R1复合物的从头算分子形状,揭示了与两个同源IL-22R1分子相互作用的V形IL-22二聚体。基于这些集体证据,我们认为二聚化可能是所有2类细胞因子与各自的膜受体进行分子识别的共同机制。我们还推测,IL-22四聚体的形成可能代表了一种以高浓度存储非活性形式的细胞因子的方法,当与同源细胞受体相互作用时,它们很容易转化为功能活性单体和二聚体。

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