首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >IL-2 and IL-15 receptor alpha-subunits are coexpressed in a supramolecular receptor cluster in lipid rafts of T cells.
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IL-2 and IL-15 receptor alpha-subunits are coexpressed in a supramolecular receptor cluster in lipid rafts of T cells.

机译:IL-2和IL-15受体α亚基在T细胞脂质筏中的超分子受体簇中共表达。

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摘要

The private alpha-chains of IL-2 and IL-15 receptors (IL-2R and IL-15R) share the signaling beta- and gamma(c)-subunits, resulting in both common and contrasting roles of IL-2 and IL-15 in T cell function. Knowledge of the cytokine-dependent subunit assembly is indispensable for understanding the paradox of distinct signaling capacities. By using fluorescence resonance energy transfer and confocal microscopy, we have shown that IL-2R alpha, IL-15R alpha, IL-2/15R beta and gamma(c)-subunits, as well as MHC class I and II glycoproteins formed supramolecular receptor clusters in lipid rafts of the T lymphoma line Kit 225 FT7.10. Fluorescence crosscorrelation microscopy demonstrated the comobility of IL-15R alpha with IL-2R alpha and MHC class I. A model was generated for subunit switching between IL-2R alpha and IL-15R alpha upon the binding of the appropriate cytokine resulting in the formation of high-affinity heterotrimeric receptors. This model suggests a direct role for the alpha-subunits, to which no definite function has been assigned so far, in tuning cellular responses to IL-2 or IL-15. In addition, both alpha-chains were at least partially homodimerized/oligomerized, which could be the basis of distinct signaling pathways by the two cytokines.
机译:IL-2和IL-15受体(IL-2R和IL-15R)的私人alpha链共享信号传导的β-和gamma(c)-亚基,导致IL-2和IL- T细胞功能中的15。细胞因子依赖性亚基组装的知识对于理解不同信号传导能力的悖论是必不可少的。通过使用荧光共振能量转移和共聚焦显微镜,我们已经证明IL-2R alpha,IL-15R alpha,IL-2 / 15R beta和gamma(c)亚基以及MHC I类和II类糖蛋白形成了超分子受体T淋巴瘤系Kit 225 FT7.10的脂筏中聚集簇。荧光互相关显微镜证明IL-15R alpha与IL-2R alpha和MHC I类具有协同作用。生成了一个模型,用于在适当细胞因子结合后在IL-2R alpha和IL-15R alpha之间进行亚基转换。高亲和力异三聚体受体。该模型暗示了在调节对IL-2或IL-15的细胞反应中,到目前为止尚未赋予确定功能的α亚基的直接作用。另外,两条α链都至少部分均二聚/低聚,这可能是两种细胞因子不同信号通路的基础。

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