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细胞因子受体簇的大小影响其内化和信号转导。

Cytokine receptor cluster size impacts its endocytosis and signaling.

机构信息

Group Intracellular Trafficking and Tissue Homeostasis, Unité de Pathogénie Microbienne Moléculaire, Institut Pasteur, Paris, 75015 France.

INSERM U1202, Paris, 75015 France.

出版信息

Proc Natl Acad Sci U S A. 2021 Sep 14;118(37). doi: 10.1073/pnas.2024893118.

Abstract

The interleukin-2 receptor (IL-2R) is a cytokine receptor essential for immunity that transduces proliferative signals regulated by its uptake and degradation. IL-2R is a well-known marker of clathrin-independent endocytosis (CIE), a process devoid of any coat protein, raising the question of how the CIE vesicle is generated. Here, we investigated the impact of IL-2Rγ clustering in its endocytosis. Combining total internal reflection fluorescence (TIRF) live imaging of a CRISPR-edited T cell line endogenously expressing IL-2Rγ tagged with green fluorescent protein (GFP), with multichannel imaging, single-molecule tracking, and quantitative analysis, we were able to decipher IL-2Rγ stoichiometry at the plasma membrane in real time. We identified three distinct IL-2Rγ cluster populations. IL-2Rγ is secreted to the cell surface as a preassembled small cluster of three molecules maximum, rapidly diffusing at the plasma membrane. A medium-sized cluster composed of four to six molecules is key for IL-2R internalization and is promoted by interleukin 2 (IL-2) binding, while larger clusters (more than six molecules) are static and inefficiently internalized. Moreover, we identified membrane cholesterol and the branched actin cytoskeleton as key regulators of IL-2Rγ clustering and IL-2-induced signaling. Both cholesterol depletion and Arp2/3 inhibition lead to the assembly of large IL-2Rγ clusters, arising from the stochastic interaction of receptor molecules in close correlation with their enhanced lateral diffusion at the membrane, thus resulting in a default in IL-2R endocytosis. Despite similar clustering outcomes, while cholesterol depletion leads to a sustained IL-2-dependent signaling, Arp2/3 inhibition prevents signal initiation. Taken together, our results reveal the importance of cytokine receptor clustering for CIE initiation and signal transduction.

摘要

白细胞介素-2 受体 (IL-2R) 是一种对于免疫至关重要的细胞因子受体,它可以传递受其摄取和降解调节的增殖信号。IL-2R 是无网格蛋白内吞作用 (CIE) 的一个众所周知的标志物,该过程不涉及任何网格蛋白,这就提出了一个问题,即 CIE 小泡是如何产生的。在这里,我们研究了 IL-2Rγ 聚集对其内吞作用的影响。我们结合 CRISPR 编辑的 T 细胞系的全内反射荧光 (TIRF) 活细胞成像,该细胞系内源性表达被绿色荧光蛋白 (GFP) 标记的 IL-2Rγ,进行多通道成像、单分子跟踪和定量分析,我们能够实时解析 IL-2Rγ 在质膜上的化学计量。我们确定了三种不同的 IL-2Rγ 簇群体。IL-2Rγ 作为最大三个分子的预组装小簇被分泌到细胞表面,在质膜上快速扩散。由四到六个分子组成的中等大小的簇是 IL-2R 内化的关键,并且由白细胞介素 2 (IL-2) 结合促进,而更大的簇(超过六个分子)是静态的,并且内吞效率低。此外,我们发现膜胆固醇和分支肌动蛋白细胞骨架是 IL-2Rγ 聚类和 IL-2 诱导信号的关键调节剂。胆固醇耗竭和 Arp2/3 抑制均导致大的 IL-2Rγ 簇的组装,这是由于受体分子在密切相关的情况下随机相互作用,与它们在膜上的增强侧向扩散相关联,从而导致 IL-2R 内吞作用的默认。尽管具有相似的聚类结果,但胆固醇耗竭导致持续的依赖于 IL-2 的信号,而 Arp2/3 抑制阻止信号起始。总之,我们的结果揭示了细胞因子受体聚类对于 CIE 起始和信号转导的重要性。

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