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鼠和人 GITR-GITRL 复合物的结构揭示了独特的 TNF 超家族相互作用。

Structures of mouse and human GITR-GITRL complexes reveal unique TNF superfamily interactions.

机构信息

Discovery Biotherapeutics, Bristol Myers Squibb, Redwood City, CA, USA.

Discovery Chemistry, Bristol Myers Squibb, Redwood City, CA, USA.

出版信息

Nat Commun. 2021 Mar 2;12(1):1378. doi: 10.1038/s41467-021-21563-z.

Abstract

Glucocorticoid-induced tumor necrosis factor receptor-related protein (GITR) and GITR ligand (GITRL) are members of the tumor necrosis superfamily that play a role in immune cell signaling, activation, and survival. GITR is a therapeutic target for directly activating effector CD4 and CD8 T cells, or depleting GITR-expressing regulatory T cells (Tregs), thereby promoting anti-tumor immune responses. GITR activation through its native ligand is important for understanding immune signaling, but GITR structure has not been reported. Here we present structures of human and mouse GITR receptors bound to their cognate ligands. Both species share a receptor-ligand interface and receptor-receptor interface; the unique C-terminal receptor-receptor enables higher order structures on the membrane. Human GITR-GITRL has potential to form a hexameric network of membrane complexes, while murine GITR-GITRL complex forms a linear chain due to dimeric interactions. Mutations at the receptor-receptor interface in human GITR reduce cell signaling with in vitro ligand binding assays and minimize higher order membrane structures when bound by fluorescently labeled ligand in cell imaging experiments.

摘要

糖皮质激素诱导的肿瘤坏死因子受体相关蛋白(GITR)和 GITR 配体(GITRL)是肿瘤坏死超家族的成员,它们在免疫细胞信号转导、激活和存活中发挥作用。GITR 是直接激活效应性 CD4 和 CD8 T 细胞或耗尽表达 GITR 的调节性 T 细胞(Tregs)的治疗靶点,从而促进抗肿瘤免疫反应。通过其天然配体激活 GITR 对于理解免疫信号很重要,但 GITR 结构尚未报道。在这里,我们展示了与人源和鼠源 GITR 受体结合的其同源配体的结构。这两个物种都共享受体-配体界面和受体-受体界面;独特的 C 端受体-受体使膜上具有更高阶的结构。人源 GITR-GITRL 具有形成膜复合物六聚体网络的潜力,而由于二聚体相互作用,鼠源 GITR-GITRL 复合物形成线性链。人源 GITR 受体-受体界面的突变会降低体外配体结合测定中的细胞信号转导,并在细胞成像实验中结合荧光标记配体时最小化高阶膜结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a33/7925557/6ed4560cdb39/41467_2021_21563_Fig1_HTML.jpg

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