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On the TRAIL of Better Therapies: Understanding TNFRSF Structure-Function

机译:关于更好疗法的TRAIL:了解TNFRSF的结构功能

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摘要

Tumor necrosis factor (TNF) superfamily ligands show diverse biological functions, such as the induction of apoptotic cell death or cell survival and proliferation, making them excellent therapeutic targets for cancer and autoimmunity. We review the latest literature on TNF receptor superfamily signaling with a focus on structure-function. Using combinatorics, we argue that receptors that cluster on the cell surface and are activated by membrane-bound ligands need to arrange in a highly ordered manner, as the probability of random ligand and receptor arrangements matching up for receptor activation is very low. A growing body of evidence indicates that antiparallel receptor dimers that sequester the ligand binding site cluster on the cell surface, forming a hexagonal lattice. Upon ligand binding, this arrangement puts the activated receptors at the right distance to accommodate the downstream signaling partners. The data also suggest that the same geometry is utilized regardless of receptor type. The unified model provides important clues about TNF receptor signaling and should aid the design of better therapies for cancer and various immune mediated diseases.
机译:肿瘤坏死因子(TNF)超家族配体具有多种生物学功能,例如诱导凋亡细胞死亡或细胞存活与增殖,使其成为癌症和自身免疫的极佳治疗靶标。我们回顾了有关TNF受体超家族信号转导的最新文献,重点是结构功能。使用组合剂,我们认为聚集在细胞表面并被膜结合的配体激活的受体需要以高度有序的方式排列,因为随机配体和受体排列匹配受体激活的可能性非常低。越来越多的证据表明,螯合配体结合位点的反平行受体二聚体聚集在细胞表面,形成六边形晶格。配体结合后,这种安排可使活化的受体处于正确的距离,以适应下游的信号传导伴侣。数据还表明,无论受体类型如何,都使用相同的几何形状。统一的模型提供了有关TNF受体信号传导的重要线索,并应有助于设计更好的癌症和各种免疫介导疾病疗法。

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