Department of Infectious Diseases & Immunology, Utrecht University, 3508 TD Utrecht, The Netherlands.
Department of Infectious Diseases & Immunology, Utrecht University, 3508 TD Utrecht, The Netherlands
Proc Natl Acad Sci U S A. 2018 Apr 3;115(14):E3221-E3229. doi: 10.1073/pnas.1719245115. Epub 2018 Mar 19.
Toll-like receptor 5 (TLR5) of mammals, birds, and reptiles detects bacterial flagellin and signals as a homodimeric complex. Structural studies using truncated TLR5b of zebrafish confirm the homodimeric TLR5-flagellin interaction. Here we provide evidence that zebrafish () TLR5 unexpectedly signals as a heterodimer composed of the duplicated gene products drTLR5b and drTLR5a. Flagellin-induced signaling by the zebrafish TLR5 heterodimer increased in the presence of the TLR trafficking chaperone UNC93B1. Targeted exchange of drTLR5b and drTLR5a regions revealed that TLR5 activation needs a heterodimeric configuration of the receptor ectodomain and cytoplasmic domain, consistent with ligand-induced changes in receptor conformation. Structure-guided substitution of the presumed principal flagellin-binding site in human TLR5 with corresponding zebrafish TLR5 residues abrogated human TLR5 activation, indicating a species-specific TLR5-flagellin interaction. Our findings indicate that the duplicated TLR5 of zebrafish underwent subfunctionalization through concerted coevolution to form a unique heterodimeric flagellin receptor that operates fundamentally differently from TLR5 of other species.
哺乳动物、鸟类和爬行动物的 Toll 样受体 5(TLR5)检测细菌鞭毛蛋白并作为同二聚体复合物发出信号。使用斑马鱼截断的 TLR5b 的结构研究证实了 TLR5-鞭毛蛋白的同二聚体相互作用。在这里,我们提供的证据表明,斑马鱼 TLR5 出人意料地作为由重复基因产物 drTLR5b 和 drTLR5a 组成的异二聚体发出信号。在 TLR 运输伴侣 UNC93B1 的存在下,斑马鱼 TLR5 异二聚体诱导的信号增加。drTLR5b 和 drTLR5a 区域的靶向交换表明,TLR5 的激活需要受体胞外域和胞质域的异二聚体构型,与配体诱导的受体构象变化一致。用相应的斑马鱼 TLR5 残基替代假定的人 TLR5 中的主要鞭毛蛋白结合位点的结构导向取代消除了人 TLR5 的激活,表明 TLR5-鞭毛蛋白相互作用具有种属特异性。我们的研究结果表明,斑马鱼的重复 TLR5 经历了协同共进化的亚功能化,形成了一种独特的异二聚体鞭毛蛋白受体,其基本作用方式与其他物种的 TLR5 不同。