Zhao Linlin, Fu Qingshan, Pan Liqiang, Piai Alessandro, Chou James J
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, United States.
Front Cell Dev Biol. 2020 Oct 14;8:569684. doi: 10.3389/fcell.2020.569684. eCollection 2020.
Receptors in the tumor necrosis factor receptor superfamily (TNFRSF) regulate proliferation of immune cells or induce programmed cell death, and many of them are candidates for antibody-based immunotherapy. Previous studies on several death receptors in the TNFRSF including Fas, p75NTR, and DR5 showed that the transmembrane helix (TMH) of these receptors can specifically oligomerize and their oligomeric states have direct consequences on receptor activation, suggesting a much more active role of TMH in receptor signaling than previously appreciated. Here, we report the structure of the TMH of TNFR1, another well studied member of the TNFRSF, in neutral bicelles that mimic a lipid bilayer. We find that TNFR1 TMH forms a defined trimeric complex in bicelles, and no evidences of higher-order clustering of trimers have been detected. Unexpectedly, a conserved proline, which is critical for Fas TMH trimerization, does not appear to play an important role in TNFR1 TMH trimerization, which is instead mediated by a glycine near the middle of the TMH. Further, TNFR1 TMH trimer shows a larger hydrophobic core than that of Fas or DR5, with four layers of hydrophobic interaction along the threefold axis. Comparison of the TNFR1 TMH structure with that of Fas and DR5 reveals reassuring similarities that have functional implications but also significant structural diversity that warrants systematic investigation of TMH oligomerization property for other members of the TNFRSF.
肿瘤坏死因子受体超家族(TNFRSF)中的受体调节免疫细胞的增殖或诱导程序性细胞死亡,其中许多是基于抗体的免疫疗法的候选对象。先前对TNFRSF中包括Fas、p75NTR和DR5在内的几种死亡受体的研究表明,这些受体的跨膜螺旋(TMH)可以特异性寡聚,其寡聚状态对受体激活有直接影响,这表明TMH在受体信号传导中的作用比以前认识到的更为活跃。在这里,我们报道了TNFRSF中另一个经过充分研究的成员TNFR1的TMH在模拟脂质双层的中性双分子层中的结构。我们发现TNFR1 TMH在双分子层中形成了一个确定的三聚体复合物,并且未检测到三聚体高阶聚集的证据。出乎意料的是,对Fas TMH三聚化至关重要的一个保守脯氨酸似乎在TNFR1 TMH三聚化中并不起重要作用,相反,它是由TMH中部附近的一个甘氨酸介导的。此外,TNFR1 TMH三聚体显示出比Fas或DR5更大的疏水核心,沿三重轴有四层疏水相互作用。将TNFR1 TMH结构与Fas和DR5的结构进行比较,发现了令人放心的相似之处,这些相似之处具有功能意义,但也存在显著的结构差异,这值得对TNFRSF其他成员的TMH寡聚化特性进行系统研究。