Institut de Recherche en Immunologie et Cancérologie, 2950 Chemin de la Polytechnique, Montréal, Québec H3T1J4, Canada.
Département de Microbiologie, Infectiologie et Immunologie, Faculté de Médecine, Université de Montréal, 2900 Édouard-Montpetit, Montréal, Québec H3T1J4, Canada.
Sci Signal. 2021 Mar 23;14(675):eabb5146. doi: 10.1126/scisignal.abb5146.
Electrostatic interactions regulate many aspects of T cell receptor (TCR) activity, including enabling the dynamic binding of the TCR-associated CD3ε and CD3ζ chains to anionic lipids in the plasma membrane to prevent spontaneous phosphorylation. Substantial changes in the electrostatic potential of the plasma membrane occur at the immunological synapse, the interface between a T cell and an antigen-presenting cell. Here, we investigated how the electrostatic interactions that promote dynamic membrane binding of the TCR-CD3 cytoplasmic domains are modulated during signaling and affect T cell activation. We found that Ca-dependent activation of the phosphatidylserine scramblase TMEM16F, which was previously implicated in T cell activation, reduced the electrostatic potential of the plasma membrane during immunological synapse formation by locally redistributing phosphatidylserine. This, in turn, increased the dissociation of bystander TCR-CD3 cytoplasmic domains from the plasma membrane and enhanced TCR-dependent signaling and consequently T cell activation. This study establishes the molecular basis for the role of TMEM16F in bystander TCR-induced signal amplification and identifies enhancement of TMEM16F function as a potential therapeutic strategy for promoting T cell activation.
静电相互作用调节 T 细胞受体 (TCR) 活性的许多方面,包括使 TCR 相关的 CD3ε 和 CD3ζ 链与质膜中的阴离子脂质动态结合,以防止自发磷酸化。在免疫突触(T 细胞与抗原呈递细胞之间的界面)处,质膜的静电势会发生显著变化。在这里,我们研究了在信号转导过程中促进 TCR-CD3 胞质结构域动态膜结合的静电相互作用如何被调节,并影响 T 细胞的激活。我们发现,先前被认为与 T 细胞激活有关的磷酸丝氨酸翻转酶 TMEM16F 的 Ca 依赖性激活通过局部重新分布磷脂酰丝氨酸,在免疫突触形成过程中降低质膜的静电势。这反过来又增加了旁观者 TCR-CD3 胞质结构域与质膜的解离,并增强了 TCR 依赖性信号转导,从而促进了 T 细胞的激活。这项研究确立了 TMEM16F 在旁观者 TCR 诱导的信号放大中的作用的分子基础,并确定增强 TMEM16F 功能是促进 T 细胞激活的一种潜在治疗策略。