College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, China; School of Basic Medicine and Clinical Pharmacy and State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, China.
School of Basic Medicine and Clinical Pharmacy and State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, China.
J Biol Chem. 2022 Jun;298(6):102002. doi: 10.1016/j.jbc.2022.102002. Epub 2022 Apr 30.
P2X receptors are a class of nonselective cation channels widely distributed in the immune and nervous systems, and their dysfunction is a significant cause of tumors, inflammation, leukemia, and immune diseases. P2X7 is a unique member of the P2X receptor family with many properties that differ from other subtypes in terms of primary sequence, the architecture of N- and C-terminals, and channel function. Here, we suggest that the observed lengthened β2- and β3-sheets and their linker (loop β2,3), encoded by redundant sequences, play an indispensable role in the activation of the P2X7 receptor. We show that deletion of this longer structural element leads to the loss of P2X7 function. Furthermore, by combining mutagenesis, chimera construction, surface expression, and protein stability analysis, we found that the deletion of the longer β2,3-loop affects P2X7 surface expression but, more importantly, that this loop affects channel gating of P2X7. We propose that the longer β2,3-sheets may have a negative regulatory effect on a loop on the head domain and on the structural element formed by E171 and its surrounding regions. Understanding the role of the unique structure of the P2X7 receptor in the gating process will aid in the development of selective drugs targeting this subtype.
P2X 受体是一类广泛分布于免疫系统和神经系统中的非选择性阳离子通道,其功能障碍是肿瘤、炎症、白血病和自身免疫性疾病的重要原因。P2X7 是 P2X 受体家族的一个独特成员,其一级序列、N 和 C 末端结构以及通道功能与其他亚型有许多不同。在这里,我们提出观察到的延长的β2 和β3 片层及其连接环(β2,3 环)由冗余序列编码,在 P2X7 受体的激活中发挥不可或缺的作用。我们表明,删除这个更长的结构元件会导致 P2X7 功能丧失。此外,通过结合突变、嵌合体构建、表面表达和蛋白质稳定性分析,我们发现较长的β2,3-环缺失会影响 P2X7 的表面表达,但更重要的是,该环会影响 P2X7 的通道门控。我们提出,较长的β2,3-片层可能对头部结构域上的一个环以及由 E171 及其周围区域形成的结构元件产生负调节作用。了解 P2X7 受体独特结构在门控过程中的作用将有助于开发针对该亚型的选择性药物。