Zhang Sensen, Yuan Baolei, Lam Jordy Homing, Zhou Jun, Zhou Xuan, Ramos-Mandujano Gerardo, Tian Xueyuan, Liu Yang, Han Renmin, Li Yu, Gao Xin, Li Mo, Yang Maojun
Ministry of Education Key Laboratory of Protein Science, Tsinghua-Peking Center for Life Sciences, Beijing Advanced Innovation Center for Structural Biology, Beijing Frontier Research Center for Biological Structure, School of Life Sciences, Tsinghua University, Beijing 100084, China.
Laboratory of Stem Cell and Regeneration, Biological and Environmental Sciences and Engineering (BESE) Division, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Kingdom of Saudi Arabia.
Cell Discov. 2021 May 4;7(1):30. doi: 10.1038/s41421-021-00259-0.
Pannexin1 (PANX1) is a large-pore ATP efflux channel with a broad distribution, which allows the exchange of molecules and ions smaller than 1 kDa between the cytoplasm and extracellular space. In this study, we show that in human macrophages PANX1 expression is upregulated by diverse stimuli that promote pyroptosis, which is reminiscent of the previously reported lipopolysaccharide-induced upregulation of PANX1 during inflammasome activation. To further elucidate the function of PANX1, we propose the full-length human Pannexin1 (hPANX1) model through cryo-electron microscopy (cryo-EM) and molecular dynamics (MD) simulation studies, establishing hPANX1 as a homo-heptamer and revealing that both the N-termini and C-termini protrude deeply into the channel pore funnel. MD simulations also elucidate key energetic features governing the channel that lay a foundation to understand the channel gating mechanism. Structural analyses, functional characterizations, and computational studies support the current hPANX1-MD model, suggesting the potential role of hPANX1 in pyroptosis during immune responses.
泛连接蛋白1(PANX1)是一种广泛分布的大孔ATP外流通道,它允许分子量小于1 kDa的分子和离子在细胞质和细胞外空间之间交换。在本研究中,我们发现,在人类巨噬细胞中,PANX1的表达会被多种促进细胞焦亡的刺激上调,这让人想起之前报道的在炎性小体激活过程中脂多糖诱导的PANX1上调。为了进一步阐明PANX1的功能,我们通过冷冻电子显微镜(cryo-EM)和分子动力学(MD)模拟研究提出了全长人类泛连接蛋白1(hPANX1)模型,确定hPANX1为同型七聚体,并揭示其N端和C端都深深伸入通道孔漏斗中。MD模拟还阐明了控制该通道的关键能量特征,为理解通道门控机制奠定了基础。结构分析、功能表征和计算研究支持当前的hPANX1-MD模型,表明hPANPANPANX1在免疫反应期间的细胞焦亡中具有潜在作用。