PO.MCB04.02 · 分子与细胞生物学
将PON2定义为肺腺癌中铁氧化还原平衡与铁死亡防御的代谢性免疫检查点
Defining PON2 as a metabolic immune checkpoint of iron redox balance and ferroptotic defense in lung adenocarcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
肺腺癌(LUAD)是非小细胞肺癌的主要亚型,它通过对线粒体和代谢网络的适应性重塑在持续的氧化应激中存活。因此,氧化还原平衡决定了LUAD细胞是能够抵御氧化压力,还是屈服于铁死亡——一种由脂质过氧化驱动的调控性细胞死亡形式¹。线粒体酶对氧磷酶2(PON2)作为一种内源性抗氧化剂发挥作用,可解毒脂质过氧化物并维持呼吸链的完整性²。在LUAD中,NRF2(NFE2L2)的慢性激活(常常通过KEAP1的缺失)驱动了持续性的抗氧化程序,涉及谷胱甘肽合成以及GPX4、FSP1和PON2依赖性的铁死亡防御³⁻⁴。这些氧化还原绝缘状态促进了代谢韧性,抑制了免疫原性细胞死亡(ICD),并强化了免疫排斥性的肿瘤结构⁴⁻⁵。我们将PON2确定为一种代谢性免疫检查点,它将NRF2/KEAP1驱动的氧化还原适应与铁死亡抵抗和免疫逃逸整合在一起。整合基因组学、空间和功能分析揭示,PON2表达可依据铁死亡易感性对LUAD进行分层,并与抗氧化及铁处理网络(TFRC、FTH1、FTL)相一致;PON2缺失会增加脂质过氧化物负荷、扰乱线粒体通量,并在患者来源的LUAD模型中增强ICD信号⁶。这些发现阐明了PON2如何强制施加铁死亡抵抗和免疫隐匿性,揭示了可作为靶点的氧化还原代谢瓶颈,可加以利用以恢复肿瘤免疫原性⁶。
查看英文原文 English abstract
Lung adenocarcinoma (LUAD), the predominant subtype of non-small cell lung cancer, survives persistent oxidative stress through adaptive remodeling of mitochondrial and metabolic networks. Redox equilibrium therefore dictates whether LUAD cells withstand oxidative pressure or succumb to ferroptosis; a lipid peroxidation driven form of regulated cell death¹. The mitochondrial enzyme paraoxonase 2 (PON2) functions as an intrinsic antioxidant that detoxifies lipid peroxides and sustains respiratory integrity². In LUAD, chronic activation of NRF2 (NFE2L2); frequently through loss of KEAP1, drives constitutive antioxidant programs involving glutathione synthesis and GPX4, FSP1, and PON2 dependent ferroptosis defenses³ - ⁴. These redox insulated states promote metabolic resilience, suppress immunogenic cell death (ICD), and reinforce immune excluded tumor architectures⁴ - ⁵.We identify PON2 as a metabolic immune checkpoint that integrates NRF2/KEAP1 driven redox adaptation with ferroptosis resistance and immune escape. Integrative genomic, spatial, and functional analyses reveal that PON2 expression stratifies LUAD by ferroptotic vulnerability; aligns with antioxidant and iron handling networks (TFRC, FTH1, FTL); and that PON2 loss increases lipid peroxide burden, disrupts mitochondrial flux, and heightens ICD signaling in patient derived LUAD models.These findings delineate how PON2 enforces ferroptosis resistance and immune invisibility, revealing targetable redox metabolic bottlenecks that could be leveraged to restore tumor immunogenicity⁶.
利益披露 Disclosure
Y. Amzaleg, None..
A. Perez-Hunt, None..
C. Li, None..
A. M. Neely, None.