磷酸戊糖途径
细胞生物学
转醛醇酶
生物化学
效应器
化学
生物
代谢途径
转酮酶
烟酰胺腺嘌呤二核苷酸磷酸
T细胞
糖酵解
癌症免疫疗法
细胞毒性T细胞
氧化磷酸化
下调和上调
焊剂(冶金)
mTORC1型
NADPH氧化酶
西妥因1
基因敲除
新陈代谢
信号转导
CD8型
转录组
细胞
活性氧
作者
Jingyu Feng,Qian Zhang,Li Luo,Zhichao Gu,Wen Liu,Jingsong Xu,Mengxin Qi,Zhongji Meng,Lin Li,Liangliang Lin,Zhuoshun Yang,Huafeng Zhang
标识
DOI:10.1073/pnas.2526325123
摘要
NADPH is essential for cellular biosynthesis and redox balance in CD8 + T cells. Here, we demonstrate that the nonoxidative pentose phosphate pathway (non-oxPPP), mediated by transketolase (TKT) and transaldolase (TALDO1), is critical for CD8 + T cell activation, proliferation, and memory formation by maintaining NADPH homeostasis. Metabolomic profiling and isotopic tracing revealed upregulated non-oxPPP flux in effector (T eff ) and memory (T m ) CD8 + T cells, enabling a pentose cycle that amplifies NADPH yield and sustains metabolic fitness for T cell immunity. Genetic knockdown or pharmacological inhibition of Tkt or Taldo1 impaired NADPH production, leading to ribose-5-phosphate (R5P) accumulation, oxidative stress, reduced lipid synthesis, mitochondrial dysfunction, and compromised T eff cell proliferation, cytokine production, and antitumor efficacy. Conversely, enhancing non-oxPPP activity promoted T m differentiation, persistence, and recall responses. Targeting the non-oxPPP represents a promising strategy to enhance cancer immunotherapy and vaccine efficacy by bolstering T cell effector and memory responses.
科研通智能强力驱动
Strongly Powered by AbleSci AI