PO.IM02.01 · 免疫学
IL-33/JAK2/RAB21/PLD4-鞘脂网络驱动胃癌发生
IL-33/JAK2/RAB21/PLD4-Sphingolipid network drives gastric carcinogenesis
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胃癌(GC)是全球第五大最常见的恶性肿瘤和第四大癌症死亡原因,Helicobacter pylori感染与饮酒通过加剧胃黏膜炎症协同促进其发生。为界定胃炎向癌转变过程中的关键生物标志物,并识别用于一级预防和治疗的可干预靶点,我们整合了Helicobacter pylori加酒精诱导的GC小鼠模型以及人胃炎/GC组织的蛋白质组学和代谢组学分析。结果显示Ras相关蛋白RAB21在胃炎和胃癌组织中显著上调,代谢组学确定鞘脂代谢重编程是GC肿瘤发生的关键特征。体外实验表明,RAB21下调抑制GC细胞增殖;体内研究(包括RAB21条件性敲除小鼠)进一步证明RAB21缺失抑制GC肿瘤发生。机制上,RAB21与酪氨酸蛋白激酶JAK2结合,并被JAK2在酪氨酸88位磷酸化,从而调控5'-3'外切酶PLD4的表达和磷脂酶活性。Helicobacter pylori加酒精诱导上调的白细胞介素-33(IL-33)通过叉头框蛋白P3(FOXP3)促进JAK2和RAB21的表达,促进RAB21核转位以调控PLD4表达,并与磷脂酸-鞘氨醇激酶-鞘氨醇-1-磷酸鞘氨醇(PA-SPHK-SPHG-S1P)代谢通量汇聚,共同驱动GC肿瘤发生与进展。本研究阐明了胃癌发生中的蛋白-代谢网络,为靶向IL-33/JAK2/RAB21/PLD4-鞘脂代谢轴以预防和治疗GC提供了实验依据。
查看英文原文 English abstract
Gastric cancer (GC), the fifth most prevalent malignancy and fourth leading cause of cancer mortality globally, is synergistically promoted by Helicobacter pylori infection and alcohol consumption through exacerbated gastric mucosal inflammation. To delineate key biomarkers in the gastritis-to-cancer transition and identify actionable targets for primary prevention and therapy, we integrated proteomic and metabolomic analyses of Helicobacter pylori plus alcohol induced GC mouse model and human gastritis/GC tissues. It revealed that significant Ras-related protein RAB21 is upregulated in gastritis and gastric cancer tissues, and metabolomics identified sphingolipid metabolism reprogramming is a key signature in GC tumorigenesis. I n vitro experiments showed that RAB21 downregulation suppressed GC cell proliferation, and in vivo studies including RAB21 conditional knockout mice further demonstrated that RAB21 depletion inhibited GC tumorigenesis. Mechanistically, RAB21 binds to tyrosine-protein kinase JAK2 and is phosphorylated at tyrosine 88 by JAK2, regulating expression and phospholipase activity of 5'-3' exonuclease PLD4. Helicobacter pylori plus alcohol induced upregulated interleukin-33 (IL-33) promotes JAK2 and RAB21 expression via forkhead box protein P3 (FOXP3), promoting RAB21 nuclear translocation to regulate PLD4 expression, and converged with the phosphatidic acid-sphingosine kinase-sphingosine-sphingosine 1-phosphate (PA-SPHK-SPHG-S1P) metabolic flux to drive GC tumorigenesis and progression. This study elucidates the protein-metabolic network in gastric carcinogenesis and provides experimental rationale for targeting IL-33/JAK2/RAB21/PLD4-sphingolipid metabolism axis for GC prevention and treatment.
利益披露 Disclosure
H. Liu, None..
Y. Ge, None..
Y. Zhou, None..
H. Liu, None..
Z. Dong, None.