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TMEM72 通过激活 P38/MAPK 信号通路促进细胞衰老从而抑制肾细胞癌的增殖

英文原题:TMEM72 Inhibits the proliferation by promoting cellular senescence through the activation of the P38/MAPK signaling pathway in renal cell carcinoma.

查看英文原题

TMEM72 Inhibits the proliferation by promoting cellular senescence through the activation of the P38/MAPK signaling pathway in renal cell carcinoma.

PubMed 2026/05/02(内容时间) Transl Oncol Q2 · IF 4.9(JCR 2025)

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研究概要

TMEM72 通过促进 p38/MAPK 依赖性细胞衰老抑制 RCC 进展,并可能有助于肿瘤免疫微环境重塑,凸显其作为预后生物标志物和治疗靶点的潜力。

研究思路结论见上方概要

肾细胞癌(RCC)是一种高度异质性的恶性肿瘤,缺乏可靠的预后生物标志物和有效的治疗靶点。TMEM72是一种肾脏富集蛋白,在RCC中表达失调,但其生物学功能及潜在机制尚不清楚。

对配对的RCC和癌旁组织进行蛋白质组学分析,以鉴定差异表达蛋白。利用TCGA-KIRC队列和一个独立患者队列验证TMEM72的表达及临床相关性。在功能获得和功能缺失RCC模型中开展功能实验,包括增殖、细胞周期和衰老分析,并使用异种移植模型评估体内效应。进行RNA测序、单细胞分析和免疫浸润分析,以探索潜在机制。

TMEM72在RCC中显著下调,其低表达与不良预后相关。TMEM72过表达抑制RCC细胞增殖和肿瘤生长,而其沉默则促进肿瘤进展。机制上,TMEM72诱导G1/S细胞周期阻滞并促进细胞衰老。进一步分析显示,TMEM72激活p38/MAPK信号通路,导致p38和p53磷酸化增强,而p38的药理学抑制部分逆转了这些效应。免疫微环境分析显示,TMEM72主要表达于上皮细胞和恶性细胞中,并与抗肿瘤免疫细胞(包括M1巨噬细胞、单核细胞和NK细胞)的浸润正相关,但与免疫抑制性细胞群如调节性T细胞和M0巨噬细胞负相关。

展开英文摘要原文

Renal cell carcinoma (RCC) is a highly heterogeneous malignancy lacking reliable prognostic biomarkers and effective therapeutic targets. TMEM72, a kidney-enriched protein, is dysregulated in RCC, yet its biological function and underlying mechanisms remain unclear.

Proteomic profiling of paired RCC and adjacent tissues was performed to identify differentially expressed proteins. TMEM72 expression and clinical relevance were validated using the TCGA-KIRC cohort and an independent patient cohort. Functional assays, including proliferation, cell cycle, and senescence analyses, were conducted in gain- and loss-of-function RCC models, and in vivo effects were evaluated using a xenograft model. RNA sequencing, single-cell analysis, and immune infiltration analysis were performed to explore underlying mechanisms.

TMEM72 was significantly downregulated in RCC and its low expression was associated with poor prognosis. TMEM72 overexpression suppressed RCC cell proliferation and tumor growth, whereas its silencing promoted tumor progression. Mechanistically, TMEM72 induced G1/S cell cycle arrest and promoted cellular senescence. Further analyses revealed that TMEM72 activated the p38/MAPK signaling pathway, leading to enhanced phosphorylation of p38 and p53, while pharmacological inhibition of p38 partially reversed these effects. Immune microenvironment analysis showed that TMEM72 was predominantly expressed in epithelial and malignant cells and was positively associated with infiltration of anti-tumor immune cells, including M1 macrophages, monocytes, and NK cells, but negatively correlated with immunosuppressive populations such as regulatory T cells and M0 macrophages.

TMEM72 suppresses RCC progression by promoting p38/MAPK-dependent cellular senescence and may contribute to tumor immune microenvironment remodeling, highlighting its potential as a prognostic biomarker and therapeutic target.

论文信息

作者
Dai F、Wang H、Chu W、Lin Y、He J、Wen H、Feng X、Liu X
第一作者单位
Department of Urology, Peking University Shenzhen Hospital, The First Affiliated Hospital of Anhui Medical University, PKU-Shenzhen Clinical Institute of Anhui Medical University, Shenzhen, 518036, China; Shenzhen Clinical Research Center for Urology and Nephrology, Shenzhen Key Laboratory of Male Reproduction and Genetics, Peking University Shenzhen Hospital, Shenzhen, 518036, China.China
通讯作者单位
Department of Urology, Peking University Shenzhen Hospital, The First Affiliated Hospital of Anhui Medical University, PKU-Shenzhen Clinical Institute of Anhui Medical University, Shenzhen, 518036, China; Shenzhen Clinical Research Center for Urology and Nephrology, Shenzhen Key Laboratory of Male Reproduction and Genetics, Peking University Shenzhen Hospital, Shenzhen, 518036, China; Institute of Precision Medicine, Peking University Shenzhen Hospital, PKU-Shenzhen Clinical Institute of Shantou University Medical College, Shenzhen 518036, China. Electronic address: zhaojielv@pkuszh.com.China
期刊
Translational oncology2026 Jul
原文标识
PubMed 42070504 · DOI 10.1016/j.tranon.2026.102789