DPP9 Stabilizes NRF2 to Suppress Ferroptosis and Induce Sorafenib Resistance in Clear Cell Renal Cell Carcinoma

肾透明细胞癌 KEAP1型 癌症研究 转录因子 下调和上调 癌变 调节器 化学 细胞生长 细胞 索拉非尼 过度活跃 mTORC1型 生物 细胞凋亡 肾细胞癌 生物化学 医学 内科学 PI3K/AKT/mTOR通路 肝细胞癌 基因
作者
Kun Chang,Yingji Chen,Xuanzhi Zhang,Wei Zhang,Ning Xu,Bohan Zeng,Yue Wang,Tao Feng,Bo Dai,Fujiang Xu,Dingwei Ye,Chenji Wang
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:83 (23): 3940-3955 被引量:93
标识
DOI:10.1158/0008-5472.can-22-4001
摘要

The KEAP1-NRF2 axis is the principal regulator of cellular responses to oxidative and electrophilic stressors. NRF2 hyperactivation is frequently observed in many types of cancer and promotes cancer initiation, progression, metastasis, and resistance to various therapies. Here, we determined that dipeptidyl peptidase 9 (DPP9) is a regulator of the KEAP1-NRF2 pathway in clear cell renal cell carcinoma (ccRCC). DPP9 was markedly overexpressed at the mRNA and protein levels in ccRCC, and high DPP9 expression levels correlated with advanced tumor stage and poor prognosis in patients with ccRCC. Protein affinity purification to identify functional partners of DPP9 revealed that it bound to KEAP1 via a conserved ESGE motif. DPP9 disrupted KEAP1-NRF2 binding by competing with NRF2 for binding to KEAP1 in an enzyme-independent manner. Upregulation of DPP9 led to stabilization of NRF2, driving NRF2-dependent transcription and thereby decreasing cellular reactive oxygen species levels. Moreover, DPP9 overexpression suppressed ferroptosis and induced resistance to sorafenib in ccRCC cells, which was largely dependent on the NRF2 transcriptional target SLC7A11. Collectively, these findings indicate that the accumulation of DPP9 results in hyperactivation of the NRF2 pathway to promote tumorigenesis and intrinsic drug resistance in ccRCC. SIGNIFICANCE: DPP9 overcomes oxidative stress and suppresses ferroptosis in ccRCC by binding to KEAP1 and promoting NRF2 stability, which drives tumor development and sorafenib resistance.
最长约 10秒,即可获得该文献文件

科研通智能强力驱动
Strongly Powered by AbleSci AI
科研通是完全免费的文献互助平台,具备全网最快的应助速度,最高的求助完成率。 对每一个文献求助,科研通都将尽心尽力,给求助人一个满意的交代。
实时播报
骆驼发布了新的文献求助10
1秒前
柒柒完成签到,获得积分10
1秒前
qinkoko完成签到,获得积分10
1秒前
1秒前
1秒前
斯文败类应助闫仕采纳,获得10
1秒前
1秒前
1秒前
1秒前
WWL发布了新的文献求助30
1秒前
眉间一把刀完成签到,获得积分20
1秒前
领导范儿应助yx采纳,获得10
1秒前
徐笑松完成签到 ,获得积分10
2秒前
2秒前
香蕉觅云应助ZIYU采纳,获得10
2秒前
wanci应助关中人采纳,获得10
3秒前
化合物来发布了新的文献求助10
3秒前
4秒前
爆米花应助Mininine采纳,获得10
4秒前
4秒前
艾伦发布了新的文献求助10
4秒前
琅琊为刃完成签到,获得积分10
4秒前
5秒前
1332117762完成签到,获得积分10
5秒前
manman完成签到,获得积分10
5秒前
周才发布了新的文献求助10
6秒前
顺利睫毛关注了科研通微信公众号
7秒前
琅琊为刃发布了新的文献求助10
7秒前
7秒前
隐形曼青应助李钧鹏采纳,获得10
7秒前
YMing发布了新的文献求助10
7秒前
田様应助小卢同学采纳,获得10
7秒前
嘞是举仔发布了新的文献求助10
7秒前
8秒前
糖堆儿爱吃糖完成签到,获得积分10
8秒前
酷波er应助无私惜雪采纳,获得30
8秒前
9秒前
青大最亮的仔完成签到,获得积分10
9秒前
科研通AI6.1应助WWL采纳,获得10
10秒前
10秒前
高分求助中
(应助此贴封号)【重要!!请各用户(尤其是新用户)详细阅读】【科研通的精品贴汇总】 10000
Adhesion Science: Principles & Practice 800
The Graphene Handbook (2019 Edition) 700
Signals, Systems, and Signal Processing 610
IEST-RP-CC018: Cleanroom Cleaning and Sanitization: Operating and Monitoring Procedures 600
Fundamentals of Pharmaceutical and Biologics Regulations: A Global Perspective, Second Edition 600
Fundamentals of Modern Mathematics: A Practical Review (Dover Books on Mathematics) 500
热门求助领域 (近24小时)
化学 材料科学 医学 生物 纳米技术 工程类 有机化学 化学工程 生物化学 计算机科学 物理 内科学 复合材料 催化作用 物理化学 光电子学 电极 细胞生物学 基因 无机化学
热门帖子
关注 科研通微信公众号,转发送积分 6532357
求助须知:如何正确求助?哪些是违规求助? 8325231
关于积分的说明 17828372
捐赠科研通 5633673
什么是DOI,文献DOI怎么找? 2933395
邀请新用户注册赠送积分活动 1909724
关于科研通互助平台的介绍 1768702