日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

c-JUN enhances CRISPR knockin anti-B7-H3 CAR T cell function in small cell lung cancer and thoracic SMARCA4-deficient undifferentiated tumors

c-JUN增强CRISPR敲入抗B7-H3 CAR T细胞在小细胞肺癌和胸腔SMARCA4缺陷型未分化肿瘤中的功能

Hyatt Balke-Want,Vimal Keerthi,Maria Del Carmen Arenas,Yiyun Chen,Meena Malipatlolla,Dorota D Klysz,Peng Xu,Katie Ho,Kyle Asano,David Stahl,Jing Huang,Aidan Retherford,Sunny Patel,Carley Fowler,Lukas Maas,Nikolaos Gkitsas-Long,Qiaoshi Jiang,Xikun Liu,Roland Ullrich,Julie George,Sabine Heitzeneder,Ramya Tunuguntla,Julien Sage,Elena Sotillo,Crystal L Mackall,Steven A Feldman

Antiemetic drug fosaprepitant exerts anti-tumor effects against NSCLC by targeting FAK to inhibit AKT and JNK/c-Jun pathways

止吐药福沙匹坦通过靶向FAK抑制AKT和JNK/c-Jun通路,发挥抗非小细胞肺癌的肿瘤作用。

Wang, Ying; Shao, Yu-Na; Ma, Chen-Kang; Shu, Chen-Ying; Zhang, Yi-Hua; Lu, Di; Zhang, Hui-Ling; Zhu, Jian-Jie; Zeng, Yuan-Yuan; Li, Jian-Jun; Yan, Zhao-Wei; Liu, Ze-Yi

Ubiquitination of Rhomboid 5 Homolog 2 by Constitutive Photomorphogenic 1 Alleviates Hepatic Ischemia-reperfusion Injury by Regulating the Transforming Growth Factor-β Activating Kinase 1-C-Jun N-terminal Kinase/p38 Signaling Pathway.

组成型光形态发生蛋白 1 对 Rhomboid 5 同源物 2 的泛素化通过调节转化生长因子-β激活激酶 1-C-Jun N 端激酶/p38 信号通路减轻肝脏缺血再灌注损伤。

Li Wendong, Wu Tongtong, Li Hao, Guan Zhenyu, Ding Mingjie, Guo Wenzhi

c-Jun in neurodegeneration: A key transcriptional regulator with therapeutic implications

c-Jun在神经退行性疾病中的作用:一种具有治疗意义的关键转录调控因子

Khan, Faiz Ali; Khan, Hizbullah; Awan, Usman Ayub; Nurahmat, Mammat; Nabijan, Mohammadtursun; Abduwaki, Muhammadjan; Dong, Jingcheng

Correction: Targeting c-Jun orchestrates heat stroke-induced myocardial injury and reveals its biomarker potential

更正:靶向 c-Jun 可调控中暑引起的心肌损伤并揭示其作为生物标志物的潜力

Xiang, Yunfei; Huang, Rui; Jiang, Xuemei; Chen, Qingsong; Luo, Can; Wang, Hongxia; Jiang, Junyu; Xie, Jia; Huang, Guangbin; Liu, Menglong; Ma, Yu; Du, Dingyuan; Zhou, Fating

Survival motor neuron protein-independent amelioration of spinal muscular atrophy by pharmacological inhibition of c-Jun-NH(2) terminal kinase

通过药理学抑制c-Jun-NH(2)末端激酶,可改善脊髓性肌萎缩症,且该改善作用不依赖于运动神经元存活蛋白。

Kannan, Annapoorna; Bhatia, Kanchan; Jiang, Xiaoting; Lesnik, Olivia; Asad, Sabahat B; Fiocca, Kailyn; Ahmad, Saif; Feng, Yangbo; Branzei, Dana; Gangwani, Laxman

Regulatory dynamics of IFI44L in systemic lupus erythematosus: the interplay of type I interferon and c-Jun

系统性红斑狼疮中 IFI44L 的调控动态:I 型干扰素和 c-Jun 的相互作用

Wang, Yuan; Yang, Mengyi; Ma, Hua; Ma, Xiuhui; Huo, Zhenghao; Ma, Zhanbing; Dang, Jie

Shengdihuang Xiyangshen Zhimu Cangzhu Formula Improves Hepatic Glycogen Synthesis via the JNK/c-Jun/IRS1/GSK3β Signaling Pathway.

生地黄喜养神知母苍术方通过JNK/c-Jun/IRS1/GSK3β信号通路改善肝糖原合成。

Qu Kewen, Li Mei, Sun Jinxu, Wu Shangping, Liu Xinyu, Liu Kanglin, Wu Shuxin, Guo Xiangyu

WISP-3 promotes angiogenesis in non-small cell lung cancer through p38/JNK-c-Jun-mediated PDGF-A upregulation

WISP-3通过p38/JNK-c-Jun介导的PDGF-A上调促进非小细胞肺癌血管生成

Chang, En-Ming; Lin, Syuan-Ling; Cheng, Ching-Yuan; Tang, Chih-Hsin; Chen, Yu-Chen; Lee, Chiang-Wen; Lin, Chih-Yang

ULK2 suppresses glycolysis to attenuate cisplatin resistance in ovarian cancer organoid via c-Jun phosphorylation.

ULK2 通过 c-Jun 磷酸化抑制糖酵解,从而减弱卵巢癌类器官对顺铂的耐药性。