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

Targeting fused in sarcoma (FUS): a novel antisense strategy for treating idiopathic pulmonary fibrosis

靶向融合肉瘤(FUS):一种治疗特发性肺纤维化的新型反义策略

Katariya, Bhavika B; Chillappagari, Shashipavan; Arnold, Lisa; Guenther, Stefan; Dasadia, Yash; Noori, Afshin; Krauss, Ekaterina; Jiyani, Trushnali; Wrede, Christoph; Hegermann, Jan; Bellusci, Saverio; Fink, Ludger; Ruppert, Clemens; Mühlfeld, Christian; Benazzo, Alberto; Hoetzenecker, Konrad; Aigner, Clemens; Guenther, Andreas; Mahavadi, Poornima

Axonal Eif5a hypusination controls local translation and mitigates defects in FUS-ALS.

轴突 Eif5a 低磷化控制局部翻译,减轻 FUS-ALS 的缺陷。

Piol Diana, Khalil Bilal, Robberechts Tessa, Killian Theo, Georgopoulou Maria, Partel Gabriele, Wouters David, Hecker Nikolai, Tziortzouda Paraskevi, Verresen Yana, Corthout Nikky, Kint Sam, Vandereyken Katy, Van Damme Philip, Voet Thierry, Davie Kristofer, Poovathingal Suresh, Van Den Bosch Ludo, Aerts Stein, Sifrim Alejandro, Da Cruz Sandrine

DARE-FUSE: domain aligned evidence guided learning for joint brain tumor MRI segmentation and classification

DARE-FUSE:基于领域对齐的证据引导学习的脑肿瘤MRI联合分割和分类

Liu, Yuqi; Sun, Chen; Niu, Yuning; Wang, Xu; Yue, Zehua; Zhang, Tieqiang; Li, Jiang; Guan, Xiudong; Zhang, Dainan; Jia, Wang

RIG-I Mediated Neuron-Specific IFN Type 1 Signaling in FUS-ALS Induces Neurodegeneration and Offers New Biomarker-Driven Individualized Treatment Options for (FUS-)ALS.

RIG-I 介导的神经元特异性 IFN 1 型信号传导在 FUS-ALS 中诱导神经退行性变,并为 (FUS-)ALS 提供新的生物标志物驱动的个体化治疗选择。

Naumann Marcel, Wierschin Theresa M, Kretschmer Stefanie, Dash Banaja P, Held Aaron, Salzinger Andrea, Peikert Kevin, Karlek Anže, Glaß Hannes, Großmann Dajana, Günther René, Petri Susanne, Rödiger Annekathrin, Brenner David, Pan-Montojo Francisco, Aronica Eleonora, Kipp Markus, Zimyanin Vitaly, Sterneckert Jared, Grehl Torsten, Seebacher Noah D, Böckers Tobias M, Catanese Alberto, Wainger Brian J, Oeckl Patrick, Lee-Kirsch Min Ae, Hermann Andreas

Splicing factor FUS facilitates the progression of PIT1-lineage PitNETs by upregulating MDM2.

剪接因子 FUS 通过上调 MDM2 促进 PIT1 谱系 PitNETs 的进展。

Wang Xu, Li Jiang, Jiang Chenggang, Zhang Chengkai, Yuan Linhao, Zhang Tieqiang, Liu Yuqi, Ma Shunchang, Kang Peng, Li Deling, Guan Xiudong, Chen Jian, Jia Wang

FUS is an N1- and N6-methyladenosine-binding protein

FUS是一种N1和N6甲基腺苷结合蛋白

Liang, Xiaochen; Zhao, Ting; Dai, Xiaoxia; Sun, Yuxiang; Yuan, Jun; Afzalpurkar, Sanat; Duong, Connor; Yu, Albert; Tang, Feng; He, Xiaomei; Liu, Xiaochuan; Chen, Xingyuan; Cao, Zhongwen; Wang, Yinsheng

HPF1 regulates the formation of FUS-dependent compartments by PARP1 and PARP2 activation on damaged DNA

HPF1通过激活受损DNA上的PARP1和PARP2来调控FUS依赖性区室的形成。

Singatulina, Anastasia S; Sukhanova, Maria V; Hamon, Loic; Kutuzov, Mikhail M; Pastré, David; Lavrik, Olga I

LIFUS-driven engineered bacteria reprogram immunosuppressive niches via mechano-NOTCH signaling.

LIFUS 驱动的工程细菌通过机械-NOTCH 信号传导重编程免疫抑制微环境。

Lin Lizhou, Li Xiao, Guo Wenyun, Xie Jirong, Li Xiaolong, Guan Xin, Zhao Chongke, Yin HaoHao, Xu Huixiong

Human FUS is toxic via association with RNA polymerase II in Drosophila.

人类 FUS 通过与果蝇 RNA 聚合酶 II 结合而产生毒性。

Moens Thomas G, Biasetti Luca, Scheveneels Wendy, Smith Bradley N, Troakes Claire, Van Damme Philip, Vance Caroline, Van Den Bosch Ludo

Mitofusin-2 suppresses tumor immune escape through EGFR/STAT3-mediated PD-L1 transcription.

Mitofusin-2 通过 EGFR/STAT3 介导的 PD-L1 转录抑制肿瘤免疫逃逸。

Liu Yan, Wang Ningning, Li Zhenhua, Li Na, Hui Fu, Wang Xinlei, Tang Gaoyan, Zhang Qingyun, Yu Guohua, Liu Shuzhen, Ding Yanhong