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

CD47 stabilizes ROBO2 to regulate glioblastoma progression by preventing ITCH-mediated ubiquitination

CD47通过稳定ROBO2来调节胶质母细胞瘤的进展,其机制是通过阻止ITCH介导的泛素化。

Polara, Ruhi; Gliddon, Briony L; Ganesan, Raja; Davies, Lorena T; Toubia, John; Lenin, Sakthi; Siddiqui, Ghizal; Morris-Hanon, Olivia; Tea, Melinda N; Moretti, Paul A B; Nguyen, Dung A; Kok, Chung Hoow; Shard, Chloe; Staudacher, Alexander H; Brown, Michael P; Creek, Darren J; Gomez, Guillermo A; Thomas, Daniel; Pitson, Stuart M; Robinson, Nirmal

Effectiveness of Switching to Bictegravir/Emtricitabine/Tenofovir Alafenamide from Rilpivirine or Other Non-nucleoside Reverse Transcriptase Inhibitor (NNRTI)-Based Antiretroviral Therapy in Virologically Suppressed People with HIV: A Retrospective Analysis (DRIVE-SWITCH Study)

在病毒学抑制的 HIV 感染者中,从利匹韦林或其他非核苷类逆转录酶抑制剂 (NNRTI) 抗逆转录病毒疗法转换为比克替拉韦/恩曲他滨/替诺福韦艾拉酚胺疗法的有效性:一项回顾性分析 (DRIVE-SWITCH 研究)

Gagliardini, Roberta; Caioli, Alessandro; Fusto, Marisa; Ottou, Sandrine; Forbici, Federica; Fabeni, Lavinia; Maggi, Fabrizio; Plazzi, Maria Maddalena; De Zottis, Federico; Bellagamba, Rita; Paulicelli, Jessica; Mastrorosa, Ilaria; Grilli, Elisabetta; Pinnetti, Carmela; Mazzotta, Valentina; Caldera, Roberto; Forcina, Gabriele; Antinori, Andrea

From Single-Cell Clusters to Causality: ITCH Engagement for CKD Uncovered by Integrative Analysis of MR and MAGMA

从单细胞簇到因果关系:通过MR和MAGMA的整合分析揭示ITCH在CKD中的参与

Zhang, Xia; Zhang, Dongdong; Shang, Jiazhen; Zeng, Zhitao; Chai, Shouyu; Lv, Xincong; Lv, Zhimei; Wang, Rong

Safety and efficacy of switching from dulaglutide to tirzepatide across clinically relevant baseline characteristics in participants with T2D: subgroup analysis of SURPASS-SWITCH

在 SURPASS-SWITCH 研究中,对具有临床相关基线特征的 2 型糖尿病患者,从度拉糖肽转换为替拉帕肽的安全性和有效性进行亚组分析

Violante-Ortiz, Rafael; Rose, Ludger; Sharma, Palash; Gomez Valderas, Elisa; Chivukula, K Karthik; Kwan, Anita Ym

ALIX and ITCH localize to the base of primary cilia and negatively regulate ciliary Polycystin-2 levels.

ALIX 和 ITCH 定位于初级纤毛的基部,并负向调节纤毛多囊蛋白-2 的水平。

Berggreen Christina Rahlff, Laplace Julie, Campestre Fabiola, Petersen Anna-Louise With, Fixdahl Anna Maria, Mary Benjamin, Ghazanfar Saba, Li Geyi, Wagner Lotta Elisabeth, Rezi Csenge K, Chamlali Mohamed, Anvarian Zeinab, Christensen Søren T, May-Simera Helen L, Pedersen Lotte B

Autophagy-targeted NBR1-p62/SQSTM1 complexes promote breast cancer metastasis by sequestering ITCH

自噬靶向的NBR1-p62/SQSTM1复合物通过隔离ITCH促进乳腺癌转移。

Mondal, Gourish; Gonzalez, Hugo; Marsh, Timothy; Leidal, Andrew M; Vlahakis, Ariadne; Phadatare, Pravin R; Bustamante Eguiguren, Sofı́a; Bruck, Michael; Naik, Akul; Magbanua, Mark Jesus M; Huppert, Laura A; Wiita, Arun P; Roose, Jeroen P; Rosenbluth, Jennifer M; Debnath, Jayanta

Deciphering melanophagy: role of the PTK2-ITCH-MLANA-OPTN cascade on melanophagy in melanocytes

解读黑色素自噬:PTK2-ITCH-MLANA-OPTN 级联对黑色素细胞黑色素自噬的作用

Na Yeon Park, Doo Sin Jo, Hyun Jun Park, Ji-Eun Bae, Yong Hwan Kim, Joon Bum Kim, Ha Jung Lee, Sung Hyun Kim, Hyunjung Choi, Hyun-Shik Lee, Tamotsu Yoshimori, Dong-Seok Lee, Jin-A Lee, Pansoo Kim, Dong-Hyung Cho

ITCH regulates Golgi integrity and proteotoxicity in neurodegeneration

ITCH 调节神经退行性疾病中的高尔基体完整性和蛋白毒性

Qiwang Xiang ,Yuning Lu ,Hongjin Wang ,Hao Chen ,Peng Chen ,Xiaofeng Zhao ,Larissa Cortes Morales ,Yiwei Yang ,Junqin Yang ,Tao Zhang ,Jiou Wang

PARG inhibition suppresses breast cancer progression and potentiates immunoresponse through MTDH degradation mediated by E3 ligase ITCH-dependent ubiquitination.

PARG 抑制通过 E3 连接酶 ITCH 依赖性泛素化介导的 MTDH 降解来抑制乳腺癌进展并增强免疫反应。

Wang Junnai, Dong Yanhua, Lun Weiwei, Nai Manman, Shi Yajing, Geng Jianfang, Cai Wenhui, Liu Jiaxi, Li Hongyu, Li Lei

TREM1 facilitates nonresponse to anti-TNF-α monoclonal antibodies in colitis via boosting ITCH/TAK1/caspase-8 axis-mediated macrophage pyroptosis

TREM1通过增强ITCH/TAK1/caspase-8轴介导的巨噬细胞焦亡,促进结肠炎患者对TNF-α单克隆抗体的无反应性。

Liu, Xiao-Man; Dai, Zhen-Zhen; Luo, Shang-Jian; Zhai, Jin-Yang; Xie, Yang; Chen, Ying-Wei