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

THRAP3 promotes ferroptosis resistance in acute myelocytic leukemia through SLU7-mediated alternative splicing of GIT2.

THRAP3 通过 SLU7 介导的 GIT2 选择性剪接促进急性髓细胞白血病中的铁死亡抵抗。

Regulation of microtubule nucleation in glioblastoma cells by ARF GTPase-activating proteins GIT1 and GIT2 and protein kinase C

ARF GTP酶激活蛋白GIT1和GIT2以及蛋白激酶C对胶质母细胞瘤细胞中微管成核的调控

Vadym Sulimenko,Eduarda Dráberová,Vladimíra Sládková,Tetyana Sulimenko,Věra Vosecká,Omar Skalli,Pavel Dráber

Enhanced Wound Healing and Autogenesis Through Lentiviral Transfection of Adipose-Derived Stem Cells Combined with Dermal Substitute

通过慢病毒转染脂肪来源干细胞并结合真皮替代物,增强伤口愈合和自体生成。

Shiqi Wang ,Dinghui Gao ,Mingyu Li ,Qian Wang ,Xuanyu Du ,Siming Yuan

Single-cell multi-omics of mitochondrial DNA disorders reveals dynamics of purifying selection across human immune cells

单细胞多组学研究线粒体DNA疾病揭示了人类免疫细胞中纯化选择的动态过程

Caleb A Lareau ,Sonia M Dubois # ,Frank A Buquicchio # ,Yu-Hsin Hsieh # ,Kopal Garg ,Pauline Kautz ,Lena Nitsch ,Samantha D Praktiknjo ,Patrick Maschmeyer ,Jeffrey M Verboon ,Jacob C Gutierrez ,Yajie Yin ,Evgenij Fiskin ,Wendy Luo ,Eleni P Mimitou ,Christoph Muus ,Rhea Malhotra ,Sumit Parikh ,Mark D Fleming ,Lena Oevermann ,Johannes Schulte ,Cornelia Eckert ,Anshul Kundaje ,Peter Smibert ,Santosha A Vardhana ,Ansuman T Satpathy ,Aviv Regev ,Vijay G Sankaran ,Suneet Agarwal ,Leif S Ludwig

Novel actionable ROS1::GIT2 fusion in non-Langerhans cell histiocytosis with central nervous system involvement

新型可靶向ROS1::GIT2融合基因在伴有中枢神经系统受累的非朗格汉斯细胞组织细胞增生症中的应用

Bedics, Gábor; Csóka, Monika; Reiniger, Lilla; Varga, Edit; Liptai, Zoltán; Papp, Gergő; Bekő, Anna; Cervi, Catherine; Bödör, Csaba; Scheich, Bálint

Correction for Lu et al., "Nuclear GIT2 Is an ATM Substrate and Promotes DNA Repair"

对 Lu 等人的论文“核 GIT2 是 ATM 底物并促进 DNA 修复”的更正

Lu, Daoyuan; Cai, Huan; Park, Sung-Soo; Siddiqui, Sana; Premont, Richard T; Schmalzigaug, Robert; Paramasivam, Manikandan; Seidman, Michael; Bodogai, Ionoa; Biragyn, Arya; Daimon, Caitlin M; Martin, Bronwen; Maudsley, Stuart

A novel GIT2-BRAF fusion in pilocytic astrocytoma

毛细胞星形细胞瘤中一种新型的GIT2-BRAF融合基因

Helgager, Jeffrey; Lidov, Hart G; Mahadevan, Navin R; Kieran, Mark W; Ligon, Keith L; Alexandrescu, Sanda

GIT2 deficiency attenuates concanavalin A-induced hepatitis in mice

GIT2 缺陷可减轻小鼠刀豆蛋白 A 诱导的肝炎

Hao, Yu-E; He, Dong-Fang; Yin, Rong-Hua; Chen, Hui; Wang, Jian; Wang, Shao-Xia; Zhan, Yi-Qun; Ge, Chang-Hui; Li, Chang-Yan; Yu, Miao; Yang, Xiao-Ming

The GTPase-activating protein GIT2 protects against colitis by negatively regulating Toll-like receptor signaling

GTP酶激活蛋白GIT2通过负调控Toll样受体信号传导来抵抗结肠炎

Wei, Juncheng; Wei, Chao; Wang, Min; Qiu, Xiao; Li, Yang; Yuan, Yanzhi; Jin, Chaozhi; Leng, Ling; Wang, Jian; Yang, Xiaoming; He, Fuchu

GIT2 acts as a potential keystone protein in functional hypothalamic networks associated with age-related phenotypic changes in rats

GIT2 是与大鼠年龄相关表型变化相关的功能性下丘脑网络中的潜在关键蛋白

Wayne Chadwick, Bronwen Martin, Megan C Chapter, Sung-Soo Park, Liyun Wang, Caitlin M Daimon, Randall Brenneman, Stuart Maudsley