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

A dominant-negative IFNGR1 variant reveals broad immune cell sequestering of IFN-γ

显性负性 IFNGR1 变体揭示了 IFN-γ 在免疫细胞中的广泛隔离

Chan, Samantha; Margetts, Mai B; Wang, Longfei; Godsell, Jack; Chatelier, Josh; Liu, Belinda; Slade, Charlotte A; Brett, Andrew; Singh, Kasha P; Bryant, Vanessa L; Howson, Lauren J

Ubiquitin-related Protein IFNGR1 as Causal Factor and Drug Target for Keloids: A Mendelian Randomization Analysis

泛素相关蛋白IFNGR1作为瘢痕疙瘩的致病因素和药物靶点:孟德尔随机化分析

Nurzat, Yeltai; Guo, Zhenhe; Hu, Julong; Lin, Zaihuan; Zhang, Qi; Liang, Gang; Ji, Hang; Zhang, Xiaowen

Functional Role of Single-Nucleotide Polymorphisms on IFNG and IFNGR1 in Humans with Cardiovascular Disease

单核苷酸多态性对人类心血管疾病中 IFNG 和 IFNGR1 的功能作用

Mehta, Megh; Li, Yang; Parashar, Smriti; Ramirez, Catalina; McKay, Heather; Landay, Alan; Aherrahrou, Redouane; Advani, Aarushi; Patel, Raag; Kaplan, Robert; Lazar, Jason; Anastos, Kathryn; Hanna, David B; Qi, Qibin; Ley, Klaus

In Vitro Selection of Macrocyclic l-α/d-α/β/γ-Hybrid Peptides Targeting IFN-γ/IFNGR1 Protein-Protein Interaction

体外筛选靶向 IFN-γ/IFNGR1 蛋白-蛋白相互作用的大环 l-α/d-α/β/γ-杂合肽

Miura, Takashi; Lee, Kang Ju; Katoh, Takayuki; Suga, Hiroaki

CAV1 inhibits Xc(-) system through IFNGR1 to promote ferroptosis to inhibit stemness and improves anti-PD-1 efficacy in breast cancer

CAV1通过IFNGR1抑制Xc(-)系统,促进铁死亡,从而抑制干细胞特性并提高抗PD-1疗法在乳腺癌中的疗效。

Liu, Wenhong; Luo, Guanghua

Hsp90 inhibition leads to an increase in surface expression of multiple immunological receptors in cancer cells

Hsp90 抑制导致癌细胞中多种免疫受体表面表达增加

Madison Wickenberg, Rebecca Mercier, Megan Yap, John Walker, Kristi Baker, Paul LaPointe

Talaromyces marneffei infection with IFNGR1 gene mutation in a patient with negative Anti-Interferon-γ autoantibodies

抗干扰素-γ自身抗体阴性的患者感染了伴有IFNGR1基因突变的马尔尼菲青霉菌

Li, Shiyang; Cao, Xianwei; Guo, Zhuxiu; Wang, Jian; Tong, Jianbo; Zhang, Zhibin

[Effect of Porphyromonas gingivalis infection on IFNGR1 palmitoylation in esophageal cancer cells].

[牙龈卟啉单胞菌感染对食管癌细胞中 IFNGR1 棕榈酰化的影响]

Mechanisms of innate and adaptive immunity to the Pfizer-BioNTech BNT162b2 vaccine

辉瑞-BioNTech BNT162b2疫苗的先天性和适应性免疫机制

Chunfeng Li ,Audrey Lee ,Lilit Grigoryan ,Prabhu S Arunachalam ,Madeleine K D Scott ,Meera Trisal ,Florian Wimmers ,Mrinmoy Sanyal ,Payton A Weidenbacher ,Yupeng Feng ,Julia Z Adamska ,Erika Valore ,Yanli Wang ,Rohit Verma ,Noah Reis ,Diane Dunham ,Ruth O'Hara ,Helen Park ,Wei Luo ,Alexander D Gitlin ,Peter Kim ,Purvesh Khatri ,Kari C Nadeau ,Bali Pulendran

STUB1 is an intracellular checkpoint for interferon gamma sensing

STUB1 是干扰素γ感应的细胞内检查点。

Simon Ng ,Shuhui Lim ,Adrian Chong Nyi Sim ,Ruban Mangadu ,Ally Lau ,Chunsheng Zhang ,Sarah Bollinger Martinez ,Arun Chandramohan ,U-Ming Lim ,Samantha Shu Wen Ho ,Shih Chieh Chang ,Pooja Gopal ,Lewis Z Hong ,Adam Schwaid ,Aaron Zefrin Fernandis ,Andrey Loboda ,Cai Li ,Uyen Phan ,Brian Henry ,Anthony W Partridge