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

Expanded Clinical Spectrum of Autosomal-Dominant STT3A-CDG

常染色体显性遗传STT3A-CDG的扩展临床谱

Al-Shahrani, Hamdan; Szabó, Evelin; Staccone, Caroline; MacDonald, Georgia; Furuta, Yutaka; Schecter, Daniel; Edmondson, Andrew C; McRae, Anne; Baker, Josh; Morava, Eva; Tinker, Rory J

STT3A-mediated FCN3 N-glycosylation promotes Treg cell activation to drive hepatocellular carcinoma progression via Wnt/β-catenin.

STT3A 介导的 FCN3 N-糖基化促进 Treg 细胞活化,通过 Wnt/β-catenin 途径驱动肝细胞癌进展。

A STT3A-dependent PD-L1 glycosylation modification mediated by GMPS drives tumor immune evasion in hepatocellular carcinoma

GMPS介导的STT3A依赖性PD-L1糖基化修饰驱动肝细胞癌的肿瘤免疫逃逸

Guo, Xinyu; Cui, Tianming; Sun, Linmao; Fu, Yumin; Cheng, Cheng; Wu, Chenghui; Zhu, Yitong; Liang, Shuhang; Liu, Yufeng; Zhou, Shuo; Li, Xianying; Ji, Changyong; Ma, Kun; Zhang, Ning; Chu, Qi; Xing, Changjian; Deng, Shumin; Wang, Jiabei; Liu, Yao; Liu, Lianxin

STT3A-mediated mega protein complex assembly during dengue and Zika virus infection

登革热和寨卡病毒感染期间STT3A介导的巨型蛋白复合物组装

Tao Liu ,Natasha W Hanners ,Huangheng Tao ,Claudia Szabo ,Dao Xu ,Wei Lin ,John W Schoggins ,Nan Yan ,Jianjun Wu

Heterozygous pathogenic STT3A variation leads to dominant congenital glycosylation disorders and functional validation in zebrafish

杂合致病性STT3A变异导致显性先天性糖基化障碍,并在斑马鱼中得到功能验证。

Meng, Linxue; Fang, Zhixu; Jiang, Li; Zheng, Yinglan; Hong, Siqi; Deng, Yu; Xie, Lingling

ER entry pathway and glycosylation of GPI-anchored proteins are determined by N-terminal signal sequence and C-terminal GPI-attachment sequence

内质网进入途径和GPI锚定蛋白的糖基化由N端信号序列和C端GPI锚定序列决定。

Tetsuya Hirata ,Jing Yang ,Seita Tomida ,Yuko Tokoro ,Taroh Kinoshita ,Morihisa Fujita ,Yasuhiko Kizuka

Targeting STT3A produces an anti-tumor effect in lung adenocarcinoma by blocking the MAPK and PI3K/AKT signaling pathway

靶向STT3A可通过阻断MAPK和PI3K/AKT信号通路,在肺腺癌中产生抗肿瘤作用。

Jiahan Cheng #,Liang Xia #,Xiaohu Hao #,Fanyi Gan,Yuquan Bai,Chuanfen Zhang,Yonghong Mao,Yunke Zhu,Qiang Pu,Dong Won Park,Simona Tavolari,Jiandong Mei,Yaohui Chen,Senyi Deng,Lunxu Liu

TGF-β1-Mediated PD-L1 Glycosylation Contributes to Immune Escape via c-Jun/STT3A Pathway in Nasopharyngeal Carcinoma

TGF-β1 介导的 PD-L1 糖基化通过 c-Jun/STT3A 通路促进鼻咽癌的免疫逃逸

Xue-Min Ma, Yun-Fan Luo, Fang-Fang Zeng, Chang Su, Xiong Liu, Xiang-Ping Li, Juan Lu

Active site variants in STT3A cause a dominant type I congenital disorder of glycosylation with neuromusculoskeletal findings

STT3A活性位点变异会导致一种显性遗传的I型先天性糖基化障碍,并伴有神经肌肉骨骼系统症状。

Wilson, Matthew P; Garanto, Alejandro; Pinto E Vairo, Filippo; Ng, Bobby G; Ranatunga, Wasantha K; Ventouratou, Marina; Baerenfaenger, Melissa; Huijben, Karin; Thiel, Christian; Ashikov, Angel; Keldermans, Liesbeth; Souche, Erika; Vuillaumier-Barrot, Sandrine; Dupré, Thierry; Michelakakis, Helen; Fiumara, Agata; Pitt, James; White, Susan M; Lim, Sze Chern; Gallacher, Lyndon; Peters, Heidi; Rymen, Daisy; Witters, Peter; Ribes, Antonia; Morales-Romero, Blai; Rodríguez-Palmero, Agustí; Ballhausen, Diana; de Lonlay, Pascale; Barone, Rita; Janssen, Mirian C H; Jaeken, Jaak; Freeze, Hudson H; Matthijs, Gert; Morava, Eva; Lefeber, Dirk J

Factor VIII and vWF deficiency in STT3A-CDG

STT3A-CDG 中的 VIII 因子和 vWF 缺乏

Chang, Irene J; Byers, Heather M; Ng, Bobby G; Merritt, John Lawrence 2nd; Gilmore, Reid; Shrimal, Shiteshu; Wei, Wei; Zhang, Yuan; Blair, Amanda B; Freeze, Hudson H; Zhang, Bin; Lam, Christina