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

ZMIZ1 lactylation induces tamoxifen resistance in breast cancer through increasing transcriptional activity of Nanog to impact cell stemness and cholesterol uptake

ZMIZ1乳酸化通过增强Nanog的转录活性,影响细胞干性和胆固醇摄取,从而诱导乳腺癌细胞对他莫昔芬产生耐药性。

Yue Liu ,Jingyu Chen ,Li Ma ,Shu Zhao ,Xue Hui ,Wenjing Xiong ,Shaoqiang Cheng ,Yue Zhang

Niche stiffness sustains cancer stemness via TAZ and NANOG phase separation

微环境刚度通过TAZ和NANOG相分离维持癌症干细胞特性

Xinwei Liu # ,Yingying Ye # ,Liling Zhu # ,Xiaoyun Xiao # ,Boxuan Zhou # ,Yuanting Gu ,Hang Si ,Huixin Liang ,Mingzhu Liu ,Jiaqian Li ,Qiongchao Jiang ,Jiang Li ,Shubin Yu ,Ruiying Ma ,Shicheng Su ,Jian-You Liao ,Qiyi Zhao

Polycomb repressive complex 2 binds and stabilizes NANOG to suppress differentiation-related genes to promote self-renewal

多梳抑制复合物2结合并稳定NANOG,从而抑制分化相关基因,促进自我更新。

Da-Wei Yeh ,Cheng Liu ,Juan Carlos Hernandez ,Stanley M Tahara ,Hidekazu Tsukamoto ,Keigo Machida

LIN28 and histone H3K4 methylase induce TLR4 to generate tumor-initiating stem-like cells

LIN28 和组蛋白 H3K4 甲基化酶诱导 TLR4 生成肿瘤起始干细胞样细胞

Juan Carlos Hernandez ,Chia-Lin Chen ,Tatsuya Machida ,Dinesh Babu Uthaya Kumar ,Stanley M Tahara ,Jared Montana ,Linda Sher ,Jake Liang ,Jae U Jung ,Hidekazu Tsukamoto ,Keigo Machida

Reprogramming of fibroblast cells to totipotent state by DNA demethylation

通过 DNA 去甲基化将成纤维细胞重新编程为全能状态

Mohammad H Ghazimoradi, Kouichi Hasegawa, Ehsan Zolghadr, Samaneh Montazeri, Shirin Farivar

Coating-Free Culture Medium for Establishing and Maintaining Human Induced Pluripotent Stem Cells

用于建立和维持人诱导多能干细胞的无包被培养基

Chih-Yao Lin,Yu-Yun Ching,Shih-Fang Wu,Yi-Ko Lee,Hueng-Chuen Fan ,Liang-Yu Su,Su-Yi Tsai,Yu-Ching Chen ,Ching-I Shen,Hong-Lin Su

Manipulation of the nucleoscaffold potentiates cellular reprogramming kinetics

核支架的操纵增强细胞重编程动力学

Benjamin A Yang, André Monteiro da Rocha, Isabel Newton, Anna Shcherbina, Sing-Wan Wong, Paula M Fraczek, Jacqueline A Larouche, Harrison L Hiraki, Brendon M Baker, Jae-Won Shin, Shuichi Takayama, M D Thouless, Carlos A Aguilar

NANOG prion-like assembly mediates DNA bridging to facilitate chromatin reorganization and activation of pluripotency

NANOG 朊病毒样组装介导 DNA 桥接,促进染色质重组和多能性激活

Kyoung-Jae Choi #, My Diem Quan #, Chuangye Qi #, Joo-Hyung Lee, Phoebe S Tsoi, Mahla Zahabiyon, Aleksandar Bajic, Liya Hu, B V Venkataram Prasad, Shih-Chu Jeff Liao, Wenbo Li, Allan Chris M Ferreon, Josephine C Ferreon

Transcriptomics, regulatory syntax, and enhancer identification in mesoderm-induced ESCs at single-cell resolution

单细胞分辨率下中胚层诱导的胚胎干细胞的转录组学、调控结构和增强子鉴定

Mamduh Khateb ,Jelena Perovanovic ,Kyung Dae Ko ,Kan Jiang ,Xuesong Feng ,Natalia Acevedo-Luna ,Jérome Chal ,Veronica Ciuffoli ,Pavol Genzor ,James Simone ,Astrid D Haase ,Olivier Pourquié ,Stefania Dell'Orso ,Vittorio Sartorelli

LC3B upregulation by NANOG promotes immune resistance and stem-like property through hyperactivation of EGFR signaling in immune-refractory tumor cells

NANOG介导的LC3B上调通过过度激活免疫难治性肿瘤细胞中的EGFR信号通路,促进免疫抵抗和干细胞样特性。

Suyeon Kim ,Hanbyoul Cho ,Soon-Oh Hong ,Se Jin Oh ,Hyo-Jung Lee ,Eunho Cho ,Seon Rang Woo ,Joon Seon Song ,Joon-Yong Chung ,Sung Wook Son ,Sang Min Yoon ,Yu-Min Jeon ,Seunghyun Jeon ,Cassian Yee ,Kyung-Mi Lee ,Stephen M Hewitt ,Jae-Hoon Kim ,Kwon-Ho Song ,Tae Woo Kim