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

FGFR4 in endocrine resistance: overexpression and estrogen regulation without direct causative role.

FGFR4 在内分泌抵抗中的作用:过度表达和雌激素调节,但无直接致病作用

Ding Kai, Chen Lyuqin, Levine Kevin M, Sikora Matthew J, Tasdemir Nilgun, Dabbs David, Jankowitz Rachel, Hazan Rachel, Shah Osama, Atkinson Jenny, Lee Adrian V, Oesterreich Steffi

Estrogen regulation and functional role of FGFR4 in estrogen receptor positive breast cancer

雌激素调节及FGFR4在雌激素受体阳性乳腺癌中的功能作用

Ding, Kai; Chen, Lyuqin; Levine, Kevin; Sikora, Matthew; Tasdemir, Nilgun; Dabbs, David; Jankowitz, Rachel; Hazan, Rachel; Shah, Osama S; Atkinson, Jennifer M; Lee, Adrian V; Oesterreich, Steffi

The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer

EstroGene数据库揭示了乳腺癌中雌激素受体调控组的多样性,这些调控具有时间依赖性、情境依赖性和双向性。

Li, Zheqi; Li, Tianqin; Yates, Megan E; Wu, Yang; Ferber, Amanda; Chen, Lyuqin; Brown, Daniel D; Carroll, Jason S; Sikora, Matthew J; Tseng, George C; Oesterreich, Steffi; Lee, Adrian V

EstroGene database reveals diverse temporal, context-dependent and directional estrogen receptor regulomes in breast cancer

EstroGene数据库揭示了乳腺癌中多种多样的、时间依赖性的、情境依赖性的和方向性的雌激素受体调控组

Li, Zheqi; Li, Tianqin; Yates, Megan E; Wu, Yang; Ferber, Amanda; Chen, Lyuqin; Brown, Daniel D; Carroll, Jason S; Sikora, Matthew J; Tseng, George C; Oesterreich, Steffi; Lee, Adrian V

Transcriptional landscapes of de novo root regeneration from detached Arabidopsis leaves revealed by time-lapse and single-cell RNA sequencing analyses

利用延时和单细胞RNA测序分析揭示拟南芥离体叶片新生根的转录组图谱

Liu, Wu; Zhang, Yuyun; Fang, Xing; Tran, Sorrel; Zhai, Ning; Yang, Zhengfei; Guo, Fu; Chen, Lyuqin; Yu, Jie; Ison, Madalene S; Zhang, Teng; Sun, Lijun; Bian, Hongwu; Zhang, Yijing; Yang, Li; Xu, Lin

FGFR4: A promising therapeutic target for breast cancer and other solid tumors

FGFR4:乳腺癌和其他实体瘤的一种很有前景的治疗靶点

Levine, Kevin M; Ding, Kai; Chen, Lyuqin; Oesterreich, Steffi

Single Cell Analysis of Endothelial Cells Identified Organ-Specific Molecular Signatures and Heart-Specific Cell Populations and Molecular Features

单细胞分析揭示了内皮细胞的器官特异性分子特征以及心脏特异性细胞群和分子特征。

Feng, Wei; Chen, Lyuqin; Nguyen, Patricia K; Wu, Sean M; Li, Guang

Auxin-Independent NAC Pathway Acts in Response to Explant-Specific Wounding and Promotes Root Tip Emergence during de Novo Root Organogenesis in Arabidopsis

生长素非依赖性NAC通路响应外植体特异性损伤并促进拟南芥从头根器官发生过程中的根尖萌发

Chen, Xiaodong; Cheng, Jingfei; Chen, Lyuqin; Zhang, Guifang; Huang, Hai; Zhang, Yijing; Xu, Lin

Wound signaling: The missing link in plant regeneration

伤口信号传导:植物再生过程中缺失的一环

Chen, Lyuqin; Sun, Beibei; Xu, Lin; Liu, Wu