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

METTL14-mediated HOXA5 m6A modification alleviates osteoporosis via promoting WNK1 transcription to suppress NLRP3-dependent macrophage pyroptosis

METTL14 介导的 HOXA5 m6A 修饰通过促进 WNK1 转录抑制 NLRP3 依赖的巨噬细胞焦亡来减轻骨质疏松症

Hao Tang, Yuxuan Du, Zejiu Tan, Dongpeng Li, Jiang Xie

TRAF7-targeted HOXA5 acts as a tumor suppressor in prostate cancer progression and stemness via transcriptionally activating SPRY2 and regulating MEK/ERK signaling

TRAF7 靶向 HOXA5 通过转录激活 SPRY2 和调节 MEK/ERK 信号传导,在前列腺癌进展和干细胞中发挥肿瘤抑制作用

Jianfeng Ye #, Wangmin Liu #, Xueyang Yu #, Lina Wu, Zhengjie Chen, Yufei Yu, Jianfeng Wang, Song Bai, Mo Zhang

HOXA5-Mediated Stabilization of IκBα Inhibits the NF-κB Pathway and Suppresses Malignant Transformation of Breast Epithelial Cells

HOXA5 介导的 IκBα 稳定抑制 NF-κB 通路并抑制乳腺上皮细胞的恶性转化

Priya Pai, Guannan Wang, Wei Wen Teo, Diana Raez-Rodriguez, Kathleen L Gabrielson, Balázs Győrffy, Bradley M Downs, Akanksha Aggarwal, Saraswati Sukumar

"Epigenome-wide methylation profile of chronic kidney disease-derived arterial DNA uncovers novel pathways in disease-associated cardiovascular pathology."

“慢性肾病衍生动脉 DNA 的表观基因组甲基化谱揭示了疾病相关心血管病理学的新途径。”

Athina Dritsoula, Maria Kislikova, Amin Oomatia, Amy P Webster, Stephan Beck, Markella Ponticos, Ben Lindsey, Jill Norman, David C Wheeler, Thomas Oates, Ben Caplin

Severe head dysgenesis resulting from imbalance between anterior and posterior ontogenetic programs

严重的头部发育不良是由前后发育程序失衡引起的

Emmanuelle Grall ,Victor Gourain ,Asmaa Naïr ,Elisabeth Martin ,Marie-Christine Birling ,Jean-Noël Freund ,Isabelle Duluc

Mutant ASXL1 cooperates with BAP1 to promote myeloid leukaemogenesis

突变型ASXL1与BAP1协同作用促进髓系白血病发生

Shuhei Asada ,Susumu Goyama ,Daichi Inoue ,Shiori Shikata ,Reina Takeda ,Tsuyoshi Fukushima ,Taishi Yonezawa ,Takeshi Fujino ,Yasutaka Hayashi ,Kimihito Cojin Kawabata ,Tomofusa Fukuyama ,Yosuke Tanaka ,Akihiko Yokoyama ,Satoshi Yamazaki ,Hiroko Kozuka-Hata ,Masaaki Oyama ,Shinya Kojima ,Masahito Kawazu ,Hiroyuki Mano ,Toshio Kitamura

HOXA5 determines cell fate transition and impedes tumor initiation and progression in breast cancer through regulation of E-cadherin and CD24

HOXA5 通过调节 E-钙粘蛋白和 CD24 决定细胞命运转变并阻止乳腺癌肿瘤的发生和进展

W W Teo, V F Merino, S Cho, P Korangath, X Liang, R-C Wu, N M Neumann, A J Ewald, S Sukumar