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

HDAC inhibitors engage MITF and the disease-associated microglia signature to enhance amyloid β uptake

HDAC抑制剂通过激活MITF和疾病相关的微胶质细胞特征,增强β-淀粉样蛋白的摄取。

Verena Haage ,John F Tuddenham ,Alex Bautista ,Frankie Garcia G ,Charles C White ,Ronak Patel ,Natacha Comandante-Lou ,Victoria Marshe ,Jennifer Griffin ,Ye Zhou ,Deniz Ghaffari ,Beatrice Acheson ,Mariko Taga ,Peter H St George-Hyslop ,Rajesh Kumar Soni ,Peter A Sims ,Vilas Menon ,Andrew A Sproul ,Philip L De Jager

Receptor tyrosine kinase inhibitor tivozanib regulates cell state plasticity and restores MITF dependency in BRAF wild-type melanoma

受体酪氨酸激酶抑制剂替沃扎尼调节细胞状态可塑性并恢复BRAF野生型黑色素瘤的MITF依赖性

Yan-Ni Ma # ,Xu-Hui Ma # ,Mei-Ling Hao # ,Rui-Xin Liu # ,Yang Zheng # ,Jie Yang ,Xiang-Yu Chen ,Yi-Nan Chen ,Sheng-Nan Zheng ,Yan-Jie Zhang ,Ming Lei ,Min Jiang ,Wei Guo ,Han-Lin Zeng

SETD6 mediates selective interaction and genomic occupancy of BRD4 and MITF in melanoma cells

SETD6介导黑色素瘤细胞中BRD4和MITF的选择性相互作用和基因组占据

Tzofit Elbaz Biton ,Michal Feldman ,Tomer Davidy ,Nili Tickotsky Moskovitz ,Liron Levin ,Daniel Sevilla ,Colin R Goding ,Emily Bernstein ,Dan Levy

High-Glucose-Induced Metabolic and Redox Alterations Are Distinctly Modulated by Various Antidiabetic Agents and Interventions Against FABP5/7, MITF and ANGPTL4 in Melanoma A375 Cells

高糖诱导的代谢和氧化还原改变受到多种抗糖尿病药物和针对FABP5/7、MITF和ANGPTL4的干预措施的显著调节,这些干预措施作用于黑色素瘤A375细胞。

Nami Nishikiori ,Hiroshi Ohguro ,Megumi Watanabe ,Megumi Higashide ,Toshifumi Ogawa ,Masato Furuhashi ,Tatsuya Sato

Novel mechanisms of MITF regulation identified in a mouse suppressor screen

在小鼠抑制子筛选中发现了MITF调控的新机制

Hong Nhung Vu ,Matti Már Valdimarsson ,Sara Sigurbjörnsdóttir ,Kristín Bergsteinsdóttir ,Julien Debbache ,Keren Bismuth ,Deborah A Swing ,Jón H Hallsson ,Lionel Larue ,Heinz Arnheiter ,Neal G Copeland ,Nancy A Jenkins ,Petur O Heidarsson ,Eiríkur Steingrímsson

Acetylation reprograms MITF target selectivity and residence time

乙酰化作用会改变MITF靶标选择性和停留时间。

Pakavarin Louphrasitthiphol ,Alessia Loffreda ,Vivian Pogenberg ,Sarah Picaud ,Alexander Schepsky ,Hans Friedrichsen ,Zhiqiang Zeng ,Anahita Lashgari ,Benjamin Thomas ,E Elizabeth Patton ,Matthias Wilmanns ,Panagis Filippakopoulos ,Jean-Philippe Lambert ,Eiríkur Steingrímsson ,Davide Mazza ,Colin R Goding

Pueraria protein extract inhibits melanogenesis and promotes melanoma cell apoptosis through the regulation of MITF and mitochondrial‑related pathways

葛根蛋白提取物通过调节MITF和线粒体相关通路抑制黑色素生成并促进黑色素瘤细胞凋亡

Yuchu Zhao ,Shiting Yu ,Yue Wang ,Yanyan Chen ,Jingjing Chen ,Jiawen Wang ,Meichen Liu ,Siming Wang

Methionine oxidation of CLK4 promotes the metabolic switch and redox homeostasis in esophageal carcinoma via inhibiting MITF selective autophagy

CLK4的甲硫氨酸氧化通过抑制MITF选择性自噬促进食管癌的代谢转换和氧化还原稳态。

Yaxing Shen ,Heng Zhang ,Shihua Yao ,Feng Su ,Hao Wang ,Jun Yin ,Yong Fang ,Lijie Tan ,Kaiguang Zhang ,Xiangshan Fan ,Ming Zhong ,Qingxin Zhou ,Jie He ,Zhiyong Zhang

VDAC1 negatively regulates melanogenesis through the Ca2+-calcineurin-CRTC1-MITF pathway

VDAC1通过Ca2+-钙调磷酸酶-CRTC1-MITF通路负调控黑色素生成。

Jianli Wang ,Juanjuan Gong ,Qiaochu Wang ,Tieshan Tang ,Wei Li

DUSP4 protects BRAF- and NRAS-mutant melanoma from oncogene overdose through modulation of MITF

DUSP4 通过调节 MITF 来保护 BRAF 和 NRAS 突变型黑色素瘤免受癌基因过载的影响。

Nuria Gutierrez-Prat ,Hedwig L Zuberer ,Luca Mangano ,Zahra Karimaddini ,Luise Wolf ,Stefka Tyanova ,Lisa C Wellinger ,Daniel Marbach ,Vera Griesser ,Piergiorgio Pettazzoni ,James R Bischoff ,Daniel Rohle ,Chiara Palladino ,Igor Vivanco