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

The Preservation of Muscle Mitochondrial Machinery During Hypometabolic Hibernation in Scandinavian Brown Bears (Ursus arctos).

北欧棕熊(Ursus arctos)低代谢冬眠期间肌肉线粒体机制的保存。

Bergouignan Audrey, Noone John, Brun Charlotte, Cussonneau Laura, Geffroy Alexandre, Coudy-Gandilhon Cecile, Chery Isabelle, Evans Alina Lynn, Arnemo Jon Martin, Kindberg Jonas, Gauquelin-Koch Guillemette, O'Gorman Donal, Lefai Etienne, Bertile Fabrice

Targeting PGM3 abolishes SREBP-1 activation-hexosamine synthesis feedback regulation to effectively suppress brain tumor growth.

靶向 PGM3 可消除 SREBP-1 激活-己糖胺合成反馈调节,从而有效抑制脑肿瘤生长

Su Huali, Zhong Yaogang, He Liqing, Geng Feng, Yin Xinmin, Kou Yongjun, Chiang Cheng-Yao, Mo Xiaokui, Fan Yunzhou, Liu Yanwei, Wang Qiang, Magaki Shino, Cloughesy Timothy F, Lefai Etienne, Yong William H, Chakravarti Arnab, Zhang Xiang, Guo Deliang

Structure predictions of MuRF1-UBE2 complexes identify amino acid residues governing interaction selectivity for each MuRF1-E2 pair

MuRF1-UBE2复合物的结构预测揭示了决定每对MuRF1-E2相互作用选择性的氨基酸残基。

Claustre, Agnès; Malige, Mélodie; Macheton, Maëlys; Combaret, Lydie; Lefai, Etienne; Fafournoux, Pierre; Taillandier, Daniel; Henri, Julien; Polge, Cécile

ANGPTL4 is a potential driver of HCV-induced peripheral insulin resistance

ANGPTL4 是 HCV 诱导的外周胰岛素抵抗的潜在驱动因素。

Gomes, Diana; Sobolewski, Cyril; Conzelmann, Stéphanie; Schaer, Tifany; Lefai, Etienne; Alfaiate, Dulce; Tseligka, Eirini D; Goossens, Nicolas; Tapparel, Caroline; Negro, Francesco; Foti, Michelangelo; Clément, Sophie

Hibernating brown bears are protected against atherogenic dyslipidemia

冬眠的棕熊能够免受动脉粥样硬化性血脂异常的侵害。

Giroud, Sylvain; Chery, Isabelle; Arrivé, Mathilde; Prost, Michel; Zumsteg, Julie; Heintz, Dimitri; Evans, Alina L; Gauquelin-Koch, Guillemette; Arnemo, Jon M; Swenson, Jon E; Lefai, Etienne; Bertile, Fabrice; Simon, Chantal; Blanc, Stéphane

ANT2-Mediated ATP Import into Mitochondria Protects against Hypoxia Lethal Injury

ANT2介导的ATP输入线粒体可防止缺氧致死损伤

Gouriou, Yves; Alam, Muhammad Rizwan; Harhous, Zeina; Crola Da Silva, Claire; Baetz, Delphine Baetz; Badawi, Sally; Lefai, Etienne; Rieusset, Jennifer; Durand, Annie; Harisseh, Rania; Gharib, Abdallah; Ovize, Michel; Bidaux, Gabriel

Metabolic Inflexibility Is an Early Marker of Bed-Rest-Induced Glucose Intolerance Even When Fat Mass Is Stable

即使脂肪量稳定,代谢灵活性降低也是卧床休息引起的葡萄糖耐受不良的早期标志。

Rudwill, Floriane; O'Gorman, Donal; Lefai, Etienne; Chery, Isabelle; Zahariev, Alexandre; Normand, Sylvie; Pagano, Allan F; Chopard, Angèle; Damiot, Anthony; Laurens, Claire; Hodson, Leanne; Canet-Soulas, Emmanuelle; Heer, Martina; Meuthen, Petra Frings; Buehlmeier, Judith; Baecker, Natalie; Meiller, Laure; Gauquelin-Koch, Guillemette; Blanc, Stéphane; Simon, Chantal; Bergouignan, Audrey

Lipidomics reveals diurnal lipid oscillations in human skeletal muscle persisting in cellular myotubes cultured in vitro

脂质组学揭示了人类骨骼肌中脂质的昼夜波动,这种波动在体外培养的细胞肌管中仍然存在

Loizides-Mangold, Ursula; Perrin, Laurent; Vandereycken, Bart; Betts, James A; Walhin, Jean-Philippe; Templeman, Iain; Chanon, Stéphanie; Weger, Benjamin D; Durand, Christine; Robert, Maud; Paz Montoya, Jonathan; Moniatte, Marc; Karagounis, Leonidas G; Johnston, Jonathan D; Gachon, Frédéric; Lefai, Etienne; Riezman, Howard; Dibner, Charna

Human skeletal myotubes display a cell-autonomous circadian clock implicated in basal myokine secretion

人类骨骼肌管细胞表现出细胞自主的昼夜节律时钟,该时钟与基础肌细胞因子分泌有关。

Perrin, Laurent; Loizides-Mangold, Ursula; Skarupelova, Svetlana; Pulimeno, Pamela; Chanon, Stephanie; Robert, Maud; Bouzakri, Karim; Modoux, Christine; Roux-Lombard, Pascale; Vidal, Hubert; Lefai, Etienne; Dibner, Charna

Exosomes participate in the alteration of muscle homeostasis during lipid-induced insulin resistance in mice

外泌体参与小鼠脂质诱导胰岛素抵抗过程中肌肉稳态的改变。

Aswad, Hala; Forterre, Alexis; Wiklander, Oscar P B; Vial, Guillaume; Danty-Berger, Emmanuelle; Jalabert, Audrey; Lamazière, Antonin; Meugnier, Emmanuelle; Pesenti, Sandra; Ott, Catherine; Chikh, Karim; El-Andaloussi, Samir; Vidal, Hubert; Lefai, Etienne; Rieusset, Jennifer; Rome, Sophie