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

Adipocyte NADH dehydrogenase reverses circadian and diet-induced metabolic syndrome.

脂肪细胞 NADH 脱氢酶可逆转昼夜节律和饮食引起的代谢综合征。

Hepler Chelsea, Waldeck Nathan J, Weidemann Benjamin J, Marcheva Biliana, Chen You-Jia, Hecker Jacqueline, Zhu Ziming, Nozawa Rino, Mastroni Joseph V, Thorne Anneke K, Reczek Colleen R, Cedernaes Jonathan, Ramsey Kathryn M, Peek Clara B, Barish Grant D, Chandel Navdeep S, Bass Joseph

Genetic modulation of mitochondrial NAD+ regeneration does not prevent dopaminergic neuron dysfunction caused by mitochondrial complex I impairment

基因调控线粒体NAD+再生并不能阻止由线粒体复合物I损伤引起的多巴胺能神经元功能障碍。

D'Alessandro, Karis B; Zampese, Enrico; Blum, Jenna L E; Kuusik, Britta; Palmiotti, Alec; Davidson, Shawn M; Reczek, Colleen R; Surmeier, D James; Chandel, Navdeep S

Metformin inhibits mitochondrial complex I in intestinal epithelium to promote glycemic control

二甲双胍通过抑制肠上皮细胞中的线粒体复合物I来促进血糖控制。

Sebo, Zachary L; Chakrabarty, Ram P; Grant, Rogan A; D'Alessandro, Karis B; Koss, Alec R; Blum, Jenna L E; Davidson, Shawn M; Reczek, Colleen R; Chandel, Navdeep S

NADH dehydrogenase reverses dietary and clock metabolic syndrome

NADH脱氢酶逆转饮食和生物钟代谢综合征

Hepler, Chelsea; Waldeck, Nathan J; Weidemann, Benjamin J; Marcheva, Biliana; Chen, You-Jia; Hecker, Jacqueline; Zhu, Ziming; Nozawa, Rino; Mastroni, Joseph V; Thorne, Anneke K; Reczek, Colleen R; Cedernaes, Jonathan; Ramsey, Kathryn M; Peek, Clara B; Barish, Grant D; Chandel, Navdeep S; Bass, Joseph

Genetic modulation of mitochondrial NAD+ regeneration does not prevent dopaminergic neuron dysfunction caused by mitochondrial complex I impairment.

基因调控线粒体 NAD+ 再生并不能阻止由线粒体复合物 I 损伤引起的多巴胺能神经元功能障碍

D'Alessandro Karis B, Zampese Enrico, Blum Jenna L E, Kuusik Britta, Palmiotti Alec, Davidson Shawn M, Reczek Colleen R, Surmeier D James, Chandel Navdeep S

Pyrimidines maintain mitochondrial pyruvate oxidation to support de novo lipogenesis

嘧啶维持线粒体丙酮酸氧化,以支持从头脂肪生成。

Sahu, Umakant; Villa, Elodie; Reczek, Colleen R; Zhao, Zibo; O'Hara, Brendan P; Torno, Michael D; Mishra, Rohan; Shannon, William D; Asara, John M; Gao, Peng; Shilatifard, Ali; Chandel, Navdeep S; Ben-Sahra, Issam

Dietary pro-oxidant therapy by a vitamin K precursor targets PI 3-kinase VPS34 function.

通过维生素 K 前体进行膳食促氧化疗法,可靶向 PI 3-激酶 VPS34 的功能

Swamynathan Manojit M, Kuang Shan, Watrud Kaitlin E, Doherty Mary R, Gineste Charlotte, Mathew Grinu, Gong Grace Q, Cox Hilary, Cheng Eileen, Reiss David, Kendall Jude, Ghosh Diya, Reczek Colleen R, Zhao Xiang, Herzka Tali, Špokaitė Saulė, Dessus Antoine N, Kim Seung Tea, Klingbeil Olaf, Liu Juan, Nowak Dawid G, Alsudani Habeeb, Wee Tse-Luen, Park Youngkyu, Minicozzi Francesca, Rivera Keith, Almeida Ana S, Chang Kenneth, Chakrabarty Ram P, Wilkinson John E, Gimotty Phyllis A, Diermeier Sarah D, Egeblad Mikala, Vakoc Christopher R, Locasale Jason W, Chandel Navdeep S, Janowitz Tobias, Hicks James B, Wigler Michael, Pappin Darryl J, Williams Roger L, Cifani Paolo, Tuveson David A, Laporte Jocelyn, Trotman Lloyd C

Potassium Leak Channels and Mitochondrial Complex I Interact in Glutamatergic Interneurons of the Mouse Spinal Cord

小鼠脊髓谷氨酸能中间神经元中钾离子泄漏通道与线粒体复合物I的相互作用

Woods, Christian B; Predoi, Beatrice; Howe, Miranda; Reczek, Colleen R; Kayser, Ernst-Bernhard; Ramirez, Jan-Marino; Morgan, Philip G; Sedensky, Margaret M

Isoflurane inhibition of endocytosis is an anesthetic mechanism of action.

异氟烷通过抑制内吞作用发挥麻醉作用

Jung Sangwook, Zimin Pavel I, Woods Christian B, Kayser Ernst-Bernhard, Haddad Dominik, Reczek Colleen R, Nakamura Ken, Ramirez Jan-Marino, Sedensky Margaret M, Morgan Philip G

Mitochondrial Complex I Inhibitors Expose a Vulnerability for Selective Killing of Pten-Null Cells

线粒体复合物 I 抑制剂暴露了选择性杀死 Pten 缺失细胞的脆弱性

Naguib, Adam; Mathew, Grinu; Reczek, Colleen R; Watrud, Kaitlin; Ambrico, Alexandra; Herzka, Tali; Salas, Irene Casanova; Lee, Matthew F; El-Amine, Nour; Zheng, Wu; Di Francesco, M Emilia; Marszalek, Joseph R; Pappin, Darryl J; Chandel, Navdeep S; Trotman, Lloyd C