GIMAP5 deficiency reveals a mammalian ceramide-driven longevity assurance pathway

Ann Y. Park, Michael Leney-Greene, Matthew Lynberg, Justin Q. Gabrielski, Xijin Xu, Benjamin Schwarz, Lixin Zheng, Arasu Balasubramaniyam, Hyoungjun Ham, Brittany Chao, Yu Zhang, Helen F. Matthews, Jing Cui, Yikun Yao, Satoshi Kubo, Jean Michel Chanchu, Aaron R. Morawski, Sarah A. Cook, Ping Jiang, Juan C. RavellYan H. Cheng, Alex George, Aiman Faruqi, Alison M. Pagalilauan, Jenna R.E. Bergerson, Sundar Ganesan, Samuel D. Chauvin, Jahnavi Aluri, Joy Edwards-Hicks, Eric Bohrnsen, Caroline Tippett, Habib Omar, Leilei Xu, Geoffrey W. Butcher, John Pascall, Elif Karakoc-Aydiner, Ayca Kiykim, Holden Maecker, İlhan Tezcan, Saliha Esenboga, Raul Jimenez Heredia, Deniz Akata, Saban Tekin, Altan Kara, Zarife Kuloglu, Emel Unal, Tanıl Kendirli, Figen Dogu, Esra Karabiber, T. Prescott Atkinson, Claude Cochet, Odile Filhol, Catherine M. Bosio, Mark M. Davis, Richard P. Lifton, Erika L. Pearce, Oliver Daumke, Caner Aytekin, Gülseren Evirgen Şahin, Aysel Ünlüsoy Aksu, Gulbu Uzel, V. Koneti Rao, Sinan Sari, Kaan Boztug, Deniz Cagdas, Sule Haskologlu, Aydan Ikinciogullari, David Schwefel, Silvia Vilarinho, Safa Baris, Ahmet Ozen, Helen C. Su, Michael J. Lenardo

Research output: Contribution to journalArticlepeer-review

Fingerprint

Dive into the research topics of 'GIMAP5 deficiency reveals a mammalian ceramide-driven longevity assurance pathway'. Together they form a unique fingerprint.

Biochemistry, Genetics and Molecular Biology

Keyphrases