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MARK4 controls ischaemic heart failure through microtubule detyrosination.
Yu, Xian; Chen, Xiao; Amrute-Nayak, Mamta; Allgeyer, Edward; Zhao, Aite; Chenoweth, Hannah; Clement, Marc; Harrison, James; Doreth, Christian; Sirinakis, George; Krieg, Thomas; Zhou, Huiyu; Huang, Hongda; Tokuraku, Kiyotaka; Johnston, Daniel St; Mallat, Ziad; Li, Xuan.
Afiliación
  • Yu X; Department of Medicine, Cardiovascular Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Chen X; Department of Cardiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
  • Amrute-Nayak M; Department of Molecular and Cell Physiology, Hannover Medical School, Hannover, Germany.
  • Allgeyer E; The Gurdon Institute, University of Cambridge, Cambridge, UK.
  • Zhao A; Department of Genetics, University of Cambridge, Cambridge, UK.
  • Chenoweth H; College of Computer Science and Technology, Qingdao University, Shandong, China.
  • Clement M; Department of Medicine, Cardiovascular Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Harrison J; Department of Medicine, Cardiovascular Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Doreth C; Department of Medicine, Cardiovascular Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Sirinakis G; Department of Medicine, Cardiovascular Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Krieg T; The Gurdon Institute, University of Cambridge, Cambridge, UK.
  • Zhou H; Department of Genetics, University of Cambridge, Cambridge, UK.
  • Huang H; Department of Medicine, Experimental Medicine and Immunotherapeutics Division, University of Cambridge, Addenbrooke's Hospital, Cambridge, UK.
  • Tokuraku K; School of Informatics, University of Leicester, Leicester, UK.
  • Johnston DS; Department of Biology, Southern University of Science and Technology, Shenzhen, China.
  • Mallat Z; Muroran Institute of Technology, Muroran, Japan.
  • Li X; The Gurdon Institute, University of Cambridge, Cambridge, UK.
Nature ; 594(7864): 560-565, 2021 06.
Article en En | MEDLINE | ID: mdl-34040253
Myocardial infarction is a major cause of premature death in adults. Compromised cardiac function after myocardial infarction leads to chronic heart failure with systemic health complications and a high mortality rate1. Effective therapeutic strategies are needed to improve the recovery of cardiac function after myocardial infarction. More specifically, there is a major unmet need for a new class of drugs that can improve cardiomyocyte contractility, because inotropic therapies that are currently available have been associated with high morbidity and mortality in patients with systolic heart failure2,3 or have shown a very modest reduction of risk of heart failure4. Microtubule detyrosination is emerging as an important mechanism for the regulation of cardiomyocyte contractility5. Here we show that deficiency of microtubule-affinity regulating kinase 4 (MARK4) substantially limits the reduction in the left ventricular ejection fraction after acute myocardial infarction in mice, without affecting infarct size or cardiac remodelling. Mechanistically, we provide evidence that MARK4 regulates cardiomyocyte contractility by promoting phosphorylation of microtubule-associated protein 4 (MAP4), which facilitates the access of vasohibin 2 (VASH2)-a tubulin carboxypeptidase-to microtubules for the detyrosination of α-tubulin. Our results show how the detyrosination of microtubules in cardiomyocytes is finely tuned by MARK4 to regulate cardiac inotropy, and identify MARK4 as a promising therapeutic target for improving cardiac function after myocardial infarction.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Tirosina / Proteínas Serina-Treonina Quinasas / Insuficiencia Cardíaca / Microtúbulos / Infarto del Miocardio Límite: Animals Idioma: En Revista: Nature Año: 2021 Tipo del documento: Article Pais de publicación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Tirosina / Proteínas Serina-Treonina Quinasas / Insuficiencia Cardíaca / Microtúbulos / Infarto del Miocardio Límite: Animals Idioma: En Revista: Nature Año: 2021 Tipo del documento: Article Pais de publicación: Reino Unido