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Jared Rutter (U. Utah, HHMI) 1: Mitochondria: The Mysterious Cellular Parasite скачать в хорошем качестве

Jared Rutter (U. Utah, HHMI) 1: Mitochondria: The Mysterious Cellular Parasite 5 years ago

mitochondria

metabolism

cell metabolism

electron transport chain

oxidative phosphorylation

ATP synthesis

acetyl-CoA

glycolysis

pyruvate

mitochondrial pyruvate carrier

stem cells

cancer cells

lung fibrosis

LYR proteins

mitochondrial fatty acid synthesis

acyl carrier protein

anaplerosis

anapleurosis

catabolism

anabolism

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Jared Rutter (U. Utah, HHMI) 1: Mitochondria: The Mysterious Cellular Parasite

https://www.ibiology.org/cell-biology... Dr. Jared Rutter shares new insights into the interplay between mitochondria, metabolism, and cellular behavior. Mitochondria are integral to the metabolism of eukaryotic cells, yet many of their properties are not fully understood. In Part 1 of this iBioSeminar, Dr. Jared Rutter lays out the foundational knowledge of mitochondrial structure and origin, and shares what is currently known about mitochondrial roles in metabolism, protein homeostasis, and signaling. He ends by highlighting a focus of his research group: to unravel the functions of uncharacterized mitochondrial proteins. In Part 2 of his talk, Rutter describes his group’s work to unravel the relationship between the activity of the Mitochondrial Pyruvate Carrier (MPC) and the behavior of numerous cell types, including cancer and stem cells. His group found that forced expression of the MPC in multiple stem cell models led to reduced “stemness” and proliferative capacity, and that MPC inhibition could promote organoid formation in culture and tumor formation in vivo. These data indicate an important link between mitochondria, metabolism, and cell behavior. In his Part 3, Rutter emphasizes the challenge of mitochondrial protein synthesis. How do the components of the electron transport chain (ETC) assemble in the right stoichiometry at the right time? Rutter introduces the LYR family of proteins, which aid assembly of ETC components. LYR proteins interact with a common binding partner, the acyl carrier protein (ACP), via a unique fatty acyl moiety on ACP. Rutter’s group showed that ACP acylation is necessary for assembly of the ETC and activation of oxidative phosphorylation. Speaker Biography: Jared Rutter is a Professor of Biochemistry and holds the Dee Glen and Ida Smith Endowed Chair for Cancer Research at the University of Utah. Dr. Rutter received his PhD from the University of Texas Southwestern Medical Center in 2001, working with Dr. Steve McKnight. After receiving his PhD, he spent 18 months as the Sara and Frank McKnight Independent Fellow of Biochemistry before joining the faculty at the University of Utah. As of September 2015, Dr. Rutter is an Investigator of the Howard Hughes Medical Institute. In addition to leading his laboratory at the University of Utah, Dr. Rutter is also actively involved in translating these academic discoveries into therapies as a founder, consultant and board member of several companies and venture firms. Dr. Rutter also serves as co-Director of the Diabetes and Metabolism Center at the University of Utah and co-Leader of the Nuclear Control of Cell Growth and Differentiation at Huntsman Cancer Institute. https://rutter.biochem.utah.edu

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