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A conserved mechanism of TOR-dependent RCK-mediated mRNA degradation regulates autophagy.

Nat. Cell Biol.. 2015; 
Hu Guowu,McQuiston Travis,Bernard Amélie,Park Yoon-Dong,Qiu Jin,Vural Ali,Zhang Nannan,Waterman Scott R,Blewett Nathan H,Myers Timothy G,Maraia Richard J,Kehrl John H,Uzel Gulbu,Klionsky Daniel J,Williamson Pet
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Catalog Antibody Affinity-purified rabbit anti-DCP2-pSer249 antiserum was produced by a commercial vendor (GenScript) using standard methods.... Following gel electrophoresis, proteins were transferred to a nitrocellulose membrane and probed with either primary antibodies or both primary and secondary antibodies and developed according to the manufacturer’s directions (GenScript). Get A Quote

摘要

Autophagy is an essential eukaryotic pathway requiring tight regulation to maintain homeostasis and preclude disease. Using yeast and mammalian cells, we report a conserved mechanism of autophagy regulation by RNA helicase RCK family members in association with the decapping enzyme Dcp2. Under nutrient-replete conditions, Dcp2 undergoes TOR-dependent phosphorylation and associates with RCK members to form a complex with autophagy-related (ATG) mRNA transcripts, leading to decapping, degradation and autophagy suppression. Simultaneous with the induction of ATG mRNA synthesis, starvation reverses the process, facilitating ATG mRNA accumulation and autophagy induction. This conserved post-transcription... More

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