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Journal Abstract Search
367 related items for PubMed ID: 32075509
1. AMPK activation does not enhance autophagy in neurons in contrast to MTORC1 inhibition: different impact on β-amyloid clearance. Benito-Cuesta I, Ordóñez-Gutiérrez L, Wandosell F. Autophagy; 2021 Mar; 17(3):656-671. PubMed ID: 32075509 [Abstract] [Full Text] [Related]
2. Clearance of β-amyloid mediated by autophagy is enhanced by MTORC1 inhibition but not AMPK activation in APP/PSEN1 astrocytes. García-Juan M, Ordóñez-Gutiérrez L, Wandosell F. Glia; 2024 Mar; 72(3):588-606. PubMed ID: 38009275 [Abstract] [Full Text] [Related]
3. Crocetin promotes clearance of amyloid-β by inducing autophagy via the STK11/LKB1-mediated AMPK pathway. Wani A, Al Rihani SB, Sharma A, Weadick B, Govindarajan R, Khan SU, Sharma PR, Dogra A, Nandi U, Reddy CN, Bharate SS, Singh G, Bharate SB, Vishwakarma RA, Kaddoumi A, Kumar A. Autophagy; 2021 Nov; 17(11):3813-3832. PubMed ID: 33404280 [Abstract] [Full Text] [Related]
4. ARG2 impairs endothelial autophagy through regulation of MTOR and PRKAA/AMPK signaling in advanced atherosclerosis. Xiong Y, Yepuri G, Forbiteh M, Yu Y, Montani JP, Yang Z, Ming XF. Autophagy; 2014 Nov; 10(12):2223-38. PubMed ID: 25484082 [Abstract] [Full Text] [Related]
5. DNA-dependent protein kinase regulates lysosomal AMP-dependent protein kinase activation and autophagy. Puustinen P, Keldsbo A, Corcelle-Termeau E, Ngoei K, Sønder SL, Farkas T, Kaae Andersen K, Oakhill JS, Jäättelä M. Autophagy; 2020 Oct; 16(10):1871-1888. PubMed ID: 31983282 [Abstract] [Full Text] [Related]
6. The GST-BHMT assay reveals a distinct mechanism underlying proteasome inhibition-induced macroautophagy in mammalian cells. Rui YN, Xu Z, Chen Z, Zhang S. Autophagy; 2015 Oct; 11(5):812-32. PubMed ID: 25984893 [Abstract] [Full Text] [Related]
7. Platelet autophagic machinery involved in thrombosis through a novel linkage of AMPK-MTOR to sphingolipid metabolism. Lee TY, Lu WJ, Changou CA, Hsiung YC, Trang NTT, Lee CY, Chang TH, Jayakumar T, Hsieh CY, Yang CH, Chang CC, Chen RJ, Sheu JR, Lin KH. Autophagy; 2021 Dec; 17(12):4141-4158. PubMed ID: 33749503 [Abstract] [Full Text] [Related]
8. Autophagy in the physiological endometrium and cancer. Devis-Jauregui L, Eritja N, Davis ML, Matias-Guiu X, Llobet-Navàs D. Autophagy; 2021 May; 17(5):1077-1095. PubMed ID: 32401642 [Abstract] [Full Text] [Related]
9. TNF-induced necroptosis initiates early autophagy events via RIPK3-dependent AMPK activation, but inhibits late autophagy. Wu W, Wang X, Sun Y, Berleth N, Deitersen J, Schlütermann D, Stuhldreier F, Wallot-Hieke N, José Mendiburo M, Cox J, Peter C, Bergmann AK, Stork B. Autophagy; 2021 Dec; 17(12):3992-4009. PubMed ID: 33779513 [Abstract] [Full Text] [Related]
10. Activation of PPARA-mediated autophagy reduces Alzheimer disease-like pathology and cognitive decline in a murine model. Luo R, Su LY, Li G, Yang J, Liu Q, Yang LX, Zhang DF, Zhou H, Xu M, Fan Y, Li J, Yao YG. Autophagy; 2020 Jan; 16(1):52-69. PubMed ID: 30898012 [Abstract] [Full Text] [Related]
11. AMPK-dependent phosphorylation is required for transcriptional activation of TFEB and TFE3. Paquette M, El-Houjeiri L, C Zirden L, Puustinen P, Blanchette P, Jeong H, Dejgaard K, Siegel PM, Pause A. Autophagy; 2021 Dec; 17(12):3957-3975. PubMed ID: 33734022 [Abstract] [Full Text] [Related]
13. DRD3 (dopamine receptor D3) but not DRD2 activates autophagy through MTORC1 inhibition preserving protein synthesis. Barroso-Chinea P, Luis-Ravelo D, Fumagallo-Reading F, Castro-Hernandez J, Salas-Hernandez J, Rodriguez-Nuñez J, Febles-Casquero A, Cruz-Muros I, Afonso-Oramas D, Abreu-Gonzalez P, Moratalla R, Millan MJ, Gonzalez-Hernandez T. Autophagy; 2020 Jul; 16(7):1279-1295. PubMed ID: 31538542 [Abstract] [Full Text] [Related]
14. STYK1 promotes autophagy through enhancing the assembly of autophagy-specific class III phosphatidylinositol 3-kinase complex I. Zhou C, Qian X, Hu M, Zhang R, Liu N, Huang Y, Yang J, Zhang J, Bai H, Yang Y, Wang Y, Ali D, Michalak M, Chen XZ, Tang J. Autophagy; 2020 Oct; 16(10):1786-1806. PubMed ID: 31696776 [Abstract] [Full Text] [Related]
16. The GID ubiquitin ligase complex is a regulator of AMPK activity and organismal lifespan. Liu H, Ding J, Köhnlein K, Urban N, Ori A, Villavicencio-Lorini P, Walentek P, Klotz LO, Hollemann T, Pfirrmann T. Autophagy; 2020 Sep; 16(9):1618-1634. PubMed ID: 31795790 [Abstract] [Full Text] [Related]
17. Treatments targeting autophagy ameliorate the age-related macular degeneration phenotype in mice lacking APOE (apolipoprotein E). Vessey KA, Jobling AI, Tran MX, Wang AY, Greferath U, Fletcher EL. Autophagy; 2022 Oct; 18(10):2368-2384. PubMed ID: 35196199 [Abstract] [Full Text] [Related]
18. Podocytes maintain high basal levels of autophagy independent of mtor signaling. Bork T, Liang W, Yamahara K, Lee P, Tian Z, Liu S, Schell C, Thedieck K, Hartleben B, Patel K, Tharaux PL, Lenoir O, Huber TB. Autophagy; 2020 Nov; 16(11):1932-1948. PubMed ID: 31865844 [Abstract] [Full Text] [Related]
19. MITF-MIR211 axis is a novel autophagy amplifier system during cellular stress. Ozturk DG, Kocak M, Akcay A, Kinoglu K, Kara E, Buyuk Y, Kazan H, Gozuacik D. Autophagy; 2019 Mar; 15(3):375-390. PubMed ID: 30290719 [Abstract] [Full Text] [Related]
20. Decrease of neuronal FKBP4/FKBP52 modulates perinuclear lysosomal positioning and MAPT/Tau behavior during MAPT/Tau-induced proteotoxic stress. Chambraud B, Daguinot C, Guillemeau K, Genet M, Dounane O, Meduri G, Poüs C, Baulieu EE, Giustiniani J. Autophagy; 2021 Nov; 17(11):3491-3510. PubMed ID: 33459145 [Abstract] [Full Text] [Related] Page: [Next] [New Search]