Ao-Lin Hsu, Ph.D.

Affiliations: 
2000 University of Kentucky, Lexington, KY 
Area:
Biochemistry
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"Ao-Lin Hsu"
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Parents

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Ching-Shih Chen grad student 2000 University of Kentucky
 (Roles of phospholipid signaling in cancer cells and the immune system.)
Cynthia Kenyon post-doc UCSF (Neurotree)
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Publications

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Chen TY, Wang FY, Lee PJ, et al. (2024) Mitochondrial S-adenosylmethionine deficiency induces mitochondrial unfolded protein response and extends lifespan in Caenorhabditis elegans. Aging Cell. e14103
Lim CY, Lin HT, Kumsta C, et al. (2022) SAMS-1 coordinates HLH-30/TFEB and PHA-4/FOXA activities through histone methylation to mediate dietary restriction-induced autophagy and longevity. Autophagy. 1-17
Chen CC, Lim CY, Lee PJ, et al. (2020) S-adenosyl methionine synthetase SAMS-5 mediates dietary restriction-induced longevity in Caenorhabditis elegans. Plos One. 15: e0241455
Sural S, Liang CY, Wang FY, et al. (2020) HSB-1/HSF-1 pathway modulates histone H4 in mitochondria to control mtDNA transcription and longevity. Science Advances. 6
Lombard DB, Kohler WJ, Guo AH, et al. (2020) High-throughput small molecule screening reveals Nrf2-dependent and -independent pathways of cellular stress resistance. Science Advances. 6
Ching TT, Chen YC, Li G, et al. (2020) Short-term enhancement of motor neuron synaptic exocytosis during early aging extends lifespan in . Experimental Biology and Medicine (Maywood, N.J.). 1535370220950639
Kuo CT, You GT, Jian YJ, et al. (2020) AMPK-mediated formation of stress granules is required for dietary restriction-induced longevity in Caenorhabditis elegans. Aging Cell. e13157
Sural S, Lu TC, Jung SA, et al. (2019) HSB-1 Inhibition and HSF-1 Overexpression Trigger Overlapping Transcriptional Changes to Promote Longevity in . G3 (Bethesda, Md.)
Li ST, Zhao HQ, Zhang P, et al. (2019) DAF-16 stabilizes the aging transcriptome and is activated in mid-aged Caenorhabditis elegans to cope with internal stress. Aging Cell. e12896
Yuan Y, Hakimi P, Kao C, et al. (2015) Reciprocal changes in phosphoenolpyruvate carboxykinase and pyruvate kinase with age are a determinant of aging in C. elegans. The Journal of Biological Chemistry
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