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Difference between revisions of "Pietka Terri A"

From Bioblast
Line 2: Line 2:
|lastname=Pietka
|lastname=Pietka
|firstname=Terri A
|firstname=Terri A
|institution=Department of Medicine and Cell Biology
|institution=Dr. Nada Abumrad’s Laboratory
Core Manager, NORC ABMN Core
Division of Geriatrics and Nutritional Science


Center for Human Nutrition
|address=Washington University in St. Louis
|address=Campus Box 8031
|city=St. Louis
 
660 S. Euclid Ave.
 
212 West Building
|area code=63110
|city=St. Louis  
|state=Missouri (MO)
|state=Missouri (MO)
|country=USA
|country=USA

Revision as of 14:16, 23 May 2016

Name Pietka Terri A,
Institution Dr. Nada Abumrad’s Laboratory

Core Manager, NORC ABMN Core Division of Geriatrics and Nutritional Science

Address Washington University in St. Louis,
City St. Louis
State/Province Missouri (MO)
Country USA
Email [email protected]
Weblink
O2k-Network Lab US MO St Louis Abumrad NA


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Publications

 PublishedReference
Kim 2023 bioRxiv2023Kim Y, Li C, Gu C, Tycksen E, Puri A, Pietka TA, Sivapackiam J, Fang Y, Kidd K, Park SJ, Johnson BG, Kmoch S, Duffield JS, Bleyer AJ, Jackrel ME, Urano F, Sharma V, Lindahl M, Chen YM (2023) MANF stimulates autophagy and restores mitochondrial homeostasis to treat toxic proteinopathy. https://doi.org/10.1101/2023.01.10.523171
Mousa 2023 Cell Rep2023Mousa MG, Vuppaladhadiam L, Kelly MO, Pietka T, Ek S, Shen KC, Meyer GA, Finck BN, Brookheart RT (2023) Site-1 protease inhibits mitochondrial respiration by controlling the TGF-β target gene Mss51. Cell Rep 42:112336. https://doi.org/10.1016/j.celrep.2023.112336
Kim 2023 Nat Commun2023Kim Y, Li C, Gu C, Fang Y, Tycksen E, Puri A, Pietka TA, Sivapackiam J, Kidd K, Park SJ, Johnson BG, Kmoch S, Duffield JS, Bleyer AJ, Jackrel ME, Urano F, Sharma V, Lindahl M, Chen YM (2023) MANF stimulates autophagy and restores mitochondrial homeostasis to treat autosomal dominant tubulointerstitial kidney disease in mice. Nat Commun 14:6493. https://doi.org/10.1038/s41467-023-42154-0
BEC 2020.1 doi10.26124bec2020-0001.v12020Gnaiger E et al ― MitoEAGLE Task Group (2020) Mitochondrial physiology. Bioenerg Commun 2020.1. https://doi.org/10.26124/bec:2020-0001.v1
Ferey 2019 Am J Physiol Heart Circ Physiol2019Ferey J, Boudoures AL, Reid M, Drury A, Scheaffer S, Modi Z, Kovacs A, Pietka T, DeBosch BJ, Thompson MD, Diwan A, Moley KH (2019) Maternal high-fat, high-sucrose diet induces transgenerational cardiac mitochondrial dysfunction independent of maternal mitochondrial inheritance. Am J Physiol Heart Circ Physiol 316:H1202-H1210.
Mayer 2018 Endocrinology2018Mayer AL, Zhang Y, Feng EH, Higgins CB, Adenekan O, Pietka TA, Beatty WL, DeBosch BJ (2018) Enhanced hepatic PPARα activity links GLUT8 deficiency to augmented peripheral fasting responses in male mice. Endocrinology 159:2110-26.
Park 2018 J Clin Invest2018Park H, He A, Tan M, Johnson JM, Dean JM, Pietka TA, Chen Y, Zhang X, Hsu FF, Razani B, Funai K, Lodhi IJ (2018) Peroxisome-derived lipids regulate adipose thermogenesis by mediating cold-induced mitochondrial fission. J Clin Invest 129:694-711.
Harris 2015 Diabetes2015Harris LA, Skinner JR, Shew TM, Pietka TA, Abumrad NA, Wolins NE (2015) Perilipin 5-driven lipid droplet accumulation in skeletal muscle stimulates the expression of fibroblast growth factor 21. Diabetes 64:2757-68.
Mancuso 2010 J Biol Chem2010Mancuso DJ, Sims HF, Yang K, Kiebish MA, Su X, Jenkins CM, Guan S, Moon SH, Pietka T, Nassir F, Schappe T, Moore K, Han X, Abumrad NA, Gross RW (2010) Genetic ablation of calcium-independent phospholipase A2{gamma} prevents obesity and insulin resistance during high fat feeding by mitochondrial uncoupling and increased adipocyte fatty acid oxidation. J Biol Chem 285:36495-510.

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