Kiebish Michael A: Difference between revisions
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|firstname=Michael | |firstname=Michael | ||
|title=PhD | |title=PhD | ||
|institution= | |institution=BPGbio<br>Platform and Translational Sciences | ||
|address= | |address=500 Old Connecticut Path | ||
|area code= | |area code=01701 | ||
|city= | |city=Framingham | ||
|state=Massachusetts (MA) | |state=Massachusetts (MA) | ||
|country=USA | |country=USA | ||
}} | }} | ||
{{Labelingperson | {{Labelingperson |
Latest revision as of 10:56, 8 May 2024
Name | Kiebish Michael, PhD |
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Institution | BPGbio Platform and Translational Sciences |
Address | 500 Old Connecticut Path, 01701 |
City | Framingham |
State/Province | Massachusetts (MA) |
Country | USA |
[email protected] | |
Weblink | |
O2k-Network Lab | US MO St Louis Gross RW |
Labels:
Field of research: Basic
Publications
Published | Reference | |
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Ravasz 2024 Sci Rep | 2024 | Ravasz D, Bui D, Nazarian S, Pallag G, Karnok N, Roberts J, Marzullo BP, Tennant DA, Greenwood B, Kitayev A, Hill C, KomlΓ³di T, Doerrier C, Cunatova K, Fernandez-Vizarra E, Gnaiger E, Kiebish Michael A, Raska A, Kolev K, Czumbel B, Narain NR, Seyfried TN, Chinopoulos C (2024) Residual Complex I activity and amphidirectional Complex II operation support glutamate catabolism through mtSLP in anoxia. Sci Rep 14:1729. https://doi.org/10.1038/s41598-024-51365-4 |
Schlein 2021 Cell Rep | 2021 | Schlein C, Fischer AW, Sass F, Worthmann A, TΓΆdter K, Jaeckstein MY, Behrens J, Lynes MD, Kiebish MA, Narain NR, Bussberg V, Darkwah A, Jespersen NZ, Nielsen S, Scheele C, Schweizer M, Braren I, Bartelt A, Tseng YH, Heeren J, Scheja L (2021) Endogenous fatty acid synthesis drives brown adipose tissue involution. Cell Rep 34:108624. |
Stanford 2018 Cell Metab | 2018 | Stanford KI, Lynes MD, Takahashi H, Baer LA, Arts PJ, May FJ, Lehnig AC, Middelbeek RJW, Richard JJ, So K, Chen EY, Gao F, Narain NR, Distefano G, Shettigar VK, Hirshman MF, Ziolo MT, Kiebish MA, Tseng YH, Coen PM, Goodyear LJ (2018) 12,13-diHOME: an exercise-induced lipokine that increases skeletal muscle fatty acid uptake. Cell Metab 27:1111-20. |
Kiebish 2013 J Lipid Res | 2013 | Kiebish MA, Yang K, Liu X, Mancuso DJ, Guan S, Zhao Z, Sims HF, Cerqua R, Cade WT, Han X, Gross RW (2013) Dysfunctional cardiac mitochondrial bioenergetic, lipidomic, and signaling in a murine model of Barth syndrome. J Lipid Res 54:1312-25. |
Kiebish 2012 J Biol Chem | 2012 | Kiebish MA, Yang K, Sims HF, Jenkins CM, Liu X, Mancuso DJ, Zhao Z, Guan S, Abendschein DR, Han X, Gross RW (2012) Myocardial regulation of lipidomic flux by cardiolipin synthase: Setting the beat for bioenergetic efficiency. J Biol Chem 287:25086-97. |
Moon 2012 J Biol Chem | 2012 | Moon SH, Jenkins CM, Kiebish MA, Sims HF, Mancuso DJ, Gross RW (2012) Genetic ablation of calcium-independent phospholipase A2Ξ³ (iPLA2Ξ³) attenuates calcium-induced opening of the mitochondrial permeability transition pore and resultant cytochrome c release. J Biol Chem 287:29837-50. |
Mancuso 2010 J Biol Chem | 2010 | Mancuso 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. |
Abstracts
Published | Reference | |
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Ma 2018 MiPschool Tromso C1 | 2018 | Cardiolipin synthesis in brown and beige fat mitochondria is essential for systemic energy homeostasis. |