Early mitochondrial dysfunction leads to altered redox chemistry underlying pathogenesis of TPI deficiency
Triose phosphate isomerase (TPI) is responsible for the interconversion of dihydroxyacetone phosphate to glyceraldehyde-3-phosphate in glycolysis. Point mutations in this gene are associated with a glycolytic enzymopathy called TPI deficiency. This study utilizes a Drosophila melanogaster model of T...
Hoofdauteurs: | Stacy L. Hrizo, Isaac J. Fisher, Daniel R. Long, Joshua A. Hutton, Zhaohui Liu, Michael J. Palladino |
---|---|
Formaat: | Artikel |
Taal: | English |
Gepubliceerd in: |
Elsevier
2013-06-01
|
Reeks: | Neurobiology of Disease |
Onderwerpen: | |
Online toegang: | http://www.sciencedirect.com/science/article/pii/S0969996113000119 |
Gelijkaardige items
-
Hsp70- and Hsp90-mediated proteasomal degradation underlies TPIsugarkill pathogenesis in Drosophila
door: Stacy L. Hrizo, et al.
Gepubliceerd in: (2010-12-01) -
GENETIC DISORDERS OF RED CELL GLYCOLYSIS : A REVIEW FROM THE MOLECULAR TO CLINICAL AND THERAPEUTIC APROACHES
door: SOPHIA DELICOU, et al.
Gepubliceerd in: (2014-08-01) -
Itavastatin and resveratrol increase triosephosphate isomerase protein in a newly identified variant of TPI deficiency
door: Andrew P. VanDemark, et al.
Gepubliceerd in: (2022-05-01) -
Identification of protein quality control regulators using a Drosophila model of TPI deficiency
door: Stacy L. Hrizo, et al.
Gepubliceerd in: (2021-05-01) -
Newly discovered roles of triosephosphate isomerase including functions within the nucleus
door: Tracey D. Myers, et al.
Gepubliceerd in: (2023-01-01)