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Aconitase

  • Src Inhibitors Modulate Frataxin Protein Levels

    Src Inhibitors Modulate Frataxin Protein Levels

  • Aconitase: to Be Or Not to Be Inside Plant Glyoxysomes, That Is the Question

    Aconitase: to Be Or Not to Be Inside Plant Glyoxysomes, That Is the Question

  • Inhibition of Aldehyde Dehydrogenase 2 by Oxidative Stress Is Associated with Cardiac Dysfunction in Diabetic Rats

    Inhibition of Aldehyde Dehydrogenase 2 by Oxidative Stress Is Associated with Cardiac Dysfunction in Diabetic Rats

  • Lecture 9: Citric Acid Cycle/Fatty Acid Catabolism

    Lecture 9: Citric Acid Cycle/Fatty Acid Catabolism

  • Effect of Salt Stress on the Expression and Promoter Methylation of the Genes Encoding the Mitochondrial and Cytosolic Forms of Aconitase and Fumarase in Maize

    Effect of Salt Stress on the Expression and Promoter Methylation of the Genes Encoding the Mitochondrial and Cytosolic Forms of Aconitase and Fumarase in Maize

  • Mitochondrial Aldehyde Dehydrogenase (ALDH2) Protects

    Mitochondrial Aldehyde Dehydrogenase (ALDH2) Protects

  • Iron Sulfur Clusters and the Role of Iron in Aconitase

    Iron Sulfur Clusters and the Role of Iron in Aconitase

  • 1,2,3,5,6,8,10,11,16,20,21 Citric Acid Cycle Reactions

    1,2,3,5,6,8,10,11,16,20,21 Citric Acid Cycle Reactions

  • Aconitase-340 77391200

    Aconitase-340 77391200

  • A Mitochondrial-Like Aconitase in the Bacterium Bacteroides Fragilis: Implications for the Evolution of the Mitochondrial Krebs Cycle

    A Mitochondrial-Like Aconitase in the Bacterium Bacteroides Fragilis: Implications for the Evolution of the Mitochondrial Krebs Cycle

  • Supplementary Table 2: Energy Metabolism Related Genes

    Supplementary Table 2: Energy Metabolism Related Genes

  • III. Metabolism the Citric Acid Cycle

    III. Metabolism the Citric Acid Cycle

  • ALDH2) in Neuropathology and Neurodegeneration

    ALDH2) in Neuropathology and Neurodegeneration

  • The Citric Acid Cycle

    The Citric Acid Cycle

  • Autocrine IFN Signaling Inducing Profibrotic Fibroblast Responses By

    Autocrine IFN Signaling Inducing Profibrotic Fibroblast Responses By

  • Investigating HK2 As a Potential Therapeutic Target in Glioblastoma

    Investigating HK2 As a Potential Therapeutic Target in Glioblastoma

  • Aconitase Assay Kit

    Aconitase Assay Kit

  • Inhibition of Krebs Cycle Enzymes by Hydrogen Peroxide: a Key Role of ␣-Ketoglutarate Dehydrogenase in Limiting NADH Production Under Oxidative Stress

    Inhibition of Krebs Cycle Enzymes by Hydrogen Peroxide: a Key Role of ␣-Ketoglutarate Dehydrogenase in Limiting NADH Production Under Oxidative Stress

Top View
  • The Kreb Cycle Part 2: the Kreb Cycle Reactions
  • Murine Cytotoxic Activated Macrophages Inhibit Aconitase in Tumor Cells
  • Kynurenines with Neuroactive and Redox Properties: Relevance to Aging and Brain Diseases
  • Lecture 32 & 33: Pyruvated Dehydrogenase & the TCA Cycle
  • Lecture 4 - Citric Acid Cycle
  • Aconitase Is a Sensitive and Critical Target of Oxygen Poisoning in Cultured Mammalian Cells and in Rat Lungs PAUL R
  • Reversible Redox-Dependent Modulation of Mitochondrial Aconitase and Proteolytic Activity During in Vivo Cardiac Ischemia͞reperfusion
  • 11 12 13 TCA Cycle Laptop
  • The Physiological Effects of CD38 in Prostate Cancer: a Multifunctional
  • Ab109712 – Aconitase Enzyme Activity Microplate Assay
  • Supplementary Table Paper
  • Use of H2O2 to Cause Oxidative Stress, the Catalase Issue
  • Kynurenines with Neuroactive and Redox Properties: Relevance to Aging and Brain Diseases
  • Aconitase 2 Inhibits the Proliferation of MCF-7 Cells Promoting Mitochondrial Oxidative Metabolism and ROS/ Foxo1-Mediated Autophagic Response
  • SNO-DIGE): Implications for the Regulation of Mitochondrial Function by Reversible S-Nitrosation Edward T
  • Mitochondrial Aldehyde Dehydrogenase Obliterates Insulin Resistance-Induced Cardiac Dysfunction Through Deacetylation of PGC-1Α
  • Rapid Inactivation of Plant Aconitase by Hydrogen Peroxide
  • Iron Regulatory Protein 2 Modulates the Switch from Aerobic Glycolysis to Oxidative Phosphorylation in Mouse Embryonic Fibroblasts


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