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  • Biology chapter 9 Flashcards - Quizlet
    During glycolysis, when glucose is catabolized to pyruvate, most of the energy of glucose is A) transferred to ADP, forming ATP B) transferred directly to ATP C) retained in the pyruvate D) stored in the NADH produced E) used to phosphorylate fructose to form fructose-6-phosphate
  • Glycolysis: Steps, Energy Yield, Regulation, and Metabolic Role
    In addition to ATP and NADH, glycolysis produces pyruvate, a central metabolite processed in various ways depending on the organism and environmental conditions In aerobic organisms, pyruvate enters the citric acid cycle, contributing to ATP production
  • Glycolysis Cycle: Enzymes, Steps, and Products - Microbe Online
    Glycolysis is the pathway that breaks down glucose into two pyruvates (product) and produces 4 ATP (net gain of 2 ATP) and 2 NADH (nicotinamide adenosine dinucleotide+hydrogen) in the process The pathway occurs in the cytoplasm of the cell
  • Biochemistry, Glycolysis - StatPearls - NCBI Bookshelf
    In glycolysis, 2 ATP molecules are consumed, producing 4 ATP, 2 NADH, and 2 pyruvates per glucose molecule The pyruvate can be used in the citric acid cycle or serve as a precursor for other reactions [2] [3] [4] Glycolysis ultimately splits glucose into two pyruvate molecules
  • 7. 7: Glycolysis - Outcomes of Glycolysis - Biology LibreTexts
    Red blood cells require glycolysis as their sole source of ATP in order to survive, because they do not have mitochondria Cancer cells and stem cells also use glycolysis as the main source of ATP (process known as aerobic glycolysis, or Warburg effect)
  • Glycolysis: A multifaceted metabolic pathway and signaling hub
    Glycolysis produces a net gain of two molecules of ATP per molecule of glucose ATP is predominately recognized for its role as a universal energy carrier in cells, providing energy for various biochemical reactions such as muscle contraction, nerve impulse propagation, and active transport
  • Glycolysis – Definition, Steps, Enzymes, Regulation, Result
    Role of Glycolysis Beyond ATP Production: While glycolysis generates ATP, this is not the primary advantage of the Warburg effect in cancer cells Instead, glycolysis provides a significant biosynthetic advantage
  • Glycolysis – biochemistry
    Glycolysis is the primary mechanism by which ATP is produced in anaerobic conditions In addition to generating ATP, glycolysis also generates NADH Glycolysis cannot continue if there is not an electron acceptor (NAD+)
  • Glycolysis - Community College of Baltimore County
    Glycolysis is a partial breakdown of a six-carbon glucose molecule into two, three-carbon molecules of pyruvate, 2NADH +2H+, and 2 net ATP as a result of substrate-level phosphorylation 4 The overall reaction for glycolysis is: glucose (6C) + 2 NAD+ 2 ADP +2 inorganic phosphates (Pi) yields 2 pyruvate (3C) + 2 NADH + 2 H + + 2 net ATP 5
  • chapter 9 cellular respiration mastering biology Flashcards
    Among the products of glycolysis, which compounds contain energy that can be used by other biological reactions? The ATP that is generated in glycolysis is produced by substrate-level phosphorylation, a very different mechanism than the one used to produce ATP during oxidative phosphorylation





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