Glycolysis: Glucose –> G6-P –> F6-P – Glycolysis and Pyruvate Metabolism von Kevin Ahern, PhD

Über den Vortrag

Der Vortrag „ Glycolysis: Glucose –> G6-P –> F6-P – Glycolysis and Pyruvate Metabolism“ von Kevin Ahern, PhD ist Bestandteil des Kurses „Year 1 – Term 2 – Basic Principles of Medicine II – Endocrinology and Reproduction“.


Quiz zum Vortrag

  1. It requires ATP to catalyze its reaction.
  2. It is a non-regulated enzyme of glycolysis.
  3. ATP and glucose-6-phosphate are two products of the reaction it catalyzes.
  4. It catalyzes an isomerization.
  5. It is the enzyme responsible for the third step in glycolysis.
  1. The reaction is readily reversible.
  2. G6P is converted to F6P using energy from ATP.
  3. Regulators of this reaction include G6P and F2,6BP.
  4. The enzyme is a kinase.
  5. It performs a hydrolysis reaction.

Dozent des Vortrages Glycolysis: Glucose –> G6-P –> F6-P – Glycolysis and Pyruvate Metabolism

 Kevin Ahern, PhD

Kevin Ahern, PhD

Dr. Kevin Ahern is a Professor in the Department of Biochemistry and Biophysics at Oregon State University (OSU), USA.
He obtained his PhD in Biochemistry from Oregon State University. Currently, he teaches courses for health sciences students at OSU.
He is co-author of three Open Educational electronic textbooks on Biochemistry and a Guide to Getting Into Medical School.
Due to his achievements, he earned OSU’s highest teaching recognition, the Elizabeth P. Ritchie Distinguished Professor Award in 2017.
Within Lecturio, Dr. Ahern teaches courses on Biochemistry and on "How to Get into Medical School”.


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Biochemistry Lectures
von K SIVANGANAM K. am 29. August 2023 für Glycolysis: Glucose –> G6-P –> F6-P – Glycolysis and Pyruvate Metabolism

Great Lecturer..well explained. Every section of lectures are meticulously explained. Clearly understood.

 
Very well explained
von Maria O. am 10. August 2020 für Glycolysis: Glucose –> G6-P –> F6-P – Glycolysis and Pyruvate Metabolism

This lecture is amazing and I loved the explanation regarding the conformational change of hexocinase during the reaction.


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