What neuron structure is responsible for ensuring that ions do not leak out of the axon membrane?
Table of contents
- 1. Overview of Cell Biology2h 49m
- 2. Chemical Components of Cells1h 14m
- 3. Energy1h 33m
- 4. DNA, Chromosomes, and Genomes2h 31m
- 5. DNA to RNA to Protein2h 31m
- 6. Proteins1h 36m
- 7. Gene Expression1h 42m
- 8. Membrane Structure1h 4m
- 9. Transport Across Membranes1h 52m
- 10. Anerobic Respiration1h 5m
- 11. Aerobic Respiration1h 11m
- 12. Photosynthesis52m
- 13. Intracellular Protein Transport2h 18m
- Membrane Enclosed Organelles19m
- Protein Sorting9m
- ER Processing and Transport20m
- Golgi Processing and Transport17m
- Vesicular Budding, Transport, and Coat Proteins15m
- Targeting Proteins to the Mitochondria and Chloroplast7m
- Lysosomal and Degradation Pathways10m
- Endocytic Pathways21m
- Exocytosis6m
- Peroxisomes5m
- Plant Vacuole4m
- 14. Cell Signaling1h 28m
- 15. Cytoskeleton and Cell Movement1h 39m
- 16. Cell Division3h 5m
- 17. Meiosis and Sexual Reproduction50m
- 18. Cell Junctions and Tissues48m
- 19. Stem Cells13m
- 20. Cancer44m
- 21. The Immune System1h 6m
- 22. Techniques in Cell Biology1h 41m
- The Light Microscope5m
- Electron Microscopy6m
- The Use of Radioisotopes4m
- Cell Culture8m
- Isolation and Purification of Proteins7m
- Studying Proteins9m
- Nucleic Acid Hybridization2m
- DNA Cloning12m
- Polymerase Chain Reaction - PCR6m
- DNA Sequencing5m
- DNA libraries5m
- DNA Transfer into Cells2m
- Tracking Protein Movement2m
- RNA interference4m
- Genetic Screens13m
- Bioinformatics3m
9. Transport Across Membranes
Ion Channels and Neurons
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Join thousands of students who trust us to help them ace their exams!Watch the first videoMultiple Choice
Potassium channels are mainly responsible for what?
A
Mediating action potentials
B
Returning the neuron to a resting membrane potential
C
Releasing neurotransmitters
D
Depolarization

1
Understand the role of potassium channels in neurons. Potassium channels are integral membrane proteins that allow potassium ions (K+) to pass through the cell membrane.
Recognize that during an action potential, the neuron's membrane potential changes due to the movement of ions across the membrane.
Identify that after an action potential, the neuron needs to return to its resting membrane potential, which is typically around -70 mV.
Know that potassium channels open to allow K+ ions to flow out of the neuron, which helps to repolarize the membrane and return it to the resting potential.
Conclude that the primary role of potassium channels in this context is to return the neuron to its resting membrane potential after depolarization has occurred.
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Related Practice
Multiple Choice
Ion Channels and Neurons practice set
