Ions, Permeability and the Resting Membrane Potential Flashcards

1
Q

What are the three most important factors which determine the ‘passive’ movement of an ion across the membrane?

A

+ Electrical gradient

+ Concentration gradient

+ Membrane permeability

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2
Q

What is equilibrium potential?

A

When the electrical potential precisely offsets the tendency for K+ to diffuse down its concentration gradient (chemical potential difference)

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3
Q

What is the magnitude of the equilibrium potential?

A

The greater the chemical potential gradient ( conc. gradient) across a membrane, the greater the electrical gradient required to offset it

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4
Q

In the Nernst equation, what is R?

A

R = gas constant

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5
Q

In the Nernst equation, what is T?

A

T = absolute temperature

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6
Q

In the Nernst equation, what is F?

A

F = Faraday constant

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7
Q

In the Nernst equation, what is z?

A

z = valency

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8
Q

What does the Nernst equation prove?

A

That the equilibrium potential is proportional to the logarithm of the ratio of the concentrations in the two compartments.

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9
Q

What is the Nernst equation for a monovalent ion at 37°C?

A

Ex = 61 x log base10 x conc. of chamber 1 / conc. of chamber 2

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10
Q

What is the Nernst equation for a divalent ion at 37°C?

A

Ex = 30.5 x log base10 x conc. of chamber 1 (outside) / conc. of chamber 2 (inside)

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11
Q

What is the net difference between the distribution of Cl- ions and that of Na+ and K+ ions?

A

+ Cl- ions are passively distributed

+ According to the value of the membrane potential - intracellular Cl- ions concentration is set by the membrane potential

+ Na+ and K+ ion concentrations are maintained by the sodium pump and set the membrane potential

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12
Q

Why is the resting membrane potential a negative value?

A

Because K+ ions are not accompanied by anions, charge separation occurs and the electrical potential of the cell interior becomes negative with respect to the extracellular solution.

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13
Q

Why is the resting membrane potential a negative value? Explain the phenomenon with reference to differences in membrane permeability to sodium and potassium ions.

A

Because the resting membrane potential is much closer to EK+ than to ENa+, the membrane must be much more permeable to K+ than to Na+

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