Postsynaptic Mechanisms Flashcards

1
Q

Excitatory NT and the ion movements it causes?

A

Glutamate

Influx of Ca or Na

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2
Q

Inhibitory NT and the ion movements it causes?

A

GABA

Influx of Cl, efflux of K

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3
Q

What effects do alcohol and tranquilisers have on GABA and glutamate?

A

Alcohol and tranquilisers increase GABA

Alcohol decreases glutamate

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4
Q

What types of receptors are ionotropic?

A

Ligand-gated ion channels (direct action)

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5
Q

What types of receptors are metabotropic?

A

G-protein coupled receptors (indirect action via intracellular second messengers)

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6
Q

5 NT-gated ion channels

A
  1. ACH-cation channels
  2. Glutamate-gated Ca/Na channels
  3. Serotonin-gated cation channels
  4. GABA-gated Cl channels
  5. Glycine-gated Cl channels
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7
Q

What ions cause hyperpolarisation and depolarisation respectively?

A

Hyper: K efflux and Cl influx
Depolarisation: Na influx

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8
Q

GABAa receptors (type, structure, what binds)

A

Ionotropic receptors for Cl
Heteropentameric with 5 subunits
Binding sites for barbituates, benzos (allosteric modulators) and alcohol
NO intrinsic activity

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9
Q

What are the 3 classes of ionotropic glutamate receptors and how are they distinguished?

A

Distinguished pharmacologically
AMPA receptor
NMDA receptor
Kainate receptor

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10
Q

NMDA receptors (binding sites, function)

A

Binding sites for glutamate, Mg, glycine and others

Channel is blocked by Mg at resting potential and deporarisation removes Mg and causes ion flux. (Ca enters)

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11
Q

What is the mechanism of glutamate excitotoxicity?

A

Excessive release or decreased reuptake of glutamate increases its amount -> postsynaptic iGluR is stimulated ++ (mainly NMDA) and too much Ca enters, causing oxidative and metabolic stress and cell death.

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12
Q

What NT receptors are metabotropic?

A

Metabotropic glutamate (mGluR1-7)
GABAb receptor
Muscarinic ACh
Various dopamine, 5HT and NA receptors

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13
Q

What is the difference between second-messenger-gated ion channels and G-protein gated ion channels?

A

In G-protein receptors the alpha subunit of the G protein binds to the ion channel directly to open it, whereas in a second messenger system the alpha unit binds to an enzyme that produces the second messenger, which opens the channel and sends a message to the nucleus of the cell.

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