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Dopamine regulates working memory and its cellular correlates in the PFC.

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Page 1: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 2: Dopamine regulates working memory and its cellular correlates in the PFC.

Dopamine regulates working memory and its cellularcorrelates in the PFC

Page 3: Dopamine regulates working memory and its cellular correlates in the PFC.

Adapted from: Sawaguchi et al. (1986; 1988; 1990a,b)

Page 4: Dopamine regulates working memory and its cellular correlates in the PFC.

How does dopamine regulate working memory at the cellular level in the PFC?

• Study effects of dopamine on intrinsic properties of PFC neurons.

• Study effects of dopamine on synaptic inputs to PFC neurons.

• Make a model incorporating these data and see if you can answer the above question.

Page 5: Dopamine regulates working memory and its cellular correlates in the PFC.

Experimental Set-up

Page 6: Dopamine regulates working memory and its cellular correlates in the PFC.

Overview

Page 7: Dopamine regulates working memory and its cellular correlates in the PFC.

Effects of D1 receptor activation on pyramidal cell firing

Page 8: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor activation enhances evoked firing by shifting INAP activation

Page 9: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor activation sustains evoked firing by Slowing INAP inactivation by 42%

Page 10: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor activation also sustains evoked firing by reducing a slowly-inactivating K+ current

Page 11: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 12: Dopamine regulates working memory and its cellular correlates in the PFC.

Effects of dopamine on excitatory transmission

Page 13: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 agonists have no effect on low frequency inputs but enhance high frequency inputs.

Page 14: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor activation increases NMDA EPSCs selectively

Page 15: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor stimulation reduces release probability very slightly.

Minimal Stimulation

MK-801 Blocking Function

12.2 ± 7%

Page 16: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 17: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 receptor activation increases post-synaptic NMDA conductance

GNMDA= 5.9 1+e-0.0038(v-(-35))

GNMDA= 5.07 1+e-0.0038(v-(-25))

GNMDA

Vm

2.5pA

100ms

ControlD1 Agonist

Control

D1 Agonist

Voltage-Clamp(Cs, TTX, Cd)

Page 18: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 agonists do not enhance response to trains when NMDA receptors are blocked

Page 19: Dopamine regulates working memory and its cellular correlates in the PFC.

Models indicate that the selective increase in depolarization is due to both reduced Pr and

enhanced NMDA conductance

DataSimulation

GNMDA shift + depression shift

GNMDA shift alone

Data

Simulated D1

controlD1 condition

Page 20: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 21: Dopamine regulates working memory and its cellular correlates in the PFC.

Effects of dopamine on inhibitory transmission

Page 22: Dopamine regulates working memory and its cellular correlates in the PFC.

Dopamine has bi-directional effects on IPSCs

D2 D1

Page 23: Dopamine regulates working memory and its cellular correlates in the PFC.

Dopamine can switch IPSCs from a reduced state (D2-mediated) to an enhanced state (D1-mediated)

Page 24: Dopamine regulates working memory and its cellular correlates in the PFC.

D1 agonists increase action-potential evoked Spontaneous IPSCs but not Mini IPSCs.

Page 25: Dopamine regulates working memory and its cellular correlates in the PFC.

Dopamine via D1 but not D2 receptors directly excites interneurons

Page 26: Dopamine regulates working memory and its cellular correlates in the PFC.

D2-mediated reduction of IPSCs is blocked by a muscarinic acetylcholine antagonist (Atropine)

Page 27: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 28: Dopamine regulates working memory and its cellular correlates in the PFC.

Summary of the Physiological Effects of Dopamine

Page 29: Dopamine regulates working memory and its cellular correlates in the PFC.

Linking cellular mechanisms to the functions of dopamine in the PFC

Computational Modeling

(Daniel Durstewitz)

Page 30: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 31: Dopamine regulates working memory and its cellular correlates in the PFC.

Simulation of D1 effects leads to reduction in spontaneous but large enhancement in evoked “delay-period” activity

Page 32: Dopamine regulates working memory and its cellular correlates in the PFC.

The model reproduces qualitative aspects of dopamine’s actions in vivo

Page 33: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 34: Dopamine regulates working memory and its cellular correlates in the PFC.

How does dopamine regulate working memory at the cellular level in the PFC?

• It gates the flow of synaptic input into the PFC and regulates network activity via its effects on inhibition.

• It aids in establishing and stabilizing up-states (delay-period activity) via its actions on INAP, IKS, INMDA, & glutamate release.

Page 35: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 36: Dopamine regulates working memory and its cellular correlates in the PFC.
Page 37: Dopamine regulates working memory and its cellular correlates in the PFC.

SupervisorsAnthony Phillips (UBC)

Charles Yang (UBC, Lilly Research Labs. )

Natalia Gorelova (UBC)

Terry Sejnowski (Salk Institute)

Charles Stevens (Salk Institute)

CollaboratorsStan Floresco (UBC)

Daniel Durstewitz (Salk Institute)

Page 38: Dopamine regulates working memory and its cellular correlates in the PFC.

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