calcium-dependent gating of voltage-gated ion channels

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Calcium-dependent gating of Voltage- gated ion channels

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Page 1: Calcium-dependent gating of Voltage-gated ion channels

Calcium-dependent gating of Voltage-gated ion channels

Page 2: Calcium-dependent gating of Voltage-gated ion channels

Ca2+ fluxes

Internalfree calcium

Effect

Ion fluxes

Gates

Membranepotential

Other transportmechanisms

Otherstimuli

Ca2+ Ions Transduce Signals

Ion Channels of Excitable Membranes, 3rd Edition, 2001Gene expression

Contraction

Neurotransmitter release

Page 3: Calcium-dependent gating of Voltage-gated ion channels

Berne & Levy, Cardiovascular Physiology 6th Edition (1992)

Ca++Ca++

Ca channel

Ca2+ current controls the plateau phase of the cardiac action potential

Journal of Physiology (2000) 525.2, pp. 285-298

Page 4: Calcium-dependent gating of Voltage-gated ion channels

Annu. Rev. Cell Dev. Biol. 2000. 16:521–55

Ca2+ channels control neurotransmitter release

CALCIUM CHANNEL

Ca2+

Page 5: Calcium-dependent gating of Voltage-gated ion channels

Ca2+ channels regulate gene expressionin hippocampal neurons

L-typeCa2+ channelL-typeCa2+ channel

Ca2+

L-typechannel

Current Opinion in Neurobiology 1997, 7:419–429

NATURE |VOL 401 | 14 OCTOBER 1999 |703

Page 6: Calcium-dependent gating of Voltage-gated ion channels

Ca2+ channel Structure

Annu. Rev. Cell Dev. Biol. 2000. 16:521–55

Page 7: Calcium-dependent gating of Voltage-gated ion channels

Neuron, Vol. 25, 533–535, March, 2000

Family of Voltage-Gated Ca2+ Channels

L-type

T-type

P/Q-typeN-typeR-type

L-type

P/Q-type

Page 8: Calcium-dependent gating of Voltage-gated ion channels

Ca2+-dependent gating ofthe L-type Ca2+ Channel

Page 9: Calcium-dependent gating of Voltage-gated ion channels

Circ Res. 2001; 89:944-956.

Ca2+ channels control the plateau phase ofthe cardiac action potential

ICa,L

Page 10: Calcium-dependent gating of Voltage-gated ion channels

SCIENCE, VOL. 202, 15 DECEMBER 1978

The permeating ion affects Ca2+ channel inactivation:Calcium Dependent Inactivation (CDI)

Page 11: Calcium-dependent gating of Voltage-gated ion channels

Ba2+

Ca2+

-90

+20 mV

Voltage

Current

100 ms

CDI: accelerated inactivation with Ca2+

Page 12: Calcium-dependent gating of Voltage-gated ion channels

Calcium Dependent Inactivation: A Ca2+-regulated feedback mechanism

• Ca2+ entering through channel

• Requires no cytoplasmic components– Ca2+ sensor is near channel pore

• Develops rapidly

Page 13: Calcium-dependent gating of Voltage-gated ion channels

CDI is greatest at membrane potentialseliciting peak inward Ca2+ current

SCIENCE • VOL. 270 • 1502

Ba2+Ca2+ Ba2+Ca2+

Page 14: Calcium-dependent gating of Voltage-gated ion channels

Ba2+Ca2+

CDI is greatest at membrane potentialseliciting peak inward Ca2+ current

SCIENCE • VOL. 270 • 1502

Page 15: Calcium-dependent gating of Voltage-gated ion channels

Conditional Open Probability Analysis (COPA)

-90

+10

No inactivation

+10

-90Inactivation

Page 16: Calcium-dependent gating of Voltage-gated ion channels

Conditional open probability analysis (COPA):Ca2+ entry enhances inactivation

SCIENCE, VOL. 250, 21 DECEMBER 1990

Ba2+

Ca2+

Page 17: Calcium-dependent gating of Voltage-gated ion channels

100 mM Ba2+ out

Biophysical Journal Volume 66 April 1994 1051-1060

CDI in L-type channels reconstituted in bilayers

Requires no cytoplasmic components

Page 18: Calcium-dependent gating of Voltage-gated ion channels

Ca2+ sensing apparatus resides within or nearCaV1.2 (1C) pore

•Rapid effects (< 5 msec)

•CDI in bilayers

•Minimal effects of Ca2+ chelators

Page 19: Calcium-dependent gating of Voltage-gated ion channels

CE

EC

A region of 1C is

necessary and sufficient

SCIENCE VOL 270 1 DECEMBER 1995 1502

I II III IVI II III IVI II III IV

Page 20: Calcium-dependent gating of Voltage-gated ion channels

EF-hand

Does Ca2+ bind directly to the 1C subunit?

Page 21: Calcium-dependent gating of Voltage-gated ion channels

EF-hand

Does Ca2+ bind directly to the 1C subunit?

Page 22: Calcium-dependent gating of Voltage-gated ion channels

Ca2+-binding in the EF-hand isnot necessary

Proc. Natl. Acad. Sci. USAVol. 94, pp. 2301–2305, March 1997

XCDI: √CDI:

√CDI:

Page 23: Calcium-dependent gating of Voltage-gated ion channels

Identification of critical region(s) in the C-terminus

THE JOURNAL OF BIOLOGICAL CHEMISTRYVol. 272, No. 6, Issue of February 7, pp. 3560–3566, 1997

Page 24: Calcium-dependent gating of Voltage-gated ion channels

Identification of critical region(s) in the C-terminus

Proc. Natl. Acad. Sci. USAVol. 95, pp. 3287–3294, March 1998

Page 25: Calcium-dependent gating of Voltage-gated ion channels

IQ motif

N

C

N

C

N

C

N

C

IQ motif / calmodulin (CaM) binding domain: CaM as the Ca2+ sensor

NATURE |VOL 399 | 13 MAY 1999 | 159

Page 26: Calcium-dependent gating of Voltage-gated ion channels

IQ motif is the CaM effector site

NATURE |VOL 399 | 13 MAY 1999 | 159

Page 27: Calcium-dependent gating of Voltage-gated ion channels

NATURE |VOL 399 | 13 MAY 1999 | 159

CaM binds to the IQ motif in the C-tail

Page 28: Calcium-dependent gating of Voltage-gated ion channels

N C

1477-1592 1592-1875

4- 4- 4-WT WT WT

1551-1660

CaM is constitutively bound to 1C

THE JOURNAL OF BIOLOGICAL CHEMISTRY Vol. 276, No. 33, Issue of August 17, pp. 30794–30802, 2001

Page 29: Calcium-dependent gating of Voltage-gated ion channels

Comparison of cation binding affinities of Calmodulin EF handsEC50 values (M)

Ca2+ Sr2+ Ba2+

Effective ionic radius (Å ) 1.06 1.21 1.38

Phosphodiesterase activity via CaM*

~2.5 ~25 >1000

Mol Pharmacol 26:75-82, 1984

CDI correlates with the affinity of thedivalent ion for CaM

SCIENCE, VOL. 202, 15 DECEMBER 1978SCIENCE, VOL. 202, 15 DECEMBER 1978

*PDE is one well-studied example of a Ca2+/CaM regulated enzyme, allowing the testing of the ionic dependence of CaM activation; PDE has nothing to do with CDI.

Page 30: Calcium-dependent gating of Voltage-gated ion channels

Calcium Dependent Inactivationof L-type Ca2+ Channels

• Calmodulin is the Ca2+ sensor

• CaM is pre-associated with 1C

• The IQ motif is the effector domain in 1C

• The EF-hand is a structural, non Ca2+-sensing domain

Page 31: Calcium-dependent gating of Voltage-gated ion channels

SCIENCE VOL 294 31812 OCTOBER 2001

SCIENCE VOL 294 33312 OCTOBER 2001

Gene expression in hippocampal neurons: LTCs and CaM

Page 32: Calcium-dependent gating of Voltage-gated ion channels

Ca2+-dependent gating ofP/Q-type Ca2+ Channels

Page 33: Calcium-dependent gating of Voltage-gated ion channels

NATURE |VOL 411 | 24 MAY 2001 |485

CDI and CDF in P/Q channels

Page 34: Calcium-dependent gating of Voltage-gated ion channels

CaM is the Ca2+ sensor?

NATURE |VOL 411 | 24 MAY 2001 |485

Page 35: Calcium-dependent gating of Voltage-gated ion channels

Different kinetics:different effector site?

NATURE |VOL 399 | 13 MAY 1999 |155

NATURE |VOL 411 | 24 MAY 2001 |485

Page 36: Calcium-dependent gating of Voltage-gated ion channels

Different kinetics:different Ca2+ sensor?

nature neuroscience • volume 5 no 3 • march 2002 • 210

Page 37: Calcium-dependent gating of Voltage-gated ion channels

Ionic Dependence of IpCa Inactivation

is it really CaM?

Neuron, Vol. 20, 797–807, April, 1998

Time constants Ca2+ Sr2+ Ba2+

Fast (ms) 43.6 ± 6.4 48.8 ± 2.9 88.5 ± 8.6

Slow (ms) 477 ± 51 576 ± 49 673 ± 46

PDE activity via CaM ~2.5 ~25 >1000

Page 38: Calcium-dependent gating of Voltage-gated ion channels

Calcium Dependent Gating of P/Q Ca2+ Channels

• Kinetics of inactivation and facilitation differ from L-type channel gating

• Calmodulin appears to be the Ca2+ sensor and the IQ motif is one effector domain in 1A

• CBD may be another effector domain

• The Ca2+-binding protein CaBP1 regulates inactivation in a Ca2+-independent manner

Page 39: Calcium-dependent gating of Voltage-gated ion channels

Ca2+-dependent gating of SK channels

TINS Vol. 19, No. 4 1996

IAHPTonic spiking

Page 40: Calcium-dependent gating of Voltage-gated ion channels

Ca2+-dependent gating of SK channels

NATURE |VOL 395 | 1 OCTOBER 1998

Page 41: Calcium-dependent gating of Voltage-gated ion channels

CaM is the Ca2+ sensor

NATURE |VOL 395 | 1 OCTOBER 1998

Page 42: Calcium-dependent gating of Voltage-gated ion channels

CaM is the Ca2+ sensor

NATURE |VOL 410 | 26 APRIL 2001

Page 43: Calcium-dependent gating of Voltage-gated ion channels

Gating Switch

NATURE |VOL 410 | 26 APRIL 2001

Page 44: Calcium-dependent gating of Voltage-gated ion channels

Ca2+/CaM modulation ofCNG channels

JBC Papers in Press. Pub. on March 7, 2003

Adaptation

Page 45: Calcium-dependent gating of Voltage-gated ion channels

Mechanism of Action

JBC Papers in Press. Pub. on March 7, 2003

Loss of auto-excitatory interaction

Page 46: Calcium-dependent gating of Voltage-gated ion channels

Other channels

• NMDA subtype of excitatory glutamate receptors

• BKCa channels