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Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology: Chimeric proteins FRET Differences in Ca 2+ release between cardiac and skeletal muscle

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Page 1: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ release mechanisms in cardiac & skeletal muscle

OBJECTIVES• Methodology:

• Chimeric proteins• FRET

• Differences in Ca2+ release between cardiac and skeletal muscle

Page 2: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

INTRODUCTION

Page 3: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ channel characteristics

Page 4: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Voltage sensitive Ca2+ channel molecular structure

Page 5: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Mammalian Ca2+ channel genes

Page 6: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

SR Ca2+ release channel – Ryanodine receptor (RyR)

Page 7: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

RyR molecular structure

Page 8: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Mammalian ligand-gated Ca2+ channel genes

Page 9: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

DHPR-RyR molecular arrangment

Page 10: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ release in skeletal muscle

Page 11: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ release in cardiac muscle

Page 12: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 13: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

DISCUSSION

Page 14: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

1.5 nA

15 nA

10 nA

Cardiac sequenceSkeletal muscle sequence

pCac6 (Sk)

pCARD1

Page 15: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

pCac6 (Sk)

pCARD1

Ca2+ + 0 / Cd2+

CELL SHORTENING

Cardiac sequenceSkeletal muscle sequence

Page 16: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

I II III IV

II-III LOOP

Page 17: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Serine687 to alanine (S687A)Serine – PKA (only in Sk)

Page 18: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

I II III IV

II-III LOOP

Page 19: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 20: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Dyspedic myotubes

Region with RyR-2 cDNA

injection

Normal myotubes

Dyspedic myotubes with RyR-2

Ca2+ transient during spontaneous contractions

Page 21: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Normal myotubes Dyspedic myotubes with RyR-2

Page 22: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ currentRyR-2

expressing Dyspedic myotubes

Ca2+ current & [Ca2+]i

RyR-2 expressing Dyspedic myotubes

Page 23: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca

Ca2+ currentCSk3

expressing Dyspedic myotubes

Ca2+ transientDyspedic myotubes

Electrically evoked

Spontaneous

Failure (electrical)

Page 24: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 25: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 26: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 27: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca
Page 28: Ca 2+ release mechanisms in cardiac & skeletal muscle OBJECTIVES Methodology:Methodology: Chimeric proteinsChimeric proteins FRETFRET Differences in Ca