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Structural and functional characterization of the purified cardiac ryanodine receptor-Ca2+ release channel complex
1Department of Biochemistry, School of Medicine, University of North Carolina, Chapel Hill 27599-7260.
Abstract:
Using density gradient centrifugation and [3H]ryanodine as a specific marker, the ryanodine receptor-Ca2+ release channel complex from Chaps-solubilized canine cardiac sarcoplasmic reticulum (SR) has been purified in the form of an approximately 30 S complex, comprised of Mr approximately 400,000 polypeptides. Purification resulted in a specific activity of approximately 450 pmol bound ryanodine/mg of protein, a 60-70% recovery of ryanodine binding activity, and retention of the high affinity ryanodine binding site (KD = 3 nM). Negative stain electron microscopy revealed a 4-fold symmetric, four-leaf clover structure, which could fill a box approximately 30 x 30 nm and was thus morphologically similar to the SR-transverse-tubule, junctionally associated foot structure. The structural, sedimentation, and ryanodine binding data strongly suggest there is one high affinity ryanodine binding site/30 S complex, comprised of four Mr approximately 400,000 subunits. Upon reconstitution into planar lipid bilayers, the purified complex exhibited a Ca2+ conductance (70 pS in 50 mM Ca2+) similar to that of the native cardiac Ca2+ release channel (75 pS). The reconstituted complex was also found to conduct Na+ (550 pS in 500 mM Na+) and often to display complex Na+ subconducting states. The purified channel could be activated by micromolar Ca2+ or millimolar ATP, inhibited by millimolar Mg2+ or micromolar ruthenium red, and modified to a long-lived open subconducting state by ryanodine. The sedimentation, subunit composition, morphological, and ryanodine binding characteristics of the purified cardiac ryanodine receptor-Ca2+ release channel complex were similar to those previously described for the purified ryanodine receptor-Ca2+ release channel complex from fast-twitch skeletal muscle.
Insights
Researchers purified the cardiac ryanodine receptor-Ca2+ release channel complex, a key protein in muscle contraction. This purified complex functions similarly to the native channel, offering insights into calcium signaling in the heart.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiology
Background:
- The ryanodine receptor is a critical Ca2+ release channel in sarcoplasmic reticulum.
- Understanding its structure and function is vital for cardiac physiology.
Purpose of the Study:
- To purify the canine cardiac ryanodine receptor-Ca2+ release channel complex.
- To characterize its structural, binding, and functional properties.
Main Methods:
- Density gradient centrifugation and [3H]ryanodine binding assays.
- Negative stain electron microscopy.
- Reconstitution into planar lipid bilayers.
Main Results:
- Purified a 30 S complex of ~400,000 Da polypeptides with high-affinity ryanodine binding.
- Electron microscopy revealed a 4-fold symmetric structure similar to native foot structures.
- Reconstituted channels exhibited Ca2+ and Na+ conductance, modulated by Ca2+, ATP, Mg2+, ruthenium red, and ryanodine.
Conclusions:
- The purified cardiac ryanodine receptor complex retains native channel function.
- Structural and functional similarities exist between cardiac and skeletal muscle ryanodine receptors.