Isolation of a terminal cisterna protein which may link the dihydropyridine receptor to the junctional foot protein in skeletal muscle
- 2 October 1990
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 29 (39) , 9281-9289
- https://doi.org/10.1021/bi00491a025
Abstract
The isolated dihydropyridine receptor and junctional foot protein were employed as protein ligands in overlay experiments to investigate the mode of interaction of these two proteins. As previously demonstrated by Brandt et al. [Brandt et al. (1990) J. Membr. Biol. 113, 237-251], the DHP receptor directly binds to an intrinsic terminal cisterna protein of Mr 95,000 (95-kDa protein). The junctional foot protein also binds to an Mr 95 000 protein showing similar organelle distribution to the 95-kDa protein which binds to the dihydropyridine receptor. The 95-kDa protein which binds to the dihydropyridine receptor was isolated to over 85% purity employing sequential column chromatography. Junctional foot protein and dihydropyridine receptor overlays of the column fractions at successive stage of isolation show an identical pattern of distribution, indicating that both probes bind to the same protein. When CHAPS-solubilized terminal cisterna/triads were passed through Sepharose with attached 95-kDa protein, the junctional foot protein was specifically retained, as evidenced by ryanodine binding. The junctional foot protein was incompletely released by 1 M NaCl. The .alpha.1 subunit but not the .beta. subunit of the dihydropyridine receptor was also specifically retained, as evidenced by immunoblotting employing dihydropyridine receptor subunit-specific antibodies. A 170-kDa Stains-all blue staining protein, which appears to be bound to the luminal side of the terminal cisterna, was also retained on the 95-kDa protein column. From these findings, a model for the triad junction is proposed.This publication has 30 references indexed in Scilit:
- Identification of a new subpopulation of triad junctions isolated from skeletal muscle; Morphological correlations with intact muscleThe Journal of Membrane Biology, 1990
- Molecular interactions of the junctional foot protein and dihydropyridine receptor in skeletal muscle triadsThe Journal of Membrane Biology, 1990
- Subunit composition of the purified dihydropyridine binding protein from skeletal muscleBiochemistry, 1989
- Rods in the terminal cisternae of skeletal muscleMuscle & Nerve, 1987
- The structure of calsequestrin in triads of vertebrate skeletal muscle: a deep-etch study.The Journal of cell biology, 1987
- Isolation, characterization, and localization of the spanning protein from skeletal muscle triads.The Journal of cell biology, 1986
- Determinants of triad junction reformation: Identification and isolation of an endogenous promotor for junction reformation in sketal muscleThe Journal of Membrane Biology, 1985
- Immobilized metal affinity adsorption and immobilized metal affinity chromatography of biomaterials. Serum protein affinities for gel-immobilized iron and nickel ionsBiochemistry, 1983
- Structural changes in single muscle fibers after stimulation at a low frequency.The Journal of general physiology, 1979
- Bridging structures spanning the junctioning gap at the triad of skeletal muscle.The Journal of cell biology, 1979