| Literature DB >> 18949080 |
Fibich A1, Jüngst C, Apell H-J.
Abstract
SR vesicles isolated from rabbit muscle were treated by a SDS incubation and subsequent dialysis to obtain open membrane fragments that allow a direct access to the luminal membrane surface and especially to the ion-binding sites in the P-E(2) conformation of the Ca-ATPase. The open membrane fragments showed about 80% of the enzyme activity in the untreated membranes. Pump function was investigated by using electrochromic styryl dyes. The kinetic properties of cytoplasmic ion binding showed no significant differences between the Ca-ATPases in SR vesicles and in membrane fragments. From pH-dependent Ca(2+) binding it could be deduced that due to the SDS treatment the density of negatively charged lipid was increased by one elementary charge per 12 lipid molecules. Major differences between Ca-ATPase from SR vesicles and membrane fragments were the respective fluorescence amplitudes. This effect is, however, produced by dye-lipid interaction and not by pump function. It was demonstrated that time-resolved kinetics may be study by the use of caged compounds such as caged ATP or caged calcium also in the case of the membrane fragments.Entities:
Keywords: Membrane fragments; electrochromic dyes; fluorescence; ion binding; pH effects
Year: 2008 PMID: 18949080 PMCID: PMC2570558 DOI: 10.2174/1874091X00802010091
Source DB: PubMed Journal: Open Biochem J ISSN: 1874-091X
Comparison of the Parameters of the Time-Resolved Relaxation Experiments with SR Vesicles and Membrane Frag-ments
| caged H+ | ||||
| vesicles | 1.4±0.1 ms | 0.030±0.001 | 31.9±0.1 ms | 0.052±0.001 |
| fragments | 2.5±0.1 ms | 0.025±0.001 | 34.2±0.6 ms | 0.002±0.001 |
| caged Ca2+ | ||||
| vesicles | 44.3±2.6 ms | 0.021±0.001 | 302.6±6.7 ms | 0.041±0.001 |
| fragments | 41.9±5.0 ms | 0.005±0.001 | 272.6±8.0 ms | 0.020±0.001 |
| caged ATP | ||||
| vesicles | 101.5±3.2 ms | 0.083±0.001 | 5.4±0.03 s | 0.200±0.001 |
| fragments | 105.0±2.9 ms | 0.055±0.001 | >6.0 s (n.s.) | 0.004 (n.s.) |