Functional Reconstitution of Recombinant Phospholamban with Rabbit Skeletal Ca2+-ATPase
Функциональная реконституция рекомбинантного фосфоламбана с использованием скелетной Ca2+-АТФазы кролика
1995-04-01
SCID: 54.1/4sqzthdc
Discuss with AI
Baculovirus expression systemCa2+-ATPasePhospholamban (PLB)Protein reconstitutionSarcoplasmic reticulum
Figures from the paper
Abstract (AI)
Phospholamban (PLB) is a small, transmembrane protein that resides in the cardiac sarcoplasmic reticulum (SR) and regulates the activity of Ca(2+)-ATPase in response to beta-adrenergic stimulation. We have used the baculovirus expression system in Sf21 cells to express milligram quantities of wild-type PLB. After purification by antibody affinity chromatography, the function of this recombinant PLB was tested by reconstitution with Ca(2+)-ATPase purified from skeletal SR. The results obtained with recombinant PLB were indistinguishable from those obtained with purified, canine cardiac PLB. In particular, PLB reduced the apparent calcium affinity of Ca(2+)-ATPase but had no effect on Vmax. At pCa 6.8, PLB inhibited both calcium uptake and ATPase activity of Ca(2+)-ATPase by 50%. This inhibition was fully reversed by addition of a monoclonal antibody to PLB, which mimics the physiological effects of PLB phosphorylation. Maximal PLB regulatory effects occurred at a molar stoichiometry of approximately 3:1, PLB/Ca(2+)-ATPase. We also investigated peptides corresponding to the two main domains of PLB. The membrane-spanning domain, PLB26-52, appeared to uncouple ATPase hydrolysis from calcium transport, even though the permeability of the reconstituted vesicles was not altered. The cytoplasmic peptide, PLB1-31, had little effect, even at a 300:1 molar excess over Ca(2+)-ATPase.
Key Findings
1
A monoclonal antibody against phospholamban fully reversed the inhibition, mimicking the regulatory effect of phospholamban phosphorylation.
2
Maximum regulation occurred near a 3:1 phospholamban-to-Ca2+-ATPase molar stoichiometry; the membrane-spanning PLB26-52 peptide uncoupled hydrolysis from calcium transport, whereas PLB1-31 had little effect.
3
Phospholamban reduced the apparent calcium affinity of Ca2+-ATPase without changing Vmax; at pCa 6.8, it inhibited calcium uptake and ATPase activity by 50%.
4
Recombinant phospholamban behaved indistinguishably from purified canine cardiac phospholamban in regulating Ca2+-ATPase.
5
Recombinant wild-type phospholamban was expressed in Sf21 cells at milligram quantities and functionally reconstituted with purified skeletal-muscle Ca2+-ATPase.
Research Object
Recombinant wild-type phospholamban reconstituted with rabbit skeletal sarcoplasmic-reticulum Ca2+-ATPase
Research Subject
The effects of phospholamban and its membrane-spanning and cytoplasmic domains on Ca2+-ATPase calcium affinity, activity, calcium transport, and coupling between ATP hydrolysis and calcium transport
Publication Details
Publication Date
1995-04-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest