Phospholamban Pentamer Quaternary Conformation Determined by In-Gel Fluorescence Anisotropy,
- 25 February 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 44 (11) , 4302-4311
- https://doi.org/10.1021/bi0478446
Abstract
We measured in-gel fluorescence anisotropy of phospholamban (PLB) labeled with the biarsenical fluorophore FlAsH at three different sites on the cytoplasmic domain. The 6 kDa monomer bands of FlAsH-tetracysPLB showed high anisotropy (r = 0.29), reflecting null homotransfer and low mobility (S = 0.85) on the nanosecond time scale of the FlAsH fluorescence lifetime. 30 kDa bands (pentameric PLB) within the same lanes exhibited low anisotropy, suggesting intrapentameric fluorescence energy homotransfer between PLB subunits. FlAsH labels positioned at residue −6, 5, or 23 showed a graduated pattern of fluorescence depolarization corresponding to resonance energy transfer radii of 46 ± 2, 38 ± 4, and <25 Å, respectively. Pentamer anisotropy increased with heating or fluorescence photobleaching toward a maximum value similar to that determined for monomeric PLB. Fluorescence resonance energy heterotransfer was also observed in vitro and in vivo within PLB pentamers colabeled with FlAsH and the biarsenical fluorophore ReAsH. In vitro heterotransfer efficiencies were graduated by labeling position, in harmony with homotransfer results. The calculated transfer radii compare favorably to distances predicted by a computer molecular model of the phospholamban pentamer constructed from NMR solution structures. The data support a helical pinwheel model for the PLB pentamer, in which the cytoplasmic domains bend sharply outward from the central bundle of helices.Keywords
This publication has 19 references indexed in Scilit:
- Imaging molecular interactions in cells by dynamic and static fluorescence anisotropy (rFLIM and emFRET)Biochemical Society Transactions, 2003
- Helical structure of phospholamban in membrane bilayersJournal of Molecular Biology, 2001
- Reexamination of the Role of the Leucine/Isoleucine Zipper Residues of Phospholamban in Inhibition of the Ca2+ Pump of Cardiac Sarcoplasmic ReticulumJournal of Biological Chemistry, 2000
- Cardiac-specific Overexpression of a Superinhibitory Pentameric Phospholamban Mutant Enhances Inhibition of Cardiac Functionin VivoPublished by Elsevier ,2000
- Structure of the 1–36 Amino-Terminal Fragment of Human Phospholamban by Nuclear Magnetic Resonance and Modeling of the Phospholamban PentamerBiophysical Journal, 1999
- MOLMOL: A program for display and analysis of macromolecular structuresJournal of Molecular Graphics, 1996
- Theory and application of fluorescence homotransfer to melittin oligomerizationBiophysical Journal, 1995
- Structural Model of the Phospholamban Ion Channel Complex in Phospholipid MembranesJournal of Molecular Biology, 1995
- Yeast replication factor-A functions in the unwinding of the SV40 origin of DNA replicationNature, 1989
- Secondary structure of detergent-solubilized phospholamban, a phosphorylatable, oligomeric protein of cardiac sarcoplasmic reticulumBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1989