2009
DOI: 10.1073/pnas.0904290106
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Structure and topology of monomeric phospholamban in lipid membranes determined by a hybrid solution and solid-state NMR approach

Abstract: Phospholamban (PLN) is an essential regulator of cardiac muscle contractility. The homopentameric assembly of PLN is the reservoir for active monomers that, upon deoligomerization form 1:1 complexes with the sarco(endo)plasmic reticulum Ca 2؉ -ATPase (SERCA), thus modulating the rate of calcium uptake. In lipid bilayers and micelles, monomeric PLN exists in equilibrium between a bent (or resting) T state and a more dynamic (or active) R state. Here, we report the high-resolution structure and topology of the T… Show more

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Cited by 156 publications
(207 citation statements)
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References 66 publications
(110 reference statements)
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“…Overall, the structure of each protomer within the pentameric assembly of PLN is similar to that of the monomeric PLN (AFA-PLN, 2KB7) (16). However, the two forms differ noticeably in the membrane topology (Fig.…”
Section: Structure and Topology Of Pln In Detergent Micelles And Lipidmentioning
confidence: 85%
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“…Overall, the structure of each protomer within the pentameric assembly of PLN is similar to that of the monomeric PLN (AFA-PLN, 2KB7) (16). However, the two forms differ noticeably in the membrane topology (Fig.…”
Section: Structure and Topology Of Pln In Detergent Micelles And Lipidmentioning
confidence: 85%
“…1E shows the overlay of several oriented solid-state NMR spectra located in two distinct regions: (i) resonances clustered at 200 ppm that correspond to the TM domains and (ii) resonances at 65-100 ppm, assigned to the cytoplasmic domain Ia. We measured a total of 29 DC and 31 CSA values (Table S2) and converted them into restraints for the hybrid structure calculations, where both solution and solid-state NMR restraints are implemented into the target energy function (15,16).…”
Section: Structure and Topology Of Pln In Detergent Micelles And Lipidmentioning
confidence: 99%
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“…10 SLF experiments have been widely used by chemists and biophysicists to characterize the structures of liquid crystals as well as membrane proteins in mechanically or magnetically aligned lipid bilayers. [11][12][13][14][15][16][17][18] Since the introduction of the SLF experiment, several variants have emerged, such as PISEMA, [19][20][21] SAMPI4, 22 HIMSELF, 23 and more recently the sensitivity-enhanced and constant time versions. [24][25][26][27] These experiments are also known as rotating frame SLF (R-SLF) experiments and take advantage of the heteronuclear DC evolution under Hartmann-Hahn matching of RF fields for I and S spins and homonuclear decoupling for the abundant I spins.…”
Section: Introductionmentioning
confidence: 99%