| Literature DB >> 26588454 |
Pravin Kumar1, Ine M J Segers-Nolten2, Nathalie Schilderink2, Vinod Subramaniam2,3, Martina Huber1.
Abstract
Binding of human α-Synuclein, a protein associated with Parkinson's disease, to natural membranes is thought to be crucial in relation to its pathological and physiological function. Here the binding of αS to small unilamellar vesicles mimicking the inner mitochondrial and the neuronal plasma membrane is studied in situ by continuous wave and pulsed electron paramagnetic resonance. Local binding information of αS spin labeled by MTSL at positions 56 and 69 respectively shows that also helix 2 (residues 50-100) binds firmly to both membranes. By double electron-electron resonance (DEER) on the mutant spin labeled at positions 27 and 56 (αS 27/56) a new conformation on the membrane is found with a distance of 3.6 nm/ 3.7 nm between residues 27 and 56. In view of the low negative charge density of these membranes, the strong interaction is surprising, emphasizing that function and pathology of αS could involve synaptic vesicles and mitochondria.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26588454 PMCID: PMC4654490 DOI: 10.1371/journal.pone.0142795
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Room temperature, solution EPR spectra of αS56 and αS69 (a) in buffer, (b) with IMM, (c) with NPM.
Black line: experiment, red line: simulation. Arrows show the low field feature indicating reduced mobility (see text).
Parameters (τr) describing the mobility of the spin label of αS bound to natural membranes from simulations of cw-EPR spectra.
τr: rotation-correlation time.
| condition | αS spin label positions | fast component | slow component | immobile component | |||
|---|---|---|---|---|---|---|---|
|
| contribution (%) |
| contribution (%) |
| contribution (%) | ||
|
| αS56 | 0.45± 0.02 | 100 | na | na | na | na |
| αS69 | 0.31±0.02 | 100 | na | na | na | na | |
|
| αS56 | 0.45 | 2.0±0.5 | 2.88±0.13 | 90 ±1.5 | >50.0 | 8.0 |
| αS69 | 0.31 | 2.0±0.5 | 2.23±0.11 | 98 ±1.0 | na | na | |
|
| αS56 | 0.45 | 2.0±0.5 | 2.95±0.14 | 88±1.5 | >50.0 | 10.0 |
| αS69 | 0.31 | 2.2±0.3 | 1.99±0.13 | 98±0.3 | na | na | |
na: not contributing in the simulation. For error determination, see Materials and Methods.
Fig 2DEER time traces and distance distributions for αS27/56 bound to IMM, NPM and POPG SUVs.
(a) Time trace before background correction (black line), red line: background. (b) Time trace after background correction (black line), red line: fit of the time trace with the distance distributions shown in c. (c) Distance distribution obtained after Tikhonov regularization of αS27/56 bound to IMM (black line) and NPM (red line). (d) Distance distribution obtained after Tikhonov regularization of αS27/56 bound to POPG SUVs. For comparison, the same regularization parameter was used for c and d, it seems to be on the small side for d. Small peaks shown with asterisks in Fig 2C have negligible contribution to the distance distribution according to the suppression tool in DEER analysis, the feature at 5.5. nm in all distributions is related to a background artefact and not relevant. Considering the two contributions in the distance distributions, the larger intensity contribution is centered at a longer distance and the smaller intensity contribution is centered at a shorter distance. The distance distributions were fitted with two Gaussians, the parameters of which are given in Table 2.
Parameters of distance distributions for αS27/56 bound to SUVs of IMM and NPM and model membranes for comparison.
| SUVs mimicking natural membranes | POPG SUVs | POPG LUVs [ | |||||
|---|---|---|---|---|---|---|---|
| IMM | NPM | ||||||
| distance (nm) | fraction (%) | distance (nm) | fraction (%) | distance (nm) | fraction (%) | distance (nm) | fraction (%) |
| 3.7 | 32 | 3.6 | 36 | 2.6 | 30 | 2.7 | 27 |
| 4.2 | 68 | 4.3 | 64 | 4.2 | 70 | 4.3 | 73 |
Errors in contribution to fraction ±3% (IMM and NPM) and ±2% (POPG SUVs)
*reanalyzed from ref. (30)