Spider Toxin SNX-482 Gating Modifier Spontaneously Partitions in the Membrane Guided by Electrostatic Interactions
Abstract
Spider toxin SNXâ482 is a cysteineârich peptide that interferes with calcium channel activity by binding to voltageâsensing domains of the CaV2.3 subtype. Two mechanisms dominate the binding process of cysteineârich peptides.: direct binding from the aqueous phase or through lateral diffusion from the membrane, the soâcalled reduction in dimensionality mechanism. In this work, via coarseâgrained and atomistic molecular dynamics simulations, we have systematically studied the spontaneous partitioning of SNXâ482 with membranes of different anionic compositions and explored via diffusional analysis both binding mechanisms. Our simulations revealed a conserved protein patch that inserts in the membrane, a preference for binding towards partially negatively charged membranes, and that electrostatics guides membrane binding by incrementing and align-ing the molecular dipole. Finally, diffusivity calculations showed that the toxin diffusion along the membrane plane is an order of magnitude slower than the aqueous phase suggesting that the critical factor in determining the SNXâ482âCaV2.3 binding mechanism is the affinity between the membrane and SNXâ482.
Más información
| Título según WOS: | Spider Toxin SNX-482 Gating Modifier Spontaneously Partitions in the Membrane Guided by Electrostatic Interactions |
| Título según SCOPUS: | Spider Toxin SNXâ482 Gating Modifier Spontaneously Partitions in the Membrane Guided by Electrostatic Interactions |
| Título de la Revista: | Membranes |
| Volumen: | 12 |
| Número: | 6 |
| Editorial: | MDPI |
| Fecha de publicación: | 2022 |
| Idioma: | English |
| DOI: |
10.3390/membranes12060595 |
| Notas: | ISI, SCOPUS |