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Non-Native Metal Ion Reveals the Role of Electrostatics in Synaptotagmin 1-Membrane Interactions.


ABSTRACT: C2 domains are independently folded modules that often target their host proteins to anionic membranes in a Ca2+-dependent manner. In these cases, membrane association is triggered by Ca2+ binding to the negatively charged loop region of the C2 domain. Here, we used a non-native metal ion, Cd2+, in lieu of Ca2+ to gain insight into the contributions made by long-range Coulombic interactions and direct metal ion-lipid bridging to membrane binding. Using X-ray crystallography, NMR, Förster resonance energy transfer, and vesicle cosedimentation assays, we demonstrate that, although Cd2+ binds to the loop region of C2A/B domains of synaptotagmin 1 with high affinity, long-range Coulombic interactions are too weak to support membrane binding of individual domains. We attribute this behavior to two factors: the stoichiometry of Cd2+ binding to the loop regions of the C2A and C2B domains and the impaired ability of Cd2+ to directly coordinate the lipids. In contrast, electron paramagnetic resonance experiments revealed that Cd2+ does support membrane binding of the C2 domains in full-length synaptotagmin 1, where the high local lipid concentrations that result from membrane tethering can partially compensate for lack of a full complement of divalent metal ions and specific lipid coordination in Cd2+-complexed C2A/B domains. Our data suggest that long-range Coulombic interactions alone can drive the initial association of C2A/B with anionic membranes and that Ca2+ further augments membrane binding by the formation of metal ion-lipid coordination bonds and additional Ca2+ ion binding to the C2 domain loop regions.

SUBMITTER: Katti S 

PROVIDER: S-EPMC5600830 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Non-Native Metal Ion Reveals the Role of Electrostatics in Synaptotagmin 1-Membrane Interactions.

Katti Sachin S   Nyenhuis Sarah B SB   Her Bin B   Srivastava Atul K AK   Taylor Alexander B AB   Hart P John PJ   Cafiso David S DS   Igumenova Tatyana I TI  

Biochemistry 20170615 25


C2 domains are independently folded modules that often target their host proteins to anionic membranes in a Ca<sup>2+</sup>-dependent manner. In these cases, membrane association is triggered by Ca<sup>2+</sup> binding to the negatively charged loop region of the C2 domain. Here, we used a non-native metal ion, Cd<sup>2+</sup>, in lieu of Ca<sup>2+</sup> to gain insight into the contributions made by long-range Coulombic interactions and direct metal ion-lipid bridging to membrane binding. Using  ...[more]

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