The Cephalopod Reflectin Domain Specifically Chelates Cu(I), Inducing Assembly
Rajkumar Kammath, A.; Altan, I.; Sweeney, A.
Show abstract
Reflectin proteins constitute the reflective layers of cephalopod skin responsible for camouflage and signaling. They are defined by repeated 25 a.a. motifs with conserved MDM tripeptides. The structure-function relations between these motifs and the proteins ability to assemble into a broad set of precisely controlled, optically resonant materials remain elusive. We observe that the MDM motif is also present in the Mets region of the Ctr copper transporter family, where it binds extracellular copper. We tested whether copper may also play an intrinsic role in reflectin protein assembly. Here we show that native reflectin-rich tissue has high concentrations of several transition metal ions, including Cu, and native protein will chelate additional Cu and Ni in the presence of EDTA and strong base. Experiments with two synthetic show reflectin motif peptides bind Cu(I) similar to Mets motif. Peptide-Cu(I) binding induces assembly with a stoichiometry dictated by Cu(I):peptide, resulting in a volume-spanning gel whose properties may inform our understanding of the emergence of optically resonant structures in the living system. We conclude that a core evolved function of reflectin domain is geometrically and thermodynamically specific assembly via Cu(I).
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