Ordered self-assembly of the collagenous domain of adiponectin with noncovalent interactions via glycosylated lysine residues

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Abstract

Adiponectin, an anti-atherogenic and insulin-sensitizing adipokine, forms multiple isoforms including a trimer, a hexamer and heavier oligomers (mainly octadecamer) that determine their biological activities. We designed 89-residue peptides containing modifications found in the collagenous domain of native adiponectin. Circular dichroism and analytical ultracentrifugation measurements showed that the peptide bearing glucosyl-galactosyl-hydroxylysine residues forms a stable collagen-like triple helical structure and spontaneously assembled into an octadecamer. An assembly model mediated by noncovalent interactions via glycosylated lysine residues for the octadecamer was constructed. Our findings clarified an essential role of glycosyl modifications to coordinate the ordered self-assembly of adiponectin.

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Takuwa, A., Yoshida, T., Maruno, T., Kawahara, K., Mochizuki, M., Nishiuchi, Y., … Ohkubo, T. (2016). Ordered self-assembly of the collagenous domain of adiponectin with noncovalent interactions via glycosylated lysine residues. FEBS Letters, 590(2), 195–201. https://doi.org/10.1002/1873-3468.12034

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