Publication details

Winter-active spiders (Clubiona) have a hyperactive antifreeze protein with a unique beta-solenoid fold

Authors

GRAHAM Laurie A. PEKÁR Stanislav HAINER Ina M. DAVIES Peter L.

Year of publication 2026
Type Peer-reviewed scientific article
Magazine / Source FEBS JOURNAL
MU Faculty or unit

Faculty of Science

Citation
web https://doi.org/10.1111/febs.70323
Doi https://doi.org/10.1111/febs.70323
Keywords beta-roll; convergent evolution; ice-binding protein; overwintering spiders; thermal hysteresis
Attached files
Description Spiders are among the most important natural enemies of pests in orchards. Clubiona spp. are active even during winter, when other pest predators are dormant. Such activity is possible because these spiders produce antifreeze proteins (AFPs) that bind to the surface of ice crystals to prevent their growth at subzero temperatures. To investigate their AFPs, we collected Clubiona spiders from a pome fruit orchard in the Czech Republic on subzero days in December and February. The AFPs were isolated through five successive rounds of ice-affinity purification as a family of similar to 30-kDa isoforms. Tryptic fragments from these AFPs were sequenced using tandem mass spectrometry and corresponding transcripts were obtained from an Illumina metatranscriptome. Homologs were absent from the GenBank protein database. Protein modelling with AlphaFold2 shows that these spider AFPs form a previously unseen beta-solenoid with a flat surface populated by arrays of threonine (Thr) residues. Although these features are like those of the beta-solenoid AFPs from beetles and moths, the proteins are not homologous. This is a remarkable example of convergent evolution of proteins at both the structural and sequence levels for the task of binding ice.

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