A Functional Atlas of the Tardigrade Resistome Reveals a Diverse Molecular Toolkit for Extremotolerance
Ito, T.; Ota, K.; Hishinuma, H.; Shimizu, H.
Show abstract
How organisms survive environmental extremes that push life to its physical limits is a fundamental question in biology. Tardigrades are a paradigm for this resilience, entering a state of suspended animation called cryptobiosis to withstand near-complete desiccation and intense radiation. While a few key effectors, including the DNA-shielding protein Dsup and various tardigrade-specific intrinsically disordered proteins (TDPs) have been identified, they constitute only a fraction of a vast, uncharacterized proteome, fundamentally limiting a systems-level understanding of this remarkable biology. Here we overcome this limitation by developing AEGIS, an AI-driven engine that systematically discovers and prioritizes novel guardian proteins constituting the tardigrade molecular shield. Applying AEGIS to the tardigrade proteome, we construct the first functional atlas of the tardigrade resistome, revealing hundreds of novel protein families organized into a diverse and compartmentalized molecular toolkit. This atlas pinpoints new Dsup-like nuclear proteins, suggesting multi-layered genome protection, and a rich cohort of cytoplasmic proteins poised to form protective biological glasses. Our work provides a foundational resource for understanding the evolution of extremotolerance and serves as a blueprint for engineering novel biomolecules with transformative biotechnological potential.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Design of diverse, functional mitochondrial targeting sequences across eukaryotic organisms using variational autoencoder 97%
- Inter-domain dynamics in the chaperone SurA and multi-site binding to its unfolded outer membrane protein clients 96%
- Donor strand complementation, isopeptide bonds and glycosylation stabilise highly resilient archaeal thread filaments 95%
Similar papers in this journal
- Automatically Defining Protein Words for Diverse Functional Predictions Based on Attention Analysis of a Protein Language Model 95%
- Dissecting the Determinants of Domain Insertion Tolerance and Allostery in Proteins 95%
- ProT-Diff: A Modularized and Efficient Approach to De Novo Generation of Antimicrobial Peptide Sequences through Integration of Protein Language Model and Diffusion Model 94%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Structure of cyanobacterial photosystem I complexed with Cytochrome c6 and Ferredoxin at 1.97 A resolution 95%
- Real-Time Structure Search and Structure Classification for AlphaFold Protein Models 94%
- Structure of the Human ATAD2 AAA+ Histone Chaperone Reveals Mechanism of Regulation and Inter-subunit Communication 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.