9QRF
Ancestral protein of diDNase
Summary for 9QRF
| Entry DOI | 10.2210/pdb9qrf/pdb |
| Descriptor | ancestor of diDNase, CHLORIDE ION (3 entities in total) |
| Functional Keywords | ancestor, dinuclease, didnase, nrnc, de novo protein |
| Biological source | Synthetic construct |
| Total number of polymer chains | 1 |
| Total formula weight | 24165.06 |
| Authors | Mortensen, S.,Burnim, A.,Dufault-Thompson, K.,Jiang, X.,Lipka, A.E.,Sondermann, H. (deposition date: 2025-04-03, release date: 2026-04-15, Last modification date: 2026-08-26) |
| Primary citation | Mortensen, S.,Burnim, A.A.,Dufault-Thompson, K.,Lipka, A.E.,Jiang, X.,Sondermann, H. Ancestral proteins trace the emergence of substrate specificity and oligomerization within bacterial DEDDy dinucleases. Sci Adv, 12:eaef1581-eaef1581, 2026 Cited by PubMed Abstract: Nucleases are crucial for various bacterial processes, including genome maintenance and host defense. Deoxydinucleases (diDNases), a class of Gram-positive bacteria-specific nucleases associated with mobile genetic elements, are homologous to nanoRNase C (NrnC) in Gram-negative bacteria but exhibit notable differences: diDNases form dimers and cleave DNA dinucleotides, whereas NrnC forms octamers that process both RNA and DNA dinucleotides. The mechanism by which substrate specificity emerged, and whether it is linked to oligomerization, remained unknown. Here, we reconstructed a common ancestor of diDNases and NrnC orthologs that forms a dimer with intermediate preference for DNA. Structures of ancestral and extant dinucleases reveal gradual changes in conformation that gave rise to substrate preference, oligomeric state, and catalytic efficiency. These findings highlight how subtle, concerted structural modifications enable large-scale changes in molecular assembly and functional specialization, harnessing a conserved protein fold. DNA dinucleotide preference in the early ancestor and preservation of DNase activity in all extant enzymes strongly argue for a biological function of DNA dinucleotides. PubMed: 42585308DOI: 10.1126/sciadv.aef1581 PDB entries with the same primary citation |
| Experimental method | X-RAY DIFFRACTION (1.45 Å) |
Structure validation
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