Summary information and primary citation
- PDB-id
-
6u6y;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- hydrolase
- Method
- X-ray (2.47 Å)
- Summary
- Human samhd1 bound to ribo(cgccu)-oligonucleotide
- Reference
-
Yu CH, Bhattacharya A, Persaud M, Taylor AB, Wang Z,
Bulnes-Ramos A, Xu J, Selyutina A, Martinez-Lopez A, Cano
K, Demeler B, Kim B, Hardies SC, Diaz-Griffero F, Ivanov
DN (2021): "Nucleic
acid binding by SAMHD1 contributes to the antiretroviral
activity and is enhanced by the GpsN modification."
Nat Commun, 12, 731. doi:
10.1038/s41467-021-21023-8.
- Abstract
- SAMHD1 impedes infection of myeloid cells and resting T
lymphocytes by retroviruses, and the enzymatic activity of
the protein-dephosphorylation of deoxynucleotide
triphosphates (dNTPs)-implicates enzymatic dNTP
depletion in innate antiviral immunity. Here we show that
the allosteric binding sites of the enzyme are plastic and
can accommodate oligonucleotides in place of the allosteric
activators, GTP and dNTP. SAMHD1 displays a preference for
oligonucleotides containing phosphorothioate bonds in the
Rp configuration located 3' to G nucleotides (GpsN), the
modification pattern that occurs in a mechanism of
antiviral defense in prokaryotes. In the presence of GTP
and dNTPs, binding of GpsN-containing oligonucleotides
promotes formation of a distinct tetramer with mixed
occupancy of the allosteric sites. Mutations that impair
formation of the mixed-occupancy complex abolish the
antiretroviral activity of SAMHD1, but not its ability to
deplete dNTPs. The findings link nucleic acid binding to
the antiretroviral activity of SAMHD1, shed light on the
immunomodulatory effects of synthetic phosphorothioated
oligonucleotides and raise questions about the role of
nucleic acid phosphorothioation in human innate
immunity.