9w59
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The structure of dUTPase from Methanosarcina mazei
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Structural highlights
Publication Abstract from PubMedArchaeal dUTPases remain poorly understood despite their critical role in nucleotide metabolism. Here, we report the crystal structures of a trimeric dUTPase from Methanosarcina mazei in apo and dUTP-bound forms at 1.45 A and 1.53 A resolution, respectively. Unlike canonical dUTPases that utilize conserved motif V for active-site formation, this enzyme employs a unique structural insertion (subdomain I) to coordinate the gamma-phosphate of dUTP and stabilize the trimer interface. Site-directed mutagenesis (N55A and R58A) confirmed the catalytic relevance of subdomain I. Molecular dynamics simulations revealed ligand-induced stabilization of the otherwise flexible C-terminal region. Comparative structural and phylogenetic analyses placed this archaeal enzyme within the Type II dUTPase clade but highlighted its distinctive mechanism of substrate recognition. These findings uncover an alternative structural strategy for maintaining enzymatic activity in the absence of motif V, expanding our understanding of dUTPase diversity and offering a potential framework for engineering robust nucleotide-processing enzymes. Structural and functional insights into an archaeal dUTPase reveal a subdomain-mediated mechanism for substrate recognition and evolutionary adaptation.,Chen SC, Chou CC, Chen WM, Sheu SY, Huang LW, Huang CH, Chang SC, Kuo CH, Hsu CH Int J Biol Macromol. 2026 Jan;335(Pt 1):149194. doi: , 10.1016/j.ijbiomac.2025.149194. Epub 2025 Nov 25. PMID:41308777[1] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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This page was last modified 08:29, 29 April 2026.