| Literature DB >> 33926955 |
Dona Sleiman1, Pierre Simon Garcia2,3, Marion Lagune1, Jerome Loc'h4, Ahmed Haouz5, Najwa Taib2,6, Pascal Röthlisberger7, Simonetta Gribaldo2, Philippe Marlière8, Pierre Alexandre Kaminski9.
Abstract
Cells have two purine pathways that synthesize adenine and guanine ribonucleotides from phosphoribose via inosylate. A chemical hybrid between adenine and guanine, 2-aminoadenine (Z), replaces adenine in the DNA of the cyanobacterial virus S-2L. We show that S-2L and Vibrio phage PhiVC8 encode a third purine pathway catalyzed by PurZ, a distant paralog of succinoadenylate synthase (PurA), the enzyme condensing aspartate and inosylate in the adenine pathway. PurZ condenses aspartate with deoxyguanylate into dSMP (N6-succino-2-amino-2'-deoxyadenylate), which undergoes defumarylation and phosphorylation to give dZTP (2-amino-2'-deoxyadenosine-5'-triphosphate), a substrate for the phage DNA polymerase. Crystallography and phylogenetics analyses indicate a close relationship between phage PurZ and archaeal PurA enzymes. Our work elucidates the biocatalytic innovation that remodeled a DNA building block beyond canonical molecular biology.Entities:
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Year: 2021 PMID: 33926955 DOI: 10.1126/science.abe6494
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728