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8Y1I

Structure of guanosine-2''-fluorinated [d(AACCGGTT)]2

Summary for 8Y1I
Entry DOI10.2210/pdb8y1i/pdb
NMR InformationBMRB: 36641
DescriptorDNA (5'-D(*(3D1)P*AP*CP*CP*(GF2)P*(GF2)P*TP*T)-3') (1 entity in total)
Functional Keywordsdimer, fluorogenic, dna
Biological sourceDNA molecule
Total number of polymer chains2
Total formula weight4765.24
Authors
Gao, R.Q.,Cao, C.,Tang, G.L. (deposition date: 2024-01-24, release date: 2024-12-04, Last modification date: 2024-12-11)
Primary citationGao, R.Q.,Hu, X.D.,Zhou, Q.,Hou, X.F.,Cao, C.,Tang, G.L.
Different DNA Binding and Damage Mode between Anticancer Antibiotics Trioxacarcin A and LL-D49194 alpha 1.
Jacs Au, 4:3641-3648, 2024
Cited by
PubMed Abstract: Trioxacarcin A (TXN) is a highly potent cytotoxic antibiotic with remarkable structural complexity. The crystal structure of TXN bound to double-stranded DNA (dsDNA) suggested that the TXN interaction might depend on positions of two sugar subunits on the minor and major grooves of dsDNA. LL-D49194α1 (LLD) is a TXN analogue bearing the same polycyclic polyketide scaffold with a distinct glycosylation pattern. Although LLD was in a phase I clinical trial, how LLD binds to dsDNA remains unclear. Here, we solved the solution structures at high resolutions of palindromic 2″-fluorine-labeled guanine-containing duplex d(AACCGGTT) and of its stable LLD and TXN covalently bound complexes. Combined with biochemical assays, we found that TXN-alkylated dsDNA would tend to keep DNA helix conformation, while LLD-alkylated dsDNA lost its stability more than TXN-alkylated dsDNA, leading to dsDNA denaturation. Thus, despite lower cytotoxicity in vitro, the differences of sugar substitutions in LLD caused greater DNA damage than TXN, thereby bringing about a completely new biological effect.
PubMed: 39328742
DOI: 10.1021/jacsau.4c00611
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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