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BiohacksAI

Evidence-Based Biohacking

Patent Pending

APEX1-Independent Resolution of AP Sites via the Single Nucleotide Replacement Pathway

REACTOME PATHWAY
Reactome: R-HSA-56497022 genes31 compounds

The APEX1-Independent Resolution of AP Sites via the Single Nucleotide Replacement Pathway pathway (Reactome ID: R-HSA-5649702) involves 2 genes and is affected by 31 compounds in the BiohacksAI evidence corpus. Compound-pathway associations are derived from target overlap: a compound is linked to this pathway if it targets ≥2 genes within the pathway.

Genes in this Pathway

OGG1POLB

Compounds Affecting APEX1-Independent Resolution of AP Sites via the Single Nucleotide Replacement Pathway

#CompoundTargets HitStudies
1Aurintricarboxylic Acid184
2Oleanolic Acid300
3stigmasterol300
44-Hydroxybenzoate-3-Monooxygenase300
5Ursolic Acid300
6Methyldopa297
7DEAD-box RNA Helicases169
8Thioctic Acid298
9egcg300
10Luteolin 5,7,3',4'-tetrahydroxy-flavone,150
11Methylene Blue200
12myricetin-3-O-galactopyranoside [Supplementary Concept]300
13Quercetin300
14Rosmarinic Acid300
15Rutin300
16Methotrexate289
17calycosin300
18Demeclocycline5
19Dequalinium46
20Emodin Purgative anthraquinone found in several plants, especially RHAMNUS PURSHIANA. It was formerly used as300
21Hexachlorophene300
22Idarubicin299
23Oxytetracycline300
24piceatannol300
25Nitroprusside299
26sp600125117
27Stavudine298
28streptonigrin299
29alphitonin [Supplementary Concept] from300
30Thioctic Acid300
31Isoniazid Antibacterial agent used primarily as299

About the APEX1-Independent Resolution of AP Sites via the Single Nucleotide Replacement Pathway Pathway

The APEX1-Independent Resolution of AP Sites via the Single Nucleotide Replacement Pathway pathway is catalogued in Reactome (ID: R-HSA-5649702) and involves 2 genes. In the BiohacksAI corpus, 31 compounds have documented interactions with at least 2 genes in this pathway, establishing mechanistic relevance. Key pathway genes include OGG1, POLB.