B

BiohacksAI

Evidence-Based Biohacking

Patent Pending

Formation of paraxial mesoderm

REACTOME PATHWAY
Reactome: R-HSA-979338038 genes47 compounds

The Formation of paraxial mesoderm pathway (Reactome ID: R-HSA-9793380) involves 38 genes and is affected by 47 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

ADRM1CREBBPEP300EPHA4FGFR1KAT2AKAT2BPSMA1PSMA2PSMA3PSMA4PSMA5PSMA6PSMA7PSMB1PSMB2PSMB3PSMB4PSMB5PSMB6PSMB7PSMC1PSMC2PSMC3PSMC4PSMC5PSMC6PSMD1PSMD11PSMD12+8 more

Compounds Affecting Formation of paraxial mesoderm

#CompoundTargets HitStudies
1Bortezomib300
2Reserpine297
3egcg300
4Emodin Purgative anthraquinone found in several plants, especially RHAMNUS PURSHIANA. It was formerly used as300
5Sorafenib300
6Dasatinib299
7plumbagin [Supplementary Concept]300
8Aurintricarboxylic Acid184
9juglone hydroxylase [Supplementary Concept] catalyzes279
10DEAD-box RNA Helicases169
11Thioctic Acid298
12Arachidonic Acid245
13Oleic Acid112
14alpha-Linolenic Acid300
15candesartan cilexetil [Supplementary Concept]300
16Cisplatin300
17diallyl trisulfide246
18Estramustine300
19gamma-Linolenic Acid300
20Hexachlorophene300
21Iodoacetamide300
22Lithocholic Acid300
23Oxytetracycline300
24rafoxanide172
25Ritonavir298
26Thioctic Acid300
27Trazodone297
28Disulfiram297
294-Hydroxybenzoate-3-Monooxygenase300
30Apigenin 5,7,4'-trihydroxy-flavone,300
31chrysin300
32Luteolin 5,7,3',4'-tetrahydroxy-flavone,150
33Quercetin300
34Genistein300
35myricetin-3-O-galactopyranoside [Supplementary Concept]300
36Axitinib298
37alsterpaullone12
38sp600125117
39Papaverine299
40Colchicine300
41Etazolate66
42Nocodazole Nocodazole is215
4311-hydroxypalmatine [Supplementary Concept]238
44np181
45Crizotinib298
46Pioglitazone297
47Harmaline300

About the Formation of paraxial mesoderm Pathway

The Formation of paraxial mesoderm pathway is catalogued in Reactome (ID: R-HSA-9793380) and involves 38 genes. In the BiohacksAI corpus, 47 compounds have documented interactions with at least 2 genes in this pathway, establishing mechanistic relevance. Key pathway genes include ADRM1, CREBBP, EP300, EPHA4, FGFR1.