General Information of Drug Off-Target (DOT) (ID: OTEMFDNB)

DOT Name Meiotic recombination protein REC114 (REC114)
Gene Name REC114
Related Disease
Complete hydatidiform mole ( )
UniProt ID
RE114_HUMAN
3D Structure
Download
2D Sequence (FASTA)
Download
3D Structure (PDB)
Download
Pfam ID
PF15165
Sequence
MAEAGKVPLSLGLTGGEAAEWPLQRYARCIPSNTRDPPGPCLEAGTAPCPTWKVFDSNEE
SGYLVLTIVISGHFFIFQGQTLLEGFSLIGSKDWLKIVRRVDCLLFGTTIKDKSRLFRVQ
FSGESKEQALEHCCSCVQKLAQYITVQVPDGNIQELQLIPGPPRATESQGKDSAKSVPRQ
PGSHQHSEQQQVCVTAGTGAPDGRTSLTQLAQTLLASEELPHVYEQSAWGAEELGPFLRL
CLMDQNFPAFVEEVEKELKKLAGLRN
Function
Required for DNA double-strand breaks (DSBs) formation in unsynapsed regions during meiotic recombination. Probably acts by forming a complex with IHO1 and MEI4, which activates DSBs formation in unsynapsed regions, an essential step to ensure completion of synapsis. Required for spermatogenesis and oogenesis.

Molecular Interaction Atlas (MIA) of This DOT

1 Disease(s) Related to This DOT
Disease Name Disease ID Evidence Level Mode of Inheritance REF
Complete hydatidiform mole DIS5QPI0 Strong Biomarker [1]
------------------------------------------------------------------------------------
Molecular Interaction Atlas (MIA) Jump to Detail Molecular Interaction Atlas of This DOT
2 Drug(s) Affected the Post-Translational Modifications of This DOT
Drug Name Drug ID Highest Status Interaction REF
Valproate DMCFE9I Approved Valproate increases the methylation of Meiotic recombination protein REC114 (REC114). [2]
Benzo(a)pyrene DMN7J43 Phase 1 Benzo(a)pyrene decreases the methylation of Meiotic recombination protein REC114 (REC114). [3]
------------------------------------------------------------------------------------

References

1 Causative Mutations and Mechanism of Androgenetic Hydatidiform Moles. Am J Hum Genet. 2018 Nov 1;103(5):740-751. doi: 10.1016/j.ajhg.2018.10.007.
2 Integrative omics data analyses of repeated dose toxicity of valproic acid in vitro reveal new mechanisms of steatosis induction. Toxicology. 2018 Jan 15;393:160-170.
3 Air pollution and DNA methylation alterations in lung cancer: A systematic and comparative study. Oncotarget. 2017 Jan 3;8(1):1369-1391. doi: 10.18632/oncotarget.13622.