General Information of the Drug (ID: M6APDG00407)
Name
C[RGDf-(S,R)-alpha-Dfm-F]
Synonyms
c[RGDf-(S,R)-alpha-Dfm-F]; CHEMBL379911
    Click to Show/Hide
Status
Investigative
Structure
Formula
C31H38F2N8O7
InChI
1S/C31H38F2N8O7/c32-28(33)31(16-19-10-5-2-6-11-19)29(48)40-20(12-7-13-36-30(34)35)25(45)37-17-23(42)38-22(15-24(43)44)26(46)39-21(27(47)41-31)14-18-8-3-1-4-9-18/h1-6,8-11,20-22,28H,7,12-17H2,(H,37,45)(H,38,42)(H,39,46)(H,40,48)(H,41,47)(H,43,44)(H4,34,35,36)/t20-,21+,22-,31?/m0/s1
InChIKey
DZUCEYPUEFNCRE-ZONASRJLSA-N
PubChem CID
11614485
TTD Drug ID
D0WK2F
Target Gene(s) and Their Upstream m6A Regulator, Together with the Effect of Target Gene(s) in Drug Response
The target genes involved in drug-target interaction (such as drug-metabolizing enzymes, drug transporters and therapeutic targets) and drug-mediated cell death signaling (including modulating DNA damage and repair capacity, escaping from drug-induced apoptosis, autophagy, cellular metabolic reprogramming, oncogenic bypass signaling, cell microenvironment, cell stemness, etc.) could be regulated by m6A regulator(s) and affected their corresponding drug response. You can browse detailed information on drug-related target gene(s) mediated by m6A regulators.
ITGB3 messenger RNA (ITGB3 mRNA)
Methyltransferase-like 3 (METTL3)
In total 1 mechanisms lead to this potential drug response
Response Summary ITGB3 messenger RNA (ITGB3 mRNA) is a therapeutic target for C[RGDf-(S,R)-alpha-Dfm-F]. The Methyltransferase-like 3 (METTL3) has potential in affecting the response of C[RGDf-(S,R)-alpha-Dfm-F] through regulating the expression of ITGB3 messenger RNA (ITGB3 mRNA). [1], [2]
References
Ref 1 Long Noncoding RNA FAM225A Promotes Nasopharyngeal Carcinoma Tumorigenesis and Metastasis by Acting as ceRNA to Sponge miR-590-3p/miR-1275 and Upregulate ITGB3. Cancer Res. 2019 Sep 15;79(18):4612-4626. doi: 10.1158/0008-5472.CAN-19-0799. Epub 2019 Jul 22.
Ref 2 Incorporation of the unusual C(alpha)-fluoroalkylamino acids into cyclopeptides: synthesis of arginine-glycine-aspartate (RGD) analogues and study of their conformational and biological behavior. J Med Chem. 2006 Mar 9;49(5):1808-17. doi: 10.1021/jm0511334.