1071544-43-8

K103 Chemical Structure
1071544-43-8

Chemical Structure

K103

  • CAS No.: 1071544-43-8
  • Formula:C19H22Cl2N2S
  • Molecular Weight:381.36

IUPAC Name: 2-(1-(2-chlorobenzyl)-2-methyl-5-(methylthio)-1H-indol-3-yl)ethan-1-amine hydrochloride

InChIKey: IORPXUDDKDSURS-UHFFFAOYSA-N

SMILES: ClC1=C(CN2C3=C(C(CCN)=C2C)C=C(SC)C=C3)C=CC=C1.Cl

Biological Activity: K103 is an inhibitor discovered from the screen that is an analog of the serotonin antagonist benzazocine. K103 exhibited inhibition of SHIP homologues, labelling it a pan-SHIP1/2 inhibitor, but the molecule had no effect on another 5' inositol phosphatase, OCRL. In line with the "two PIPs hypothesis", the molecule exhibited significant anti-tumour effects against a variety of cell lines, particularly breast cancer cells. Additional studies with K103 revealed that inhibition of SHIP1/2 in multiple myeloma cells resulted in G2/M cell cycle arrest followed by extensive apoptosis via activation of the caspase cascade. K103 fits the commonly used small molecule agent property profile, but while this work was being conducted, it was discovered that K103 caused psychoactive effects in mice, which limited the utility of the molecule in vivo. Therefore, certain synthetic studies were conducted on this tryptamine to identify the features that needed to be present in the molecule to maintain pan-SHIP1/2 inhibition in order to design an inhibitor with favourable pharmacodynamic properties and an improved side effect profile.

Cat. No. Product Name Purity Description Pricing
HY-117087
K103 K103 is an inhibitor discovered from the screen that is an analog of the serotonin antagonist benzazocine. K103 exhibited inhibition of SHIP homologues, labelling it a pan-SHIP1/2 inhibitor, but the molecule had no effect on another 5' inositol phosphatase, OCRL. In line with the "two PIPs hypothesis", the molecule exhibited significant anti-tumour effects against a variety of cell lines, particularly breast cancer cells. Additional studies with K103 revealed that inhibition of SHIP1/2 in multiple myeloma cells resulted in G2/M cell cycle arrest followed by extensive apoptosis via activation of the caspase cascade. K103 fits the commonly used small molecule agent property profile, but while this work was being conducted, it was discovered that K103 caused psychoactive effects in mice, which limited the utility of the molecule in vivo. Therefore, certain synthetic studies were conducted on this tryptamine to identify the features that needed to be present in the molecule to maintain pan-SHIP1/2 inhibition in order to design an inhibitor with favourable pharmacodynamic properties and an improved side effect profile.
Pricing 
Expand Hide
loading...
/
  • /
loading...
Size Price
Stock Quantity Availability Operate
/
In-stock
(Estimated to ship on )
(Estimated to ship TODAY)
Estimated to ship on
(Estimated to ship TODAY)

Amount:

USD 0.00

This product is a controlled substance and not for sale in your territory.

This product is not for sale in your territory.

Pricing 
Expand Hide