CTx0294885,

CTx0294885,

CTx0294885,

Min.Order / FOB Price:Get Latest Price

100 Gram

FOB Price: USD 1.0000

  • Min.Order :100 Gram
  • Purity: 98%
  • Payment Terms : L/C

Keywords

CTx0294885, CTX0294885;2-(5-chloro-2-(4-(piperazin-1-yl)phenylaMino)pyriMidin-4-ylaMino)-N-MethylbenzaMide;2-(5-chloro-2-(4-(piperazin-1-yl)phenylamino)pyrimidin-4-ylamino)-N-methylbenzamide CTX0294885;CTX-029488 1439934-41-4

Quick Details

  • Appearance:white solid
  • Application:CAS:1439934-41-4; Small molecule inhibitors
  • PackAge:100g,500g,1kg,25kg/drum
  • ProductionCapacity:1000|Gram|Week
  • Storage:Dry seal
  • Transportation:shipping

Superiority:

We are specialized in custom synthesis, chemical/pharmaceutical/ pesticides outsourcing and contract research.
 
 
 
We are committed to provide excellence in researching, manufacturing and drug discovery process.
 
 
 
Our research team of scientists consists of western-trained Ph.D.s with experience and capabilities in drug R&D methodologies and medicinal chemistry.

 

Details:

CTX-0294885 is a a novel bisanilino pyrimidine; exhibits inhibitory activity against a broad range of kinases in vitro, and further developed it into a Sepharose-supported kinase capture reagent.
Target: Kinase capture reagent
Use of a quantitative proteomics approach confirmed the selectivity of CTx-0294885-bound beads for kinase enrichment. Large-scale CTx-0294885-based affinity purification followed by LC-MS/MS led to the identification of 235 protein kinases from MDA-MB-231 cells, including all members of the AKT family that had not been previously detected by other broad-spectrum kinase inhibitors. Addition of CTx-0294885 to a mixture of three kinase inhibitors commonly used for kinase-enrichment increased the number of kinase identifications to 261, representing the largest kinome coverage from a single cell line reported to date. Coupling phosphopeptide enrichment with affinity purification using the four inhibitors enabled the identification of 799 high-confidence phosphosites on 183 kinases, ~10% of which were localized to the activation loop, and included previously unreported phosphosites on BMP2K, MELK, HIPK2, and PRKDC. Therefore, CTx-0294885 represents a powerful new reagent for analysis of kinome signaling networks that may facilitate development of targeted therapeutic strategies.

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