Tripolin A

CAT#: ADCsR-237CL

Triptolin A is described as an specific non-ATP competitve Aurora A kinase inhibitor. Tripolin A doesn`t significantly inhibit Aurora B kinase in mammalian cells. Tripolin A reduces localization of pAurora A on spindle microtubules, affects centrosome integrity, spindle formation and lenght and MT dynamitcs in interphase. Tripolin A is a novel small molecule inhibitor of aurora A kinase.

Specifications

  • Longtext
  • [(3E)-3-[(2,5-Dihydroxyphenyl)methylene]-1,3-dihydro-2H-indol-2-one]
  • Formula
  • C15H11NO3
  • CAS No.
  • 1148118-92-6
  • Molecular Weight
  • 253,25 g/mol
  • Purity
  • 95%
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Breast cancer biomarkers at key points during disease progression
Aurora A Specificity Confirmed
This small molecule inhibitor has shown excellent specificity in our assays. Tripolin A effectively targets Aurora A kinase without significant inhibition of Aurora B in the mammalian cell lines we tested. This distinction is crucial for our research into centrosome integrity and spindle formation dynamics during the interphase.
Breast cancer biomarkers at key points during disease progression
Impact On Spindle Microtubules
We utilized Tripolin A to investigate its effects on microtubule dynamics and found that it significantly reduces the localization of pAurora A on spindle microtubules. The compound's ability to affect spindle length and formation provided valuable data for our studies on non-ATP competitive kinase inhibition mechanisms.

Q&As

  1. Does Tripolin A inhibit Aurora B kinase as well as Aurora A?

    A: No, Tripolin A is described as a specific non-ATP competitive Aurora A kinase inhibitor. In mammalian cells, it does not significantly inhibit Aurora B kinase. This specificity allows for targeted research into the functions and pathways associated primarily with Aurora A.

  2. What cellular structures does this inhibitor affect?

    A: Tripolin A reduces the localization of pAurora A on spindle microtubules. It affects centrosome integrity, spindle formation, and spindle length. Additionally, it impacts microtubule dynamics during the interphase, making it a useful tool for studying these specific cellular mechanisms.

View the frequently asked questions answered by Creative Biolabs Support.

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