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5-Ph-IAA
  • 英文名称:5-Ph-IAA
  • 品牌:Chemstan
  • 货号:CS-134653
  • cas:168649-23-8
  • 价格: ¥2500/mg
  • 发布日期: 2021-03-10
  • 更新日期: 2025-09-19
产品详请
产地
品牌 Chemstan
货号 CS-134653
用途 科研
英文名称 5-Ph-IAA
包装规格 5 mg
纯度 98%%
CAS编号 168649-23-8
别名
分子式
是否进口
Description

5-Ph-IAA is a derivative of IAA. 5-Ph-IAA, a ligand, establishes the auxin-inducible degron 2 (AID2) system together with an OsTIR1 (F74G) mutant. AID2 induces rapid and efficient depletion of mAID-fused proteins to study protein function in living cells, causing tumor suppression[1] .

In Vitro

HCT116 cells constitutively expressing OsTIR1(F74G) are exposed to 5-Ph-IAA (1 μM; 6 hours), leading to DHC1-mAC degradation, which means the AID2 system better than the original AID system in generating conditional mutant cell lines[1] .

MCE has not independently confirmed the accuracy of these methods. They are for reference only.

Western Blot Analysis[1]

Cell Line: HCT116 cells
Concentration: 1 μM
Incubation Time: 6 hours
Result: Depleted DHC1-mAC efficiently in HCT116 cells constitutively expressing OsTIR1(F74G).
In Vivo

5-Ph-IAA (0-10 mg/kg; intraperitoneally injection; every day; 7 days), used for the AID2 system ,is sufficient to deplete mAID-BRD4 and TOP2A-mAC, leading to tumour suppression[1] .

MCE has not independently confirmed the accuracy of these methods. They are for reference only.

Animal Model: Balb/c-nu female mice (7 weeks old; 16–20?g ) bearing mAID-BRD4 and TOP2A-mAC xenograft tumours cells[1]
Dosage: 0 mg/kg, 1 mg/kg, 3 mg/kg and 10?mg/kg
Administration: Intraperitoneally injection; every day; 7 days
Result: Displayed significant tumour suppression of mAID-BRD4 xenografts and TOP2A-mAC xenografts.
Molecular Weight

251.28

Formula

C??H??NO?

CAS No.

168649-23-8

SMILES

O=C(O)CC1=CNC2=C1C=C(C3=CC=CC=C3)C=C2

Shipping

Room temperature in continental US; may vary elsewhere.

Storage

Please store the product under the recommended conditions in the Certificate of Analysis.

References
  • [1]. Aisha Yesbolatova, et al. The auxin-inducible degron 2 technology provides sharp degradation control in yeast, mammalian cells, and mice. Nat Commun. 2020 Nov 11;11(1):5701.

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