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iKIX1 Sale

目录号 : GC43893

An inhibitor of Mediator/Pdr1 interactions

iKIX1 Chemical Structure

Cas No.:656222-54-7

规格 价格 库存 购买数量
500μg 待询 待询
1mg
¥196.00
现货
5mg
¥816.00
现货
10mg
¥1,530.00
现货

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Sample solution is provided at 25 µL, 10mM.

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Chemical Properties

Cas No. 656222-54-7 SDF
Canonical SMILES ClC1=C(Cl)C=CC(NC(NNC(CC#N)=O)=S)=C1
分子式 C10H8Cl2N4OS 分子量 303.2
溶解度 DMSO : 83.33 mg/mL (274.86 mM; Need ultrasonic) 储存条件 Store at -20°C
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储备液的保存方式和期限:-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。
为了提高溶解度,请将管子加热至37℃,然后在超声波浴中震荡一段时间。
Shipping Condition 评估样品解决方案:配备蓝冰进行发货。所有其他可用尺寸:配备RT,或根据请求配备蓝冰。

溶解性数据

制备储备液
1 mg 5 mg 10 mg
1 mM 3.2982 mL 16.4908 mL 32.9815 mL
5 mM 0.6596 mL 3.2982 mL 6.5963 mL
10 mM 0.3298 mL 1.6491 mL 3.2982 mL
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Research Update

Inhibiting fungal multidrug resistance by disrupting an activator-Mediator interaction

Nature 2016 Feb 25;530(7591):485-9.PMID:26886795DOI:PMC4860947

Eukaryotic transcription activators stimulate the expression of specific sets of target genes through recruitment of co-activators such as the RNA polymerase II-interacting Mediator complex. Aberrant function of transcription activators has been implicated in several diseases. However, therapeutic targeting efforts have been hampered by a lack of detailed molecular knowledge of the mechanisms of gene activation by disease-associated transcription activators. We previously identified an activator-targeted three-helix bundle KIX domain in the human MED15 Mediator subunit that is structurally conserved in Gal11/Med15 Mediator subunits in fungi. The Gal11/Med15 KIX domain engages pleiotropic drug resistance transcription factor (Pdr1) orthologues, which are key regulators of the multidrug resistance pathway in Saccharomyces cerevisiae and in the clinically important human pathogen Candida glabrata. The prevalence of C. glabrata is rising, partly owing to its low intrinsic susceptibility to azoles, the most widely used antifungal agent. Drug-resistant clinical isolates of C. glabrata most commonly contain point mutations in Pdr1 that render it constitutively active, suggesting that this transcriptional activation pathway represents a linchpin in C. glabrata multidrug resistance. Here we perform sequential biochemical and in vivo high-throughput screens to identify small-molecule inhibitors of the interaction of the C. glabrata Pdr1 activation domain with the C. glabrata Gal11A KIX domain. The lead compound (iKIX1) inhibits Pdr1-dependent gene activation and re-sensitizes drug-resistant C. glabrata to azole antifungals in vitro and in animal models for disseminated and urinary tract C. glabrata infection. Determining the NMR structure of the C. glabrata Gal11A KIX domain provides a detailed understanding of the molecular mechanism of Pdr1 gene activation and multidrug resistance inhibition by iKIX1. We have demonstrated the feasibility of small-molecule targeting of a transcription factor-binding site in Mediator as a novel therapeutic strategy in fungal infectious disease.