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Abnova/ANP32C FISH Probe/1kit/FA0134

价格
面议
货号:FA0134
浏览量:127
品牌:Abnova
服务
全国联保
正品保证
正规发票
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商品描述
  • Specification
  • Product Description:
  • Made to order FISH probes for identification of gene amplification using Fluorescent In Situ Hybridization Technique. (Technology)
  • Supplied Product:
  • DAPI Counterstain (1500 ng/mL ) 250 uL
  • Storage Instruction:
  • Store at 4°C in the dark.
  • Origin:
  • Human
  • Source:
  • Genomic DNA
  • Notice:
  • We strongly recommend the customer to use FFPE FISH PreTreatment Kit 1 (Catalog #: KA2375 or KA2691) for the pretreatment of Formalin-Fixed Paraffin-Embedded (FFPE) tissue sections.
  • Regulation Status:
  • For research use only (RUO)
  • Datasheet:
  • PDF DownloadDownload
  • Applications
  • Fluorescent In Situ Hybridization (Cell)
  • PDF DownloadProtocol Download
  • Application Image
  • Fluorescent In Situ Hybridization (Cell)
  • Gene Information
  • Entrez GeneID:
  • 23520
  • Gene Name:
  • ANP32C
  • Gene Alias:
  • PP32R1
  • Gene Description:
  • acidic (leucine-rich) nuclear phosphoprotein 32 family, member C
  • Omim ID:
  • 606877
  • Gene Ontology:
  • Hyperlink
  • Gene Summary:
  • Phosphoprotein 32 (PP32) is a tumor suppressor that can inhibit several types of cancers, including prostate and breast cancers. The protein encoded by this gene is one of at least two proteins that are similar in amino acid sequence to PP32 and are part of the same acidic nuclear phosphoprotein gene family. However, unlike PP32, the encoded protein is tumorigenic. The tumor suppressor function of PP32 has been localized to a 25 amino acid region that is divergent between PP32 and the protein encoded by this gene. This gene does not contain introns. [provided by RefSeq
  • Other Designations:
  • acidic nuclear phosphoprotein 32C,pp32 related 1
Abnova的Abnova Diagnostics F蛋白表达系统基于小麦胚芽的真核翻译设备。小麦胚在浓缩干燥状态下储存所有翻译成分,一旦发芽就准备好进行蛋白质合成。常规的小麦胚芽提取物包含RNA N-糖苷酶三丁酸酯和其他翻译抑制剂,例如硫蛋白,核糖核酸酶,脱氧核糖核酸酶和蛋白酶。这些抑制剂来自胚乳。大量洗涤小麦胚芽以消除胚乳污染物已导致提取物具有高度的稳定性和活性。通过将具有5'cap和多(RSA)尾巴的mRNA与该提取物与专有脂质体结合使用,进行体外翻译反应产生足够量的膜蛋白,该膜蛋白被脂质体捕获,导致正确的构象和生物学功能必不可少的折叠。该系统相对于普遍使用的蛋白质表达平台(例如大肠杆菌,昆虫细胞和哺乳动物细胞)具有明显优势,这些平台都是体内系统,并且在细胞膜的约束下导致产量和稳定性低。此外,体外小麦胚芽系统适于自动化以用于高通量小分子以及生物学筛选和表征。