概述

  • 产品名称Anti-NAPE-PLD抗体
    参阅全部 NAPE-PLD 一抗
  • 描述
    兔多克隆抗体to NAPE-PLD
  • 经测试应用适用于: WBmore details
  • 种属反应性
    与反应: Mouse, Rat, Human
    预测可用于: Hamster, Orangutan
  • 免疫原

    Synthetic peptide:

    YMGPKRFRRSPCTI

    , corresponding to amino acids 159 - 172 of Human NAPE-PLD (UniProt: Q6IQ20).

  • 阳性对照
    • Human cerebellum supernatant, Mouse brain homogenate and Mouse brain high density membrane

性能

应用

Our Abpromise guarantee covers the use of ab95397 in the following tested applications.

The application notes include recommended starting dilutions; optimal dilutions/concentrations should be determined by the end user.

应用 Ab评论 说明
WB 1/200. Predicted molecular weight: 46 kDa.

靶标

  • 功能Hydrolyzes N-acyl-phosphatidylethanolamines (NAPEs) to produce N-acylethanolamines (NAEs) and phosphatidic acid. Responsible for the generation of anandamide (N-arachidonoylethanolamine), the ligand of cannabinoid and vanilloid receptors.
  • 序列相似性Belongs to the NAPE-PLD family.
  • 细胞定位Membrane.
  • Information by UniProt
  • 数据库链接
  • 别名
    • C7orf18 antibody
    • DKFZp781D1098 antibody
    • FMP30 antibody
    • Mbldc1 antibody
    • N acyl phosphatidylethanolamine hydrolyzing phospholipase D antibody
    • N acyl phosphatidylethanolamine phospholipase D antibody
    • N-acyl phosphatidylethanolamine phospholipase D antibody
    • N-acyl-phosphatidylethanolamine-hydrolyzing phospholipase D antibody
    • NAPE hydrolyzing phospholipase D antibody
    • NAPE-hydrolyzing phospholipase D antibody
    • NAPE-PLD antibody
    • NAPEP_HUMAN antibody
    • NAPEPLD antibody
    see all

Anti-NAPE-PLD antibody 图像

  • All lanes : Anti-NAPE-PLD antibody (ab95397) at 3 µg/ml

    Lane 1 : Human cerebellum supernatant at 20 µg
    Lane 2 : Mouse brain homogenate at 30 µg
    Lane 3 : Mouse brain high density membrane at 30 µg


    Predicted band size : 46 kDa

Anti-NAPE-PLD antibody (ab95397)参考文献

This product has been referenced in:
  • Martin GG  et al. Female Mice are Resistant to Fabp1 Gene Ablation-Induced Alterations in Brain Endocannabinoid Levels. Lipids N/A:N/A (2016). WB ; Mouse . Read more (PubMed: 27450559) »
  • Kaczocha M  et al. Fatty acid binding protein deletion suppresses inflammatory pain through endocannabinoid/N-acylethanolamine-dependent mechanisms. Mol Pain 11:52 (2015). WB ; Mouse . Read more (PubMed: 26311517) »

See all 2 Publications for this product

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