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Lipocalin 2 Protein (LCN2) (full length)

This Native Lipocalin 2 protein is expressed in Human.
产品编号 ABIN1045129
发货至: 中国

Quick Overview for Lipocalin 2 Protein (LCN2) (full length) (ABIN1045129)

抗原

See all Lipocalin 2 (LCN2) 蛋白
Lipocalin 2 (LCN2)

蛋白类型

Native

宿主

  • 14
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资源

  • 12
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Human

应用范围

Western Blotting (WB), SDS-PAGE (SDS), ELISA, Latex enhanced turbidimetric Immunoassay (LETIA)

纯度

> 95 %(SDS-PAGE)
  • 产品特性

    full length

    纯化方法

    Purified from human urine
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  • 应用备注

    calibrator ,immunogen and other possible

    说明

    Full length native Neutrophil gelatinase-associated lipocalin protein

    限制

    仅限研究用
  • 状态

    Lyophilized

    缓冲液

    PBS

    储存条件

    -20 °C
  • 抗原

    Lipocalin 2 (LCN2)

    别名

    Neutrophil gelatinase-associated lipocalin

    背景

    Iron-trafficking protein involved in multiple processes such as apoptosis, innate immunity and renal development. Binds iron through association with 2,5-dihydroxybenzoic acid (2,5-DHBA), a siderophore that shares structural similarities with bacterial enterobactin, and delivers or removes iron from the cell, depending on the context. Iron-bound form (holo-24p3) is internalized following binding to the SLC22A17 (24p3R) receptor, leading to release of iron and subsequent increase of intracellular iron concentration. In contrast, association of the iron-free form (apo-24p3) with the SLC22A17 (24p3R) receptor is followed by association with an intracellular siderophore, iron chelation and iron transfer to the extracellular medium, thereby reducing intracellular iron concentration. Involved in apoptosis due to interleukin-3 (IL3) deprivation: iron-loaded form increases intracellular iron concentration without promoting apoptosis, while iron-free form decreases intracellular iron levels, inducing expression of the proapoptotic protein BCL2L11/BIM, resulting in apoptosis. Involved in innate immunity, possibly by sequestrating iron, leading to limit bacterial growth.

    途径

    Cellular Response to Molecule of Bacterial Origin, Transition Metal Ion Homeostasis
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