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SLC38A9 抗体 (AA 33-450)

The 兔 多克隆 anti-SLC38A9 antibody (ABIN7874002) specifically detects SLC38A9 in ELISA, WB, IF 和 FACS. The antibody is reactive with 人, 小鼠 和 大鼠 samples.
产品编号 ABIN7874002
发货至: 中国
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Quick Overview for SLC38A9 抗体 (AA 33-450) (ABIN7874002)

抗原

See all SLC38A9 抗体
SLC38A9 (Solute Carrier Family 38, Member 9 (SLC38A9))

适用

  • 8
  • 3
  • 2
  • 1
  • 1
  • 1
人, 小鼠, 大鼠

宿主

  • 9

克隆类型

  • 9
多克隆

标记

  • 5
  • 2
  • 1
  • 1
This SLC38A9 antibody is un-conjugated

应用范围

  • 5
  • 5
  • 2
  • 2
  • 1
  • 1
ELISA, Western Blotting (WB), Immunofluorescence (IF), Flow Cytometry (FACS)
  • 抗原表位

    • 5
    • 1
    • 1
    • 1
    • 1
    • 1
    AA 33-450

    原理

    SLC38A9 Antibody / URLC11

    纯化方法

    Antigen affinity purified

    免疫原

    An E.coli-derived human recombinant protein (amino acids D33-Q450) was used as the immunogen for the SLC38A9 antibody.

    亚型

    IgG
  • 应用备注

    Optimal dilution of the SLC38A9 antibody should be determined by the researcher.

    限制

    仅限研究用
  • 状态

    Lyophilized

    缓冲液

    0.5 mg/mL if reconstituted with 0.2 mL sterile DI water

    储存条件

    4 °C,-20 °C

    储存方法

    After reconstitution, the SLC38A9 antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
  • 抗原

    SLC38A9 (Solute Carrier Family 38, Member 9 (SLC38A9))

    别名

    SLC38A9

    背景

    Solute carrier family 38 member 9 is a protein that in humans is encoded by the SLC38A9 gene. Sodium-coupled neutral amino acid transporter 9 (SLC38A9) is a lysosomal amino acid transporter, involved in the regulation of mechanistic target of rapamycin complex 1 (mTORC1) activity in response to amino acid levels within the lysosomal lumen. A sodium-couple amino acid transporter at the lysosome, SLC38A9, senses arginine from within the lysosome to convey arginine sufficiency to mTORC1. SLC38A9 forms a complex with other lysosomal resident proteins including the v-ATPase and a pentameric complex called Ragulator. v-ATPase function is necessary for mTORC1 activation, but the molecular mechanism of this regulation is currently unclear2. Ragulator binds strongly to the Rag GTPases and was shown to function as a guanine exchange factor (GEF) for RagA/B. Potentially SLC38A9 and the v-ATPase are able to regulate mTORC1 activity by modulating Ragulatori 1/2s GEF activity. RagA/B is not the only Rag GTPase that is regulated, but a Folliculin-FNIP2 complex is a GAP for RagC/D. In short, SLC38A9 is a functional component of the lysosomal amino acid sensing machinery involved in the control of mTORC1 activity, that underlies the regulation of the metabolic status and cellular responses to growth factors, energy, glucose and amino acid levels.

    UniProt

    Q8NBW4
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