
VDAC1-5 | Voltage-dependent an
ion-selective channel protein 1-5, HRP-conjugated (40 µg)相关产品推荐更多 >
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- 详细信息
- 文献和实验
- 技术资料
- 抗体名:
VDAC1-5 | Voltage-dependent anion-selective channel protein 1-5, HRP-conjugated (40 µg)
- 抗体英文名:
VDAC1-5 | Voltage-dependent anion-selective channel protein 1-5, HRP-conjugated (40 µg)
- 靶点:
VDAC proteins are porin-type, beta-barrel diffusion pores. Prominently localized in the outer mitochondrial membrane and involved in metabolite exchange.
- 应用范围:
Blue-native PAGE (2D BN/SDS-PAGE), Immunolocalization (IL), Western blot (WB)
- 宿主:
Rabbit
- 适应物种:
Arabidopsis thaliana, Beta vulgaris, Brassica oleracea var. botrytis, Oryza sativa, Papaver sp. pollen tubes (IL), Spinacia oleracea, Physcomitrella patens
- 抗原来源:
Q9SRH5 Q9FKM2-1, Q9M2W6-1, Q9SMX3-1, F4K3R8-1
- 级别:
Affinity purified serum
- 供应商:
Agrisera AB
- 克隆性:
单克隆
- 保存条件:
Store at 4°C for 12-18 months. A preservative may be added for long time storage up to 2 years.
- 形态:
Liquid in PBS pH 7.4, conjugated to HRP
- 免疫原:
KLH-conjugated peptide conserved in all known higher plant VDAC proteins including Arabidopsis thaliana VDAC1 UniProt: Q9SRH5 , TAIR: AT3G01280, VDAC2 UniProt F4K3R8-1 , TAIR: AT5G67500, VDAC3 UniProt: Q9SMX3-1, TAIR: AT5G15090, VDAC4 UniProt: Q9FKM2
- 规格:
40 µg
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文献和实验Tracing the Endocytosis of Claudin-5 in Brain Endothelial Cells
Claudin-5 is a transmembrane tight junction protein highly expressed in brain endothelial cells, the site of the blood–brain barrier. The properties of the brain endothelial tight junction complex are considered to be dependent on claudin-5
T-cell dependent antigen specific in situ staining (Pe)
endogenous peroxidase by incubating in TBS-T 0.1%NaN 3 and 0.3% H 2 O 2 for 30 min. Wash thrice. Top of Page Choose next steps: HRP-conjugated secondary Ab Tyramide amplification Biotin-conjugated secondary Ab
Isoform-Selective Assays for Sphingosine Kinase Activity
and intracellularly through a number of recently identified protein targets. The two enzymes arise from different genes, and differ in their cellular localisation, developmental expression, catalytic properties, and in at least some functional roles
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