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ACBD5 (基因名), Acyl-CoA-binding domain-containing protein 5 (蛋白名), ACBD5_HUMAN.
产品名称:

Human ACBD5/ Acyl-CoA-binding domain-containing protein 5 Recombinant Protein

货号:
-
商标:
EIAab®
监管等级:
别名:

KIAA1996

序列号:
Q5T8D3
来源:
E.coli
种属:
Human
标签:
His
纯度:
>90% by SDS-PAGE
浓度:
Reconstitution Dependent
形态:
Liquid
内毒素水平:
Please contact protein@eiaab.com The technician for more information.
应用:
存储缓冲液:
50mM NaH2PO4, 500mM NaCl Buffer with 500mM Imidazole, 10%glycerol(PH8.0)
存储:
Store at -20°C. (Avoid repeated freezing and thawing.)
研究领域:
-
Human ACBD5 Protein
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Human ACBD5 Protein
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产品说明书
说明书: 下载说明书
MSDS: MSDS
在线询价


基因位点
Cytogenetic band: 10p12.1 by HGNC 10p12.1 by Entrez Gene 10p12.1 by Ensembl
ACBD5 Gene in genomic location: bands according to Ensembl, locations according to GeneLoc (and/or Entrez Gene and/or Ensembl if different)
基因位点
通用注释


亚单元:
N/A


功能:
Acyl-CoA binding protein which acts as the peroxisome receptor for pexophagy but is dispensable for aggrephagy and nonselective autophagy. Binds medium- and long-chain acyl-CoA esters.


亚细胞位置:
Peroxisome membrane Single-pass membrane protein


该产品尚未在任何出版物中被引用。

[1].
"Peroxisomal Atg37 binds Atg30 or palmitoyl-CoA to regulate phagophore formation during pexophagy."

[2].
"A scan of chromosome 10 identifies a novel locus showing strong association with late-onset Alzheimer disease."

[3].
"Complete sequencing and characterization of 21,243 full-length human cDNAs."

[4].
"Characterization of size-fractionated cDNA libraries generated by the in vitro recombination-assisted method."

[5].
"Deficiency of a Retinal Dystrophy Protein, Acyl-CoA Binding Domain-containing 5 (ACBD5), Impairs Peroxisomal β-Oxidation of Very-long-chain Fatty Acids."

[6].
"ACBD5 and VAPB mediate membrane associations between peroxisomes and the ER."

[7].
"VAPs and ACBD5 tether peroxisomes to the ER for peroxisome maintenance and lipid homeostasis."

[8].
"Architecture of the human interactome defines protein communities and disease networks."

[9].
"Substrate-Trapped Interactors of PHD3 and FIH Cluster in Distinct Signaling Pathways."

[10].
"Phenotypic and Interaction Profiling of the Human Phosphatases Identifies Diverse Mitotic Regulators."
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