PBR overexpression 293T lysate (whole cell)
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PBR overexpression 293T lysate (whole cell) suitable for WB. View our extensive range of validated lysates from normal and diseased human, mouse and rat tissue.
View Alternative Names
BPBS, BZRP, Benzodiazapine receptor (peripheral), Benzodiazepine peripheral binding site, IBP, Isoquinoline carboxamide-binding protein, MBR, Mitochondrial benzodiazepine receptor, PKBS, PTBR, PTBZR02, Peripheral benzodiazepine receptor, Peripheral benzodiazepine receptor-related protein, Peripheral-type benzodiazepine receptor, Ptbzr, RATPTBZR02, TSPOA_HUMAN, Translocator protein, Tspo1, mDRC, pk18, translocator protein (18kDa)
- WB
Unknown
Western blot - PBR overexpression 293T lysate (whole cell) (AB94211)
false
- SDS-PAGE
Unknown
SDS-PAGE - PBR overexpression 293T lysate (whole cell) (AB94211)
ab94211 at 15μg/lane on an SDS-PAGE gel
Reactivity data
Product details
Properties and storage information
Shipped at conditions
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
PBR interacts with cholesterol for the synthesis of steroid hormones making it important for steroidogenesis. PBR is a part of the Mitochondrial Permeability Transition Pore complex (MPTP) involved in regulating the transport of molecules across the mitochondrial membrane. Through its association with the MPTP PBR plays a significant role in mitochondrial functions such as apoptosis and energy metabolism. The interaction with other molecules also includes the binding with benzodiazepines impacting processes like immune response and cell proliferation.
Pathways
PBR plays a role in the steroid biosynthesis and apoptosis pathways. It interfaces with the StAR (Steroidogenic Acute Regulatory) protein to facilitate cholesterol transport into mitochondria the initial step in steroid hormone production. PBR is also involved in pathways that regulate apoptosis and mitochondrial function linking it to different cellular processes through interactions with proteins like VDAC (Voltage-Dependent Anion Channel).
Cell culture
Product promise
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