Recombinant Rat FAS cell lysate
Cat.No. : | FAS-1139RCL |
Product Overview : | Rat FAS / TNFRSF6 / CD95 derived in Human Cells. The whole cell lysate is provided in 1X Sample Buffer.Browse all transfected cell lysate positive controls |
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Source : | Human cells |
Species : | Rat |
Preparation method : | Transfected cells were cultured for 48hrs before collection. The cells were lysed in modified RIPA buffer with cocktail of protease inhibitors. Cell debris was removed by centrifugation and then centrifuged to clarify the lysate. The cell lysate was boiled for 5 minutes in 1 x SDS sample buffer (50 mM Tris-HCl pH 6.8, 12.5% glycerol, 1% sodium dodecylsulfate, 0.01% bromophenol blue) containing 5% b-mercaptoethanol, and lyophilized. |
Lysis buffer : | Modified RIPA Lysis Buffer: 50 mM Tris-HCl pH 7.4, 150 mM NaCl, 1mM EDTA, 1% Triton X-100, 0.1% SDS, 1% Sodium deoxycholate, 1mM PMSF |
Quality control Testing : | 12.5% SDS-PAGE Stained with Coomassie Blue |
Recommended Usage : | 1. Centrifuge the tube for a few seconds and ensure the pellet at the bottom of the tube.2. Re-dissolve the pellet using 200μL pure water and boiled for 2-5 min.3. Store it at -80°C. Recommend to aliquot the cell lysate into smaller quantities for optimal storage. Avoid repeated freeze-thaw cycles.Notes:The lysate is ready to load on SDS-PAGE for Western blot application. If dissociating conditions are required, add reducing agent prior to heating. |
Stability : | Samples are stable for up to twelve months from date of receipt at -80°C |
Storage Buffer : | 50 mM Tris-HCl pH 7.4, 150 mM NaCl, 1mM EDTA, 1% Triton X-100, 0.1% SDS, 1% Sodium deoxycholate, 1mM PMSF |
Storage Instruction : | Lysate samples are stable for 12 months from date of receipt when stored at -80°C. Avoid repeated freeze-thaw cycles. Prior to SDS-PAGE fractionation, boil the lysate for 5 minutes. |
Tag : | Non |
Gene Name : | Fas Fas (TNF receptor superfamily, member 6) [ Rattus norvegicus ] |
Official Symbol : | FAS |
Synonyms : | FAS; Fas (TNF receptor superfamily, member 6); tumor necrosis factor receptor superfamily member 6; CD95 antigen; Fas receptor; apo-1 antigen; FASLG receptor; Fas antigen (ATP1); apoptosis-mediating surface antigen FAS; Tumor necrosis factor receptor superfamily, member 6; Tnfrsf6; |
Gene ID : | 246097 |
mRNA Refseq : | NM_139194 |
Protein Refseq : | NP_631933 |
Pathway : | Activation of Pro-Caspase 8, organism-specific biosystem; Adipogenesis, organism-specific biosystem; African trypanosomiasis, organism-specific biosystem; African trypanosomiasis, conserved biosystem; Allograft rejection, organism-specific biosystem; Allograft rejection, conserved biosystem; Alzheimers disease, organism-specific biosystem; |
Function : | identical protein binding; identical protein binding; kinase binding; kinase binding; protein binding; receptor activity; transmembrane signaling receptor activity; tumor necrosis factor-activated receptor activity; tumor necrosis factor-activated receptor activity; |
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For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.
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Customer Reviews (3)
Write a reviewWhen experimenting with FAS, the results are very reproducible.
The stability of FAS products allows them to cope with different experimental conditions and modes of operation.
FAS has high specific activity and can exert strong biological effect at low concentration.
Q&As (6)
Ask a questionFAS protein plays an important role in cell signaling, it can activate downstream signaling pathways, such as death signaling pathway and survival signaling pathway, by binding to its ligand and transmitting signals.
It can provide a reference for clinical practice and guide the diagnosis, treatment and prevention of diseases by detecting the expression level of FAS protein and understanding its mechanism of action.
FAS protein-related diseases can be prevented and treated by regulating the expression level of FAS protein and inhibiting its signaling pathway.
Gene knockout or knockdown techniques can be used to study the function and mechanism of action of FAS proteins. By knocking out or knocking down the FAS gene, changes in processes such as apoptosis and immune response can be observed to further understand its function and mechanism of action.
FAS protein can bind to its ligand, activate the death signaling pathway, and induce apoptosis.
The expression level and activity of FAS protein can be measured to predict the prognosis and development trend of certain diseases.
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