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Anti-O-Linked N-Acetylglucosamine Antibody,  Recombinant Antibody,  R1

產(chǎn)品編號:RPTMC8A1-R1
   
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規(guī)格     100ug

濃度     1.3mg/ml
 

產(chǎn)品名稱Anti-O-Linked N-Acetylglucosamine Antibody,  Recombinant Antibody,  R1
 
克隆號R1
 
抗體亞型Rabbit IgG
 
經(jīng)驗證的應(yīng)用WB/IP
 
交叉反應(yīng)All
 
特異性Monoclonal antibody is produced by immunizing animals with a peptide containing serine-O-linked N-acetylglucosamine (O-GlcNAc).

免疫原Synthetic peptide
 
宿主CHOS
 
來源Recombinant Rabbit IgG
 
純化Protein A purified
 
緩沖液Supplied in PBS, 50% glycerol and less than 0.02% sodium azide, PH7.4
 
狀態(tài):Liquid
 
應(yīng)用The application notes include recommended starting dilutions; optimal dilutions/concentrations should be determined by the end user.       WB: 0.5~5ug/ml              IP:1:20-1:50   
 
使用&儲存條件Shipped at 4℃.Store at 4℃ for frequent use.Aliquot and store at -20℃ for 12 months.Avoid repeated freezing/thawing and violent shaking.Please centrifuge it, before using.

質(zhì)量驗證圖:








Figure1.Application in WB
Western blot analysis of 293T and HeLa cells, untreated or treated with the  MG132 (50 µM, 90 minutes), using RPTMC8A1-R1 at 2ug/ml dilution. Secondary antibody: HRP Goat Anti-Rabbit IgG (H+L)  at 1:10000 dilution. Blocking buffer: 5% nonfat dry milk in TBST. Detection: ECL Basic Kit . Loading control to GAPDH (CP00002HuA10).












Figure2.Application in ICC
Immunofluorescent analysis of Hela cells , using RPTMC8A1-R1 (green) at 10ug/ml dilution. Nuclear DNA was labelled in blue with DAPI (blue). 





別稱O-GlcNAc, O糖基化
 
背景信息A distinct form of protein glycosylation, beta-linked N-acetyl-glucosamine (GlcNAc) moieties can be added to serine or threonine residues of proteins. This differs from other forms of glycosylation, as it typically is a single moiety rather than the complex branched sugars that are more commonly studied. It is thought that these modifications happen in a much more dynamic cycle more reminiscent of phosphorylation modifications. GlcNAc modified proteins are found in the cytoplasm and nucleus and are modulated by means of specific O-GlcNAc transferases (OGT) as well as GlcNAcase activity that can be inhibited using the Thiamet-G (TMG) inhibitor. Mass spectrometry analysis of this modification has been complicated due to the loss of the GlcNAc group during ionization and fragmentation, but methods and technologies such as electron transfer dissociation (ETD) are opening up new avenues to study these modifications. O-GlcNAc could play an important role in many cellular processes, including metabolism, growth, morphogenesis, apoptosis, transcription, and it may play a critical role in cancer.

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