Mouse Anti-GLU1 Antibody (CBMOAB-34127FYC)


Cat: CBMOAB-34127FYC
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Lot Number

  • Product List
  • Specifications
  • Application Information
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Sub Cat Clonality Species Reactivity Application Clone Conjugate Size  
CBMOAB-34127FYC Monoclonal A. thaliana (Arabidopsis thaliana), Arabidopsis (Arabidopsis lyrata), Arabidopsis, Rice, Maize (Zea mays), Rice (Oryza) WB, ELISA MO34127FC 100 µg
CBMOAB-22888FYB Monoclonal Rice (Oryza) WB, ELISA MO22888FYB 100 µg
MO-AB-48223W Monoclonal Maize (Zea mays) WB, ELISA MO48223W 100 µg
MO-AB-00533H Monoclonal Arabidopsis (Arabidopsis lyrata) WB, ELISA MO00533C 100 µg
MO-DKB-00108W Polyclonal A. thaliana (Arabidopsis thaliana) ELISA, WB 100 µg
MO-DKB-01796W Polyclonal A. thaliana (Arabidopsis thaliana) WB 100 µg
MOFAB-276W Arabidopsis, Rice WB 100 µg

Specifications

Host speciesMouse (Mus musculus)
Species ReactivityA. thaliana (Arabidopsis thaliana), Arabidopsis (Arabidopsis lyrata), Arabidopsis, Rice, Maize (Zea mays), Rice (Oryza)
CloneMO34127FC
SpecificityThis antibody binds to Arabidopsis GLU1.
FormatLiquid or Lyophilized
StorageStore at 4°C: short-term (1-2weeks)
Store at -20°C: long-term and future use
Purity> 90% was determined by SDS-PAGE
PurificationPurified with Protein A or G affinity chromatography
Cellular LocalizationChloroplast; Mitochondrion; Plasma Membrane; Extracellular region or secreted

Application Information

ApplicationWB, ELISA
Application NotesELISA: 1:1000-1:3000
Other applications are to be developed. The optimal dilution should be determined by the end user.

Target

Product OverviewMouse Anti-Arabidopsis GLU1 (clone MO34127FC) Antibody (CBMOAB-34127FYC) is a mouse antibody against GLU1. It can be used for GLU1 detection in Western Blot, Enzyme-Linked Immunosorbent Assay.
Alternative NamesFerredoxin-dependent glutamate synthase 1, chloroplastic/mitochondrial; EC 1.4.7.1; Fd-GOGAT 1; GLU1; GLS1; At5g04140
UniProt IDQ9ZNZ7
Protein RefseqThe length of the protein is 1622 amino acids long. The sequence is show below: MALQSPGATGASSSVSRLLSSAKLSSTKTIFSVDFVRSYCISKGTKRRNELSGFRGYSPLLKSSLRSPFSVKAILNSDRAAGDASSSFSDLKPQVAYLEDIISERGACGVGFIANLENKATHKIVNDALIALGCMEHRGGCGSDNTSGDGSGLMTSIPWDLFNEWAEKQGIASFDRTHTGVGMLFLPRDDNIRKEAKKVITSIFEKEGLEVLGWRDVPVEASIVGHNAKQTMPNTEQVFVRIVKDDKVDDVERELYICRKLIERAVASESWASELYFSSLSNQTIVYKGMLRSEVLGLFYPDLQNDLYKSPFAIYHRRFSTNTSPRWHLAQPMRFLGHNGEINTIQGNLNWMTSREASLRSPVWHGRENDIRPISNPKASDSANLDSAAELLIRSGRTPEESLMILVPEAYKNHPTLMIKYPEAVDFYDYYKGQMEPWDGPALVLFSDGKTVGACLDRNGLRPARYWRTSDNVVYVASEVGVLPMDESKVTMKGRLGPGMMISVDLENGQVYENTEVKKRVASYNPYGKWVSENLRNLKPSNYLSSAILETDETLRRQQAFGYSSEDVQMVIESMAAQGKEPTFCMGDDTPVAVLSQKPHMLYDYFKQRFAQVTNPAIDPLREGLVMSLEVNIGKRGNILEVGPQNVSQVVLSGPVLNERELEGLLGDPLLKSQILPTFFDIRRGIEGSLKKGLLKLCEAADEAVRNGSQVLVLSDRSDNPEPTRPAIPMLLAVGAVHQHLIQNGLRMSASIIADTAQCFSTHHFACLIGYGASAICPHLALETCRQWRLSNKTVNMMRNGKMPTVTMEQAQKNYRKAVNTGLLKVLSKMGISLFSSYCGAQIFEIYGLGNEVVEFSFRGSASQIGGLTLDELARETLTFWVRAFSEDTAKRLENFGFIQFRPGGEYHGNNPEMSKLLHKAVREKSETAYAVYQQHLANRPITVFRDLLEFKSDRNPIPVGKVEPASSIVERFCTGGMSLGAISRETHETIAIAMNRLGGKSNSGEGGEDPIRWKPLTDVVDGYSSTLPHLKGLRNGDTATSAIKQVASGRFGVTPTFLVNADQLEIKVAQGAKPGEGGQLPGKKVSAYIARLRNSKPGVPLISPPPHHDIYSIEDLAQLIFDLHQVNPKAKVSVKLVSETGIGTVASGVAKANADIIQISGYDGGTGASPISSIKHAGGPWELGLAETQKTLIGNGLRERVIIRVDGGFKSGVDVLIAAAMGADEYGFGTLAMIATGCIMARICHTNNCPVGVASQREELRARFPGLPGDLVNFFLYIAEEVRGILAQLGYEKLDDIIGRTDLLKARDISLVKTHLDLSYLLSSVGLPKRSSTSIRKQEVHSNGPVLDDTLLQDPEIMDAIENEKTVHKTMSIYNVDRSVCGRIAGVIAKKYGDTGFAGQLNLTFTGSAGQSFACFLTPGMNIRLVGEANDYVGKGMAGGEVVILPVESTGFRPEDATIVGNTCLYGATGGLLFVRGKAGERFAVRNSLAQAVVEGTGDHCCEYMTGGCVVILGKVGRNVAAGMTGGLAYILDEDNTLLPKMNKEIVKIQRVTSPVGQTQLKSLIQAHVEKTGSSKGAMIVEEWDKYLAMFWQLVPPSEEDTPEANSDHILKTTTGDEEQVSSTLAEK.

Reference

Reference1. Hudson, D., Guevara, D., Yaish, M. W., Hannam, C., Long, N., Clarke, J. D., ... & Rothstein, S. J. (2011). GNC and CGA1 modulate chlorophyll biosynthesis and glutamate synthase (GLU1/Fd-GOGAT) expression in Arabidopsis. PloS one, 6(11), e26765.
2. Badia, M. B., Maurino, V. G., Pavlovic, T., Arias, C. L., Pagani, M. A., Andreo, C. S., ... & Gerrard Wheeler, M. C. (2020). Loss of function of Arabidopsis NADP-malic enzyme 1 results in enhanced tolerance to aluminum stress. The Plant Journal, 101(3), 653-665.
3. Gaufichon, L., Rothstein, S. J., & Suzuki, A. (2016). Asparagine metabolic pathways in Arabidopsis. Plant and Cell Physiology, 57(4), 675-689.
For Research Use Only | Not For Clinical Use.
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