Energy And Herbaceous Crops Antibodies

Items 161-170 of 364

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  1. STN7 / Anti-Serine/threonine-protein kinase STN7, chloroplastic Antibody

    Starting at $89.00

     Immunogen: AT1G68830    Q9S713  
     Synonyms: STN7, STT7 HOMOLOG STN7

     Background:

    STN7 is required for state transitions, phosphorylation of the major antenna complex (LHCII) between PSII and PSI, and light adaptation.
  2. EIF3G1 / Anti- Eukaryotic translation initiation factor 3 subunit G Antibody

    Starting at $89.00

     Immunogen: AT3G11400    F4J6A1 
     Synonyms: EIF3G1, ATEIF3G1, EUKARYOTIC TRANSLATION INITIATION FACTOR 3G1

     Background:

    EIF3G1 codes for the G subunit of eukaryotic initiation factor 3 (EIF3).
  3. GDH3 / Anti-Probable glutamate dehydrogenase 3 Antibody

    Starting at $89.00

     Immunogen: AT3G03910    Q9S7A0  
     Synonyms: GDH3, GLUTAMATE DEHYDROGENASE 3, GSH3

     Background:

    Glutamate dehydrogenase (GDH), which catalyzes in vitro reversible reductive amination of 2-oxoglutatre to form glutamate, is a key player in the metabolism of glutamate. In Arabidopsis thaliana, three genes (GDH1 (AT5G18170), GDH2 (AT5G07440) and GDH3 (AT3G03910)) encode three different GDH subunits (β, α and γ) that randomly associate to form a complex array of homo- and hetero-hexamers.
  4. GDH2 / Anti-Glutamate dehydrogenase 2 Antibody

    Starting at $89.00

     Immunogen: AT5G07440    Q38946  
     Synonyms: GDH2, GLUTAMATE DEHYDROGENASE 2

     Background:

    Glutamate dehydrogenase (GDH), which catalyzes in vitro reversible reductive amination of 2-oxoglutatre to form glutamate, is a key player in the metabolism of glutamate. In Arabidopsis thaliana, three genes (GDH1 (AT5G18170), GDH2 (AT5G07440) and GDH3 (AT3G03910)) encode three different GDH subunits (β, α and γ) that randomly associate to form a complex array of homo- and hetero-hexamers.
  5. GDH1 / Anti-Glutamate dehydrogenase 1 Antibody

    Starting at $89.00

     Immunogen: AT5G18170    Q43314  
     Synonyms: GDH1, GLUTAMATE DEHYDROGENASE 1

     Background:

    Glutamate dehydrogenase (GDH), which catalyzes in vitro reversible reductive amination of 2-oxoglutatre to form glutamate, is a key player in the metabolism of glutamate. In Arabidopsis thaliana, three genes (GDH1 (AT5G18170), GDH2 (AT5G07440) and GDH3 (AT3G03910)) encode three different GDH subunits (β, α and γ) that randomly associate to form a complex array of homo- and hetero-hexamers.
  6. PPC1 / Anti-Phosphoenolpyruvate carboxylase 1 Antibody

    Starting at $89.00

     Immunogen: AT1G53310    Q9MAH0  
     Synonyms: PPC1, PEPCase, PEP carboxylase, ATPPC1, PEPC1

     Background:

    PPC1 is one of four Arabidopsis phosphoenolpyruvate carboxylase proteins. It plays an important role in carbon and nitrogen metabolism.
  7. AT2G07698 / Anti-ATP synthase subunit alpha, mitochondrial Antibody

    Starting at $89.00

     Immunogen: AT2G07698    F4IMB5  
     Synonyms: AT2G07698

     Background:

    Mitochondrial F0F1-ATP synthase is also called Complex V and it synthesis ATP from ADP and Pi using the proton motive force created by respiratory electron transport. ATP1 (ATMG01190/AT2G07698) is a subunit of mitochondrial F0F1-ATP synthase in Arabidopsis.
  8. ONE2 / Anti-Pyridoxamine 5'-phosphate oxidase family protein Antibody

    Starting at $89.00

     Immunogen: AT1G51560    Q9C8K8  
     Synonyms: ONE2, ONEIRIC2

     Background:

    ONE2
  9. APS1 / Anti-ATP sulfurylase 1, chloroplastic Antibody

    Starting at $89.00

     Immunogen: AT3G22890    Q9LIK9  
     Synonyms: APS1, ATP SULFURYLASE 1, ATPS1

     Background:

    Plants assimilate inorganic sulfate into sulfur-containing vital metabolites. ATP sulfurylase (ATPS) is the enzyme catalyzing the key entry step of the sulfate assimilation pathway in both plastids and cytosol in plants. Arabidopsis thaliana has four ATPS: ATPS1 (AT3G22890), ATPS2 (AT1G19920), ATPS3 (A AT4G14680), and ATPS4 (AT5G43780).
  10. SHM2 / Anti-Serine hydroxymethyltransferase 2, mitochondrial Antibody

    Starting at $89.00

     Immunogen: AT5G26780    Q94C74  
     Synonyms: SERINE HYDROXYMETHYLTRANSFERASE 2, SHM2

     Background:

    Serine hydroxymethyltransferases (SHMs) are important enzymes of cellular one-carbon metabolism and are essential for the photorespiratory glycine-into-serine conversion in leaf mesophyll mitochondria. SHM1 catalyzes the conversion of serine and tetrahydrofolate to glycine and 5,10-methylene tetrahydrofolate. And SHM2 is thought to be localized in the mitochondrial matrix.

Items 161-170 of 364

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