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GTX109591 IHC-P Image
GTX109591 IHC-P Image
GTX109591 IHC-P Image

Ketohexokinase antibody [N1C3]

Research Use Only
GTX109591
GeneTex
Product group Antibodies
Price on request
Packing Size
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Overview

  • Supplier
    GeneTex
  • Product Name
    Ketohexokinase antibody [N1C3]
  • Delivery Days Customer
    9
  • Certification
    Research Use Only
  • Concentration
    0.4 mg/ml
  • Isotype
    IgG
  • Scientific Description
    This gene encodes ketohexokinase that catalyzes conversion of fructose to fructose-1-phosphate. The product of this gene is the first enzyme with a specialized pathway that catabolizes dietary fructose. Alternatively spliced transcript variants encoding different isoforms have been identified. [provided by RefSeq]
  • Storage Instruction
    2°C to 8°C,-20°C
  • UNSPSC
    12352203

References

  • A Role for Both V1a and V2 Receptors in Renal Heat Stress Injury Amplified by Rehydration with Fructose. Garcia-Arroyo FE et al., 2019 Nov 16, Int J Mol Sci
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  • Allopurinol Prevents the Lipogenic Response Induced by an Acute Oral Fructose Challenge in Short-Term Fructose Fed Rats. Garcia-Arroyo FE et al., 2019 Oct 11, Biomolecules
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  • Fructose Synthesis and Transport at the Uterine-Placental Interface of Pigs: Cell-Specific Localization of SLC2A5, SLC2A8, and Components of the Polyol Pathway. Steinhauser CB et al., 2016 Nov, Biol Reprod
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  • Osthol Ameliorates Kidney Damage and Metabolic Syndrome Induced by a High-Fat/High-Sugar Diet. Garcia-Arroyo FE et al., 2021 Feb 28, Int J Mol Sci
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  • Rehydration with soft drink-like beverages exacerbates dehydration and worsens dehydration-associated renal injury. Garcia-Arroyo FE et al., 2016 Jul 1, Am J Physiol Regul Integr Comp Physiol
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  • Restricted Water Intake and Hydration with Fructose-Containing Beverages during Infancy Predispose to Aggravate an Acute Renal Ischemic Insult in Adolescent Rats. Garcia-Arroyo FE et al., 2020, Biomed Res Int
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  • Sorbitol dehydrogenase overexpression and other aspects of dysregulated protein expression in human precancerous colorectal neoplasms: a quantitative proteomics study. Uzozie A et al., 2014 May, Mol Cell Proteomics
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