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Recombinant Human NAD (P) transhydrogenase, mitochondrial (NNT), Truncated

ACP06210

Number
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High Purity LevelsPrecision and ReliabilityCustomization Options

Specifications


Cat.No ACP06210 Target NameNNT
Target SynonymsGCCD4; mitochondrial; NAD(P) transhydrogenase; NAD(P) transhydrogenase mitochondrial; Nicotinamide nucleotide transhydrogenase; NNT; NNTM; NNTM_HUMAN; Pyridine nucleotide transhydrogenaseFormLyophilized powder
Expression SystemCustom Production. Please inquire and provide the desire expression system.Protein LengthPartial
Purity>85% (SDS-PAGE)Storage Buffer5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, Liquid form: default storage buffer is Tris/PBS-based buffer, pH 8.0.

Immunogen Information


Target SpeciesHumanUniprot IDQ13423
Background Information
  • Uniprot Id

    Q13423

  • Target Species

    Human

  • Target Name

    NNT

  • Target Full Name

    NAD(P) transhydrogenase, mitochondrial

  • Target Function

    The transhydrogenation between NADH and NADP is coupled to respiration and ATP hydrolysis and functions as a proton pump across the membrane. May play a role in reactive oxygen species (ROS) detoxification in the adrenal gland.

  • Target Involvement

    Glucocorticoid deficiency 4 with or without mineralocorticoid deficiency (GCCD4)

  • Target Subcellular Location

    Mitochondrion inner membrane; Multi-pass membrane protein; Matrix side.

  • Target Protein Families

    AlaDH/PNT family; PNT beta subunit family

  • Target Tissue Specificity

    Widely expressed with expression most readily detectable in adrenal, heart, kidney, thyroid and adipose tissues.

  • Target Synonyms

    GCCD4; mitochondrial; NAD(P) transhydrogenase; NAD(P) transhydrogenase mitochondrial; Nicotinamide nucleotide transhydrogenase; NNT; NNTM; NNTM_HUMAN; Pyridine nucleotide transhydrogenase

  • Target Background

    This gene encodes an integral protein of the inner mitochondrial membrane. The enzyme couples hydride transfer between NAD(H) and NADP(+) to proton translocation across the inner mitochondrial membrane. Under most physiological conditions, the enzyme uses energy from the mitochondrial proton gradient to produce high concentrations of NADPH. The resulting NADPH is used for biosynthesis and in free radical detoxification.

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