1 hour add-mix-measure format for quantifying complex V inhibition
Features
  • Measure complex V activity in isolated mitochondria
  • Useful for screening compounds for complex V inhibition
  • Suitable for high-throughput screening
  • Plate-based colorimetric measurement (340 nm)
  • MitoCheck® Mitochondrial (Tissue) Isolation Kit (Item No. 701010) available to aid in mitochondrial tissue isolation
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MitoCheck® Complex V Activity Assay Kit

Item No. 701000

Technical Information
Origin
Animal/Bovine
Shipping & Storage Information
Storage
-80°C
Shipping
Dry ice in continental US; may vary elsewhere
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    Product Description

    The mitochondrial F1FO ATP synthase, commonly referred to as complex V, is a multi-subunit protein that utilizes energy in the form of a proton gradient generated by the electron transport chain, to phosphorylate ADP to form ATP in the presence of Pi. This mechanism, referred to as oxidative phosphorylation, is responsible for ~90% of ATP generation in mammalian cells. Cayman's MitoCheck® Complex V Activity Assay measures the activity of Complex V, in the reverse reaction, as an ATPase in the mitochondrial samples provided. In this assay, ATP is dephosphorylated ADP by complex V. The ADP is then utilized by pyruvate kinase to convert phosphoenolpyruvate into pyruvate with the concomitant generation of ATP. Pyruvate, in the presence of NADH and lactate dehydrogenase, is then reduced to lactate and NAD+. The rate of NADH oxidation is monitored at 340 nm. Isolated bovine heart mitochondria are provided in this kit. Tissue mitochondria can also be acquired using Cayman’s MitoCheck® Mitochondrial (Tissue) Isolation Kit (Item No. 701010).

    Needed but not supplied: Please download the kit booklet to verify if UltraPure Water (Milli-Q or equivalent) or any other components are needed for this assay.

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Citations

    Hajmousa, G., Vogelaar, P., Brouwer, L.A., et alThe 6-chromanol derivate SUL-109 enables prolonged hypothermic storage of adipose tissue-derived stem cells. Biomaterials 119, 43-52 (2017).

    Lei, S., Sun, R.-z., Wang, D., et alIncreased hepatic fatty acids uptake and oxidation by LRPPRC-driven oxidative phosphorylation reduces blood lipid levels. Front. Physiol. 7, 270 (2016).

    Tavecchio, M., Lisanti, S., Bennett, M.J., et alDeletion of cyclophilin D impairs b-oxidation and promotes glucose metabolism. Sci. Rep. 5, 15981 (2015).