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2,3-Dihydroxyisovaleric acid

Cat. No. M55204

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2,3-Dihydroxyisovaleric acid Structure
Synonym:

2,3-dihydroxy-3-methylbutanoic acid; 2,3-dihydroxyisovalerate

Size Price Availability
1mg USD 114 4-7 Days
2mg USD 164 4-7 Days
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Biological Activity

2,3-Dihydroxyisovaleric acid is a natural metabolite of the branched-chain amino acid leucine. It acts by activating the mTOR signaling pathway to promote the synthesis of new muscle proteins and reduce the breakdown of existing proteins.

Chemical Information
Molecular Weight 134.13
Formula C5H10O4
CAS Number 1756-18-9
Solubility (25°C) DMSO 15 mg/mL
Storage -20°C, dry, sealed
Related Metabolite/Endogenous Metabolite Products
2'-Deoxyinosine

2′-Deoxyinosine is a nucleoside composed of hypoxanthine attached to 2′-deoxyribose via a β-N9-glycosidic bond. It is a DNA damage product resulting from the impairment of DNA by reactive nitrogen species. 2′-deoxyinsine can be used as a model compound to study the chemistry of adduct formation and radical chemistry that may affect DNA structures. 2′-Deoxyinosine is used to produce hybridization-sensitive fluorescent DNA probes with self-avoidance ability.

Ribitol

Ribitol (Adonitol) is a crystalline pentose alcohol formed by the reduction of ribose.

Glycodeoxycholic Acid

Glycodeoxycholic Acid is an endogenous metabolite. Glycodeoxycholic Acid induces hepatocyte necrosis and autophagy in patients with obstructive cholestasis.

Glycolithocholic acid

Glycolithocholic acid, an endogenous metabolite, is a glycine conjugated secondary bile acid. Glycolithocholic acid can be used to study ulcerative colitis (UC), non-alcoholic steatohepatitis (NASH0) and primary sclerosing cholangitis (PSC).

4-Aminohippuric Acid

4-Aminohippuric acid is a typical substrate of organic anion transport systems. 4-Aminohippuric acid is a diagnostic agent, useful in medical tests involving the kidney, used in the measurement of renal plasma flow.

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Keywords: 2,3-Dihydroxyisovaleric acid, 2,3-dihydroxy-3-methylbutanoic acid; 2,3-dihydroxyisovalerate supplier, Metabolite/Endogenous Metabolite, inhibitors, activators

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