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Dimethylglycine

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Dimethylglycine
Skeletal formula of dimethylglycine
Ball-and-stick model of the dimethylglycine molecule as a zwitterion
Names
IUPAC name
N,N-Dimethylglycine
Systematic IUPAC name
(Dimethylamino)acetic acid
Identifiers
3D model (JSmol)
3DMet
1700261
ChEBI
ChemSpider
DrugBank
ECHA InfoCard 100.012.971
EC Number
  • 214-267-8
82215
KEGG
MeSH dimethylglycine
PubChem CID
RTECS number
  • MB9865000
UNII
  • InChI=1S/C4H9NO2/c1-5(2)3-4(6)7/h3H2,1-2H3,(H,6,7) checkY
    Key: FFDGPVCHZBVARC-UHFFFAOYSA-N checkY
  • CN(C)CC(O)=O
Properties
C4H9NO2
Molar mass 103.121 g·mol−1
Appearance White crystals
Odor Odourless
Density 1.069 g/mL
Melting point 178 to 182 °C (352 to 360 °F; 451 to 455 K)
Boiling point 175.2 °C (347.4 °F; 448.3 K)
Hazards
GHS labelling:
GHS07: Exclamation mark
Warning
H302
Lethal dose or concentration (LD, LC):
>650 mg kg−1(oral, rat)
Related compounds
Related alkanoic acids
Related compounds
Dimethylacetamide
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
☒N verify (what is checkY☒N ?)

Dimethylglycine (DMG) is a derivative of the amino acid glycine with the structural formula (CH3)2NCH2COOH. It can be found in beans and liver, and has a sweet taste. It can be formed from trimethylglycine upon the loss of one of its methyl groups. It is also a byproduct of the metabolism of choline.

When DMG was first discovered, it was referred to as Vitamin B16, but, unlike true B vitamins, deficiency of DMG in the diet does not lead to any ill-effects and it is synthesized by the human body in the citric acid cycle meaning it does not meet the definition of a vitamin.

Uses

Dimethylglycine has been suggested for use as an athletic performance enhancer, immunostimulant, and a treatment for autism, epilepsy, or mitochondrial disease. There is no evidence that dimethylglycine is effective for treating mitochondrial disease. Published studies on the subject have shown little to no difference between DMG treatment and placebo in autism spectrum disorders.

Biological activity

Dimethylglycine has been found to act as an agonist of the glycine site of the NMDA receptor.

Preparation

This compound is commercially available as the free form amino acid, and as the hydrochloride salt [2491-06-7 ]. DMG may be prepared by the alkylation of glycine via the Eschweiler–Clarke reaction. In this reaction, glycine is treated with aqueous formaldehyde in formic acid that serves as both solvent and reductant. Hydrochloric acid is added thereafter to give the hydrochloride salt. The free amino acid may have been obtained by neutralization of the acid salt, which has been performed with silver oxide.

H2NCH2COOH + 2 CH2O + 2 HCOOH → (CH3)2NCH2COOH + 2 CO2 + 2 H2O

See also


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