Interesting facts
Interesting Facts about (2S)-2,5-Diaminopentanoic Acid
(2S)-2,5-diaminopentanoic acid, commonly known as diamino pentanoic acid, is a fascinating compound that plays a significant role in the field of biochemistry. This amino acid structure makes it a vital component for various biological processes. Here are some intriguing aspects of this compound:
- Biological Importance: As a precursor in the biosynthesis of certain amino acids, (2S)-2,5-diaminopentanoic acid contributes to the production of proteins, cellular repair, and growth.
- Research Applications: This compound is of interest in medicinal chemistry and pharmaceuticals. Its structural properties make it a candidate for drug development, particularly for conditions involving metabolic disorders.
- Structural Features: The unique 2S configuration indicates its specific stereochemistry, which is crucial for its biological function and interaction with other molecules.
- Potential for Synthesis: The versatility of its structure allows for various synthetic routes, making it accessible for lab studies and experimentation.
- Amino Acid Insights: (2S)-2,5-diaminopentanoic acid belongs to a subgroup of amino acids that are categorized as non-proteinogenic, which means they are not incorporated into proteins during translation, highlighting the diversity of amino acid roles in biology.
In summary, (2S)-2,5-diaminopentanoic acid demonstrates the intricate relationship between chemical structure and biological function. As researchers continue to explore its properties and applications, this compound may yield significant insights into both health and disease.
Synonyms
L-ornithine
ornithine
70-26-8
(S)-2,5-Diaminopentanoic acid
(S)-Ornithine
(S)-2,5-diaminovaleric acid
(2S)-2,5-diaminopentanoic acid
Ornithine [INN]
Ornitina
Ornithinum [Latin]
Ornitina [Spanish]
L-Norvaline, 5-amino-
(S)-alpha,delta-Diaminovaleric acid
Ornithine (VAN)
(+)-S-Ornithine
Ornithinum
(S)-2,5-Diaminopentanoate
Ornithine, (L)-Isomer
L(-)-Ornithine
Pentanoic acid, 2,5-diamino-, (S)-
L-(-)-Ornithine
levo-ornithine
CHEBI:15729
BRN 1722298
ORNITHINE, L-
EINECS 200-731-7
Ornithine (INN)
L-Ornithine, HCl
NSC-758894
E524N2IXA3
5-amino-L-Norvaline
ORNITHINE [MI]
ORNITHINE [MART.]
ORNITHINE [WHO-DD]
25104-12-5
DTXSID00883219
4-04-00-02644 (Beilstein Handbook Reference)
Ornithinum (Latin)
alpha,delta-diaminovaleric acid
NSC 758894
ORNITHINE (MART.)
LYSINE ACETATE IMPURITY E [EP IMPURITY]
L( )-Ornithine
2, 5-diaminopentanoate
2, 5-diaminovaleric acid
2, 5-diaminopentanoic acid
MFCD00242584
ORN
LYSINE ACETATE IMPURITY E (EP IMPURITY)
DTXSID00860383
UNII-E524N2IXA3
LOrnithine
(S)Ornithine
L()Ornithine
1hqg
1lah
3jdw
()-Ornithine
LNorvaline, 5amino
L-Ornithine (9CI)
5-diaminopentanoic acid
ORNITHINE [INCI]
(S)-a,d-Diaminovalerate
Ornithine, L- (8CI)
bmse000162
SCHEMBL8579
GTPL725
(S)-a,d-Diaminovaleric acid
(S)2,5Diaminopentanoic acid
Pentanoic acid, 2,5-diamino
CHEMBL446143
pentanoic acid, 2,5-diamino-
alpha, delta-diaminovaleric acid
(S)alpha,deltaDiaminovaleric acid
A05BA06
DTXCID40197342
DTXCID201022768
Pharmakon1600-01504524
HY-B1352
Pentanoic acid, 2,5diamino, (S)
(2S)-2,5-diaminopentanoate;hydron
(R,S)-2,5-Diamino-pentanoic acid
BDBM50487430
L-Ornithine;2,5-Diaminovaleric acid
NSC758894
s4857
AKOS006239312
CS-4817
DB00129
SMP2_000009
NCGC00263569-01
AC-13803
AS-80993
DA-75080
(S)-2
NS00068568
S4653
EN300-96942
A11694
C00077
D08302
Q410198
8AB10027-4D34-488A-9F55-E86692CA2853
200-731-7
Solubility of (2S)-2,5-diaminopentanoic acid
(2S)-2,5-diaminopentanoic acid, with the chemical formula C6H14N2O2, is a fascinating compound known for its solubility characteristics. This compound contains multiple functional groups, including amino and carboxylic acid groups, which significantly influence its solubility in various solvents.
Key Solubility Features:
This solubility profile is crucial for applications in biochemistry and pharmaceuticals, where the solubility of compounds can affect their biological availability and functionality. In conclusion, the solubility of (2S)-2,5-diaminopentanoic acid emphasizes the importance of molecular structure in determining how a compound interacts with different solvents.