Arginine derivatives Asparagine derivatives Aspartic acid derivatives Cysteine derivatives Glutamine derivatives Glutamic acid derivatives Glycine derivative Histidine derivatives Isoleucine derivatives Leucine derivatives Lysine derivatives Methionine derivatives Phenylalanine derivatives Proline derivatives Serine derivatives Threonine derivatives Tryptophan derivatives Tyrosine derivatives Valine derivatives Alanine derivatives Methionine derivatives BOC-amino acid Cbz-amino acid FMOC-amino acid α-Amino acid Other Amino Acid Protection Amino alcohol derivative Amino acid salts Amino acid esters Other amino acid derivatives Natural amino acids and derivatives
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Amino Acids and Derivatives

Arginine derivatives Asparagine derivatives Aspartic acid derivatives Cysteine derivatives Glutamine derivatives Glutamic acid derivatives Glycine derivative Histidine derivatives Isoleucine derivatives Leucine derivatives Lysine derivatives Methionine derivatives Phenylalanine derivatives Proline derivatives Serine derivatives Threonine derivatives Tryptophan derivatives Tyrosine derivatives Valine derivatives Alanine derivatives Methionine derivatives BOC-amino acid Cbz-amino acid FMOC-amino acid α-Amino acid Other Amino Acid Protection Amino alcohol derivative Amino acid salts Amino acid esters Other amino acid derivatives Natural amino acids and derivatives
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Amino acids and their derivatives belong to a compound containing both amino group and carboxyl group. They are presented in both the form of free-state and bound-state in vivo. Free amino acids are distributed in all kinds of animal cells and body fluids with the bound amino acids being the mainly basic components of proteins and peptides.

Natural amino acids act as colorless crystalline materials with relatively high melting points being mostly above 200 ℃. They are usually soluble in water but insoluble in non-polar organic solvents. However, tyrosine and cystine are insoluble in water; proline and hydroxyl proline are soluble in ethanol and ether. All amino acids are soluble in strong acid and alkali solution.

According to the polar characterization of the R group of the side chain of the α-amino acid; those 20 common amino acids that constitute protein can be divided into four groups:
① Amino acids with R group being non-polar; There are 8 kinds in total, wherein five kinds have aliphatic side chains, namely alanine, leucine, isoleucine, valine and proline; two kinds are aromatic amino acids, phenylalanine and tryptophan; one kind belongs to sulfur-containing amino acid, namely methionine; amino acids belonging to this group have lower water solubility than polar R-group amino acid; proline is generally different with α-amino acid, it is formed through the substitution of one hydrogen atom of the amino acid with the side chains of the α- amino acid, belonging actually to imino acid.
② Amino acids with polar but non-charged R group; There are seven kinds in total, namely serine, threonine and tyrosine with R group having hydroxy group; cysteine with R group having a mercapto group of cysteine; glutamine and asparagine with R-group containing amide group, another amino acid is glycine ; glycine molecule has no R group, but having certain polarity, and thus being classified into this group; the side chains in this group of amino acid contain unassociated polar groups and can form hydrogen bonds with water, and is easily soluble in water.
③Amino acids with R group being positively charged amino acids. There are three kinds in total, namely, lysine, arginine, and histidine; they carry positive charge at pH7.0 and are also known as alkaline amino acids.
④Amino acids with R group being negatively charged. There are two kinds in total, namely glutamate and aspartate; at pH7.0, the molecules are negatively charged, also known as acidic amino acids. The formula, abbreviations symbols and related constants of 20 kinds of amino acid structures can be seen from the table. In addition to the 20 common amino acids mentioned above, there are also diiodotyrosine, thyroxine, hydroxyproline and hydroxylysine existing in certain proteins. In addition to amino acids involved in protein composition, it has been also found of more than 200 kinds of other kinds amino acids in a variety of tissues and cells; these amino acids are mostly derivatives of those α- amino acid composition of proteins.

However, there are some β-, γ- or δ- amino acids and some amino acids belong to D-type amino acids such as [beta]-alanine, [gamma]-aminobutyric acid and the phenylalanine contained in the antibiotics gramicidin-S, the D-alanine and D-glutamate contained in Gram-positive bacteria cell wall. Some non-protein amino acids can act as metabolically important precursors or intermediates, wherein β-alanine is the precursors of vitamin pantothenic acid; ornithine, and citrulline are the precursors in the synthesis of arginine; [gamma]-aminobutyric acid is the chemical neurotransmitter. Plants contain a large amount of non-protein amino acids, belonging to plant secondary substances, such as theanine, canavanine, djenkolic acid, β- Cyanoalanine and so on.

In addition to 20 kinds of amino acids found in the body and animal protein products, it has been found of nearly 200 kinds of other kinds of amino acids in nature. Most of them have been discovered in the plant kingdom and have complex molecular structures with no relation with the protein metabolism. There have been less that have been seen in the animal kingdom with some of them being originated from the chemical modification of certain incorporated amino acids in the specific proteins, for example, the proline and lysine contained in collagen protein are often partially subject to re-hydroxylation of hydroxyproline and hydroxylysine; Another example is that there are often a small amount of lysine and histidine contained in actin and myosin protein containing hypermethylated εN methyl-lysine and 3N-histidine; it has been also found in the histone protein that the ∈ amino group contained in lysine is acetylated and the OH group in the serine is phosphorylated; thyroglobulin contains iodinated tyrosine and thyronine iodide; The heavy chain of τ myosin and the N-terminal of certain proteins contain pyroglutamate formed by glutamine; there also exists the cystine constituting of two cysteine molecules in the general protein.

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Structure:
Chemical Name:
p-Methylaminobenzoylglutamic acid diethyl ester
MF:
C17H24N2O5
Structure:
Chemical Name:
L-Arginine DL-Malate
MF:
C10H20N4O7
Structure:
Chemical Name:
D-ASPARTIC ACID, N-[(1,1-DIMETHYLETHOXY)CARBONYL]-, 4-(2-PROPENYL) ESTER
CAS:
207120-58-9
MF:
C12H19NO6
Structure:
Chemical Name:
3-Aminotetrahydrofuran-3-carboxylic acid hydrochloride
CAS:
919098-94-5
MF:
C5H10ClNO3
Structure:
Chemical Name:
3-(4-nitro-phenyl)-L-alanine ethylester hydrochloride
MF:
C11H15ClN2O4
Chemical Name:
BORON AMINO ACID
Chemical Name:
GRANULAR AMINO ACID
Structure:
Chemical Name:
DL-4-Bromophenylglycine
CAS:
42718-15-0
MF:
C9H10BrNO2
Structure:
Chemical Name:
N,N-Dimethyl-L-Alanine
CAS:
157431-09-9
MF:
C5H11NO2
Structure:
Chemical Name:
2-Amino-4-nitro-5-methoxybenzoic Acid
CAS:
196194-99-7
MF:
C8H8N2O5
Structure:
Chemical Name:
N-(2,4-Dinitrophenyl)-D-proline
CAS:
10189-66-9
MF:
C11H11N3O6
Structure:
Chemical Name:
GRA Ex-25
CAS:
307983-31-9
MF:
C29H36F3N3O5
Structure:
Chemical Name:
BOC-5-BROMO-L-TRYPTOPHAN
CAS:
75816-20-5
MF:
C16H19BrN2O4
Structure:
Chemical Name:
(S)-2-Amino-4-hexynoic acid
CAS:
29834-76-2
MF:
C6H9NO2
Structure:
Chemical Name:
N-Phenyl-N-nitrosoglycine
CAS:
6415-68-5
MF:
C8H8N2O3
Structure:
Chemical Name:
H-GLU-OME
CAS:
6384-03-8
MF:
C16H22N2O4
Structure:
Chemical Name:
(S)-(+)-NALPHA-BENZYL-NBETA-BOC-O-BENZYL-L-HYDRAZINOTYROSINE DICYCLOHEXYLAMINE SALT
CAS:
680601-76-7
MF:
C40H55N3O5
Structure:
Chemical Name:
3-(2-Pyridyl)alanine
CAS:
163513-22-2
MF:
C9H13ClN2O2
Structure:
Chemical Name:
L-Cysteine hydrochloride Monohydrate
MF:
C3H10ClNO3S
Structure:
Chemical Name:
L- Arginine Orotate
MF:
C11H18N6O6
Structure:
Chemical Name:
3-amino-4-trifluoromethylbenzoic acid
MF:
C8H6F3NO2
Chemical Name:
L-ARGININE L-MALATE(1:1)
Structure:
Chemical Name:
(R)-2-(+)-AMINO-1,1,2-TRIPHENYLETHANOL
CAS:
79868-79-4
MF:
C20H19NO
Structure:
Chemical Name:
3 3' 5-TRIIODO-L-THYRONINE SODIUM SALT&
CAS:
345957-19-9
MF:
C15H11I3NO4Na
Structure:
Chemical Name:
7,8-DIAMINOPELARGONIC ACID
CAS:
21738-21-6
MF:
C9H20N2O2
Chemical Name:
GAMMA-GLUTAMYL-S-ALLYL-L-CYSTEINE (25 MG)
Structure:
Chemical Name:
L-LEUCINE-2-D1
CAS:
89836-93-1
MF:
C6H13NO2
Structure:
Chemical Name:
L-METHIONINE GAMMA-LYASE
CAS:
42616-25-1
MF:
C9H14N2O12P2
Structure:
Chemical Name:
MANGANESE ASPARTATE
MF:
C4H5MnNO4
Structure:
Chemical Name:
LEUCINE, N-[(3-CHLOROPHENYL)SULFONYL]-
MF:
C12H16ClNO4S
Structure:
Chemical Name:
4-methyloxazolidine-2,5-dione
CAS:
30291-41-9
MF:
C4H5NO3
Structure:
Chemical Name:
O-benzyl-L-methionine toluene-p-sulphonate
CAS:
68739-90-2
MF:
C19H25NO5S2
Structure:
Chemical Name:
N-CBZ-O-t-butyl-L-tyrosine dicyclohexylammonium salt
MF:
C33H48N2O5
Structure:
Chemical Name:
N-FMOC-S-tert-butyl-L-cysteine
MF:
C22H25NO4S
Structure:
Chemical Name:
DL-Glutamine 15N
MF:
C5H10N2O3
Chemical Name:
L-Glutamic acid-γ-(4-methoxy-2-naphthylamide)
MF:
C16H18N2O4
Structure:
Chemical Name:
N-CBZ-L-glutamic acid-5-benzyl ester
MF:
C20H21NO6
Chemical Name:
GAD-65 (glutamate decarboxylase)
Chemical Name:
Eukaryotic aspartyl protease(Rice)
Chemical Name:
Trk C(Tyrosine kinase,TrkC)
Chemical Name:
(S)-beta-4-Bromophenylalanine
MF:
C9H10BrNO2
Chemical Name:
DL-Ala-OBzlTosOH
MF:
C10H13NO2C7H8NO3
Chemical Name:
α-amino-β-cyclohexylpropionic acid
MF:
C9H17NO2
Structure:
Chemical Name:
Pyrazinyl-L-alanine
CAS:
87831-85-4
MF:
C7H9N3O2
Chemical Name:
L-Tyrosine alpha Ketoglutarate (2:1)
Structure:
Chemical Name:
DIETHYL PALMITOYL ASPARTATE
CAS:
3397-14-6
MF:
C24H45NO5
Structure:
Chemical Name:
DIMETHYL ASPARTIC ACID
CAS:
1115-22-6
MF:
C6H11NO4
Structure:
Chemical Name:
GLYCYL TYROSINE
CAS:
39630-46-1
MF:
C11H16N2O5
Structure:
Chemical Name:
PHENYLALANINE
CAS:
167088-01-9
MF:
C9H11NO2
Structure:
Chemical Name:
(2R,4S)-4-Fluoro-D-proline methyl ester
CAS:
732957-04-9
MF:
C6H10FNO2
Structure:
Chemical Name:
Proline, 1-(aminocarbonyl)- (9CI)
CAS:
125411-62-3
MF:
C6H10N2O3
Structure:
Chemical Name:
N-[(1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,8-HEPTADECAFLUOROOCTYL)SULFONYL]-N-PROPYLGLYCINE POTASSIUM SALT
CAS:
55910-10-6
MF:
C13H11F17KNO4S
Structure:
Chemical Name:
L-3,5-Dichlorophenylalanine
CAS:
13990-04-0
MF:
C9H9Cl2NO2
Structure:
Chemical Name:
L-Lysine Sulphate
MF:
C6H16N2O6S
Chemical Name:
N-(4-[2-(2-Amino-4,7-dihydro-4-oxo-1H-pyrrolo[2,3-d]pyrimidin-5-yl)ethyl]benzoyl)-L-Glutamic Acid Diethyl Ester P-Tluensulfonic Acid salt
Chemical Name:
N-Boc-N-methyl-Phe
Structure:
Chemical Name:
L-Proline, 4-hydroxy-, methyl ester, (4S)- (9CI)
CAS:
81102-38-7
MF:
C6H11NO3
Structure:
Chemical Name:
L-Proline, 4-hydroxy-1-methyl-, methyl ester, trans- (9CI)
CAS:
13135-69-8
MF:
C7H13NO3
Structure:
Chemical Name:
BOC-L-ALANINE-NCA
CAS:
125814-30-4
MF:
C9H13NO5
Structure:
Chemical Name:
3-Amino-5-bromobenzoic acid 98%
MF:
C7H6BrNO2
Chemical Name:
DJENKOLIC ACID, L-(P)
Structure:
Chemical Name:
2,3-Pyridinedicarboxylicacid,4-amino-,dimethylester(9CI)
CAS:
122475-56-3
MF:
C9H10N2O4
Structure:
Chemical Name:
CMDA
CAS:
122665-73-0
MF:
C17H23ClN2O8S
Structure:
Chemical Name:
4'-N,N-dimethylamino-1'-phenylazo-3-pyridine
CAS:
156-25-2
MF:
C13H14N4
Structure:
Chemical Name:
4-nitrophenyl glycinate
CAS:
17639-39-3
MF:
C8H8N2O4
Structure:
Chemical Name:
L-β-Homo-Tyr-OH.HCl
CAS:
615537-19-4
MF:
C10H13NO3
Structure:
Chemical Name:
N-[(3beta)-3-Hydroxy-28-oxoolean-12-en-28-yl]-glycine
CAS:
851475-58-6
MF:
C32H51NO4
Structure:
Chemical Name:
METHYL N-BENZOYL-4-HYDROXYPROLINATE
CAS:
31560-20-0
MF:
C13H15NO4
Structure:
Chemical Name:
L-TYROSINE, N-[(1,1-DIMETHYL ETHOXY) CARBONYL]-2,6
CAS:
137650-15-8
MF:
C17H25NO5
Structure:
Chemical Name:
(S)-Acetylamino-(4-fluoro-phenyl)-acetic acid
MF:
C10H10FNO3
Chemical Name:
COPPER AMINO ACID
Chemical Name:
MAGNESIUM AMINO ACID
Chemical Name:
β-hydroxynorleucine
MF:
C6H13NO3
Chemical Name:
EC 3.3.1.1
CAS:
9025-54-1
Structure:
Chemical Name:
TYR-D-ALA-GLY-PHE-MET ACOH H2O
CAS:
100929-62-2
MF:
C30H43N5O10S
Structure:
Chemical Name:
POLY-L-ASPARTIC ACID SODIUM SALT
CAS:
34345-47-6
MF:
C4H6NNaO4
Structure:
Chemical Name:
Fmoc-L-threonine monohydrate
CAS:
229957-49-7
MF:
C19H21NO6
Structure:
Chemical Name:
3-(3-Pyridyl)-DL-alanine
CAS:
105381-95-1
MF:
C8H10N2O2
Structure:
Chemical Name:
Chromium Glycine
MF:
C6H12CrN3O6
Chemical Name:
β,β-dimethylaspartic
Chemical Name:
β-methyl-β-hydroxyas
Structure:
Chemical Name:
Fmoc-(4-T-BUTOXYCARBONYLAMINO)-D-PHENYLALANINE
MF:
C29H30N2O6
Structure:
Chemical Name:
Boc-3-Bromo-DL-Phenylalanine
MF:
C14H18BrNO4
Structure:
Chemical Name:
N~2~-methylalaninamide(SALTDATA: FREE)
CAS:
32012-16-1
MF:
C4H10N2O
Structure:
Chemical Name:
N~1~,N~1~,N~3~-trimethyl-beta-alaninamide(SALTDATA: FREE)
CAS:
17268-50-7
MF:
C6H14N2O
Structure:
Chemical Name:
(S)-(+)-2-(2-Chlorophenyl)glycine Methyl Ester Tartrate
MF:
C13H16ClNO8
Structure:
Chemical Name:
N-Acetyl-L-Hydroxyproline
MF:
C7H11NO4
Structure:
Chemical Name:
2-(Trifluoromethyl)-D-proline
CAS:
921224-82-0
MF:
C6H8F3NO2
Structure:
Chemical Name:
trans-4-(1-NaphthylMethyl)-L-proline hydrochloride, 95%
MF:
C16H18ClNO2
Chemical Name:
2-Methyl-5-(trifluoroMethyl)-DL-phenylalanine, JRD, 97%
Structure:
Chemical Name:
trans-4-(4-BroMobenzyl)-L-proline hydrochloride, 95%
MF:
C12H15BrClNO2
Structure:
Chemical Name:
trans-4-(4-Chlorobenzyl)-L-proline hydrochloride, 95%
MF:
C12H15Cl2NO2
Structure:
Chemical Name:
4-Allyloxy-N-Boc-L-phenylalanine, 95%
CAS:
1175919-93-3
MF:
C17H23NO5
Structure:
Chemical Name:
trans-4-Benzyl-N-Boc-L-proline, 95%
MF:
C17H23NO4
Structure:
Chemical Name:
N-Boc-4-Methylene-L-proline Methyl Ester
CAS:
84348-39-0
MF:
C12H19NO4
Chemical Name:
N-Butadecanoyl-D-alanine sodiuM salt
Structure:
Chemical Name:
N-Butadecanoyl-D-valine
CAS:
14379-31-8
MF:
C19H37NO3
Structure:
Chemical Name:
N-Octadecanoyl-D-alanine sodiuM salt
MF:
C21H40NNaO3
Structure:
Chemical Name:
N-Octadecanoyl-D-valine
CAS:
14379-33-0
MF:
C23H45NO3
Structure:
Chemical Name:
L-HoMophenylalanine tert-Butyl Ester Hydrochloride
CAS:
130316-46-0
MF:
C14H22ClNO2