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H-His-Trp-OH

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H-His-Trp-OH
Category Others
Catalog number BBF-05082
CAS 23403-90-9
Molecular Weight 341.36
Molecular Formula C17H19N5O3

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Capabilities & Facilities

Fermentation Lab

4 R&D and scale-up labs

2 Preparative purification labs

Fermentation Plant

Semi pilot, pilot and industrial plant 4 Manufacturing sites 7 Production lines at pilot scale 100+ Reactors of 30-4000 L; 170+ reactors of 20 KL-30 KL; 24+ reactors of >100 KL 2 Hydrogenation reactors (200 L, 4Mpa and 1000L, 4Mpa)

Product Description

The dipeptide Trp-His inhibits the development of atherosclerosis onsets in ApoE -/- mice.

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Synonyms His-Trp; L-histidyl-L-tryptophan; Histidinyl-Tryptophan; HW dipeptide; Histidine Tryptophan dipeptide
Sequence H-His-Trp-OH
Storage Store at -20°C
IUPAC Name (2S)-2-[[(2S)-2-amino-3-(1H-imidazol-5-yl)propanoyl]amino]-3-(1H-indol-3-yl)propanoic acid
Canonical SMILES C1=CC=C2C(=C1)C(=CN2)CC(C(=O)O)NC(=O)C(CC3=CN=CN3)N
InChI InChI=1S/C17H19N5O3/c18-13(6-11-8-19-9-21-11)16(23)22-15(17(24)25)5-10-7-20-14-4-2-1-3-12(10)14/h1-4,7-9,13,15,20H,5-6,18H2,(H,19,21)(H,22,23)(H,24,25)/t13-,15-/m0/s1
InChI Key FBTYOQIYBULKEH-ZFWWWQNUSA-N
1. Thermal perturbation spectrophotometry of luliberin and model His-Trp peptides
J Bello, H R Bello, S Aimoto Int J Pept Protein Res. 1981 Apr;17(4):460-8. doi: 10.1111/j.1399-3011.1981.tb02015.x.
Thermal perturbation (TP) spectra of luliberin were measured at pH 5-8, and compared with the model chromophores N-Ac-Tyr-NH2, N-Ac-Trp-NH2, t-Boc-His-Trp-NH2, H-His-Trp-OH, Ac-His-Trp-OH, tryptophan and cyclo-[His-Trp] (all L-isomers). Between pH 5 and neutrality, the major TP extremum of the Trp3 residue of luliberin increases by about 50%. A similar effect is seen for luliberin acetylated on Tyr5. The effect with luliberin is attributed to the protonation of the His2 residue. One proposed explanation is that the protonated imidazole orients water around the nearby indole in a different way than does unprotonated imidazole. The Tyr5 residue of luliberin behaves like N-Ac-Tyr-NH2, and is considered to be well exposed to solvent. The TP spectra of N-Ac-Trp-NH2, t-Boc-His-Trp-NH2, Ac-His-Trp-OH, and cyclo-[His-Trp] are pH-independent from pH 5 to 8. The TP spectrum of H-His-Trp-NH2 has a bell-shaped pH dependence, rising from normal at pH 3.5 to above normal at pH 6, and returning to normal at pH 8. Luliberin and model peptides show that fluorescence and TP spectra of His-Trp sequences can respond differently to pH.

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