Leuhistin

Leuhistin

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Leuhistin
Category Enzyme inhibitors
Catalog number BBF-02651
CAS 129085-76-3
Molecular Weight 241.29
Molecular Formula C11H19N3O3
Purity 95%

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Description

It is produced by the strain of Bacillus laterosporus BMI 156-14F1. It inhibits aminopeptidase M with IC50 of 0.2 μg/mL. It has no antimicrobial effects (100 μg/mL).

Specification

Synonyms Leuhistine; (2R,3S)-2-((1H-imidazol-4-yl)methyl)-3-amino-2-hydroxy-5-methylhexanoic acid; 1H-Imidazole-4-propanoic acid, alpha-(1-amino-3-methylbutyl)-alpha-hydroxy-, (R-(R*,S*))-
Storage Store at -20°C
IUPAC Name (2R,3S)-3-amino-2-hydroxy-2-(1H-imidazol-5-ylmethyl)-5-methylhexanoic acid
Canonical SMILES CC(C)CC(C(CC1=CN=CN1)(C(=O)O)O)N
InChI InChI=1S/C11H19N3O3/c1-7(2)3-9(12)11(17,10(15)16)4-8-5-13-6-14-8/h5-7,9,17H,3-4,12H2,1-2H3,(H,13,14)(H,15,16)/t9-,11+/m0/s1
InChI Key WZFDNGAENBEYMA-GXSJLCMTSA-N

Properties

Appearance White to off-white solid
Boiling Point 533.8±50.0°C (Predicted)
Melting Point 180-183°C
Density 1.273±0.06 g/cm3 (Predicted)
Solubility Soluble in Methanol

Reference Reading

1. Effect of Aminopeptidase N on functions and fertility of mouse spermatozoa in vitro
Amena Khatun, Kyu-Ho Kang, Do-Yeal Ryu, Md Saidur Rahman, Woo-Sung Kwon, Myung-Geol Pang Theriogenology. 2018 Sep 15;118:182-189. doi: 10.1016/j.theriogenology.2018.06.005. Epub 2018 Jun 12.
Aminopeptidase N (APN) is defined as a multifunctional enzyme, which regulate cellular physiology of a wide variety of cells in human. Earlier studies reported that mammalian semen shares this common enzyme as a major protein of seminal plasma that has correlation with male fertility, while the regulatory mechanisms of APN in spermatozoa are still far from being well understood. Present study was designed to investigate the role of APN in biological and chemical functions of spermatozoa using an in vitro antagonistic approach. Results showed that lower APN activity in sperm culture medium significantly increased sperm motility and the percentage of high speed spermatozoa and decreased the percentage of slow speed spermatozoa after a dose dependent inhibitor treatment (10, 100, and 1000 μM leuhistin) on epididymal mouse spermatozoa in a capacitating media for 90 min. Both 100 μM and 1000 μM decreased APN activity, while only 1000 μM decreased cell viability and increased PKA activity significantly compared to control. Nonetheless capacitation status, acrosome reaction status, and lactate dehydrogenase activity were not affected. Intriguingly, the treatment affected embryonic development through decreasing tyrosine phosphorylation of proteins and increasing reactive oxygen species levels. Further in silico analysis revealed associated regulatory proteins, which have critical functional role for male fertility.
2. Reversal of angiotensin II-stimulated collagen gel contraction in cardiac fibroblasts by aminopeptidase inhibition
Paul J Lijnen, Victor V Petrov, G Diaz-Araya, Robert H Fagard J Cardiovasc Pharmacol. 2005 Jan;45(1):68-73. doi: 10.1097/00005344-200501000-00012.
The purpose of this investigation was to determine whether aminopeptidase inhibition could affect the angiotensin II-stimulated collagen gel contraction in basal (control) and TGF-beta1-treated cardiac fibroblasts (or myofibroblasts). The tested aminopeptidase inhibitors were the broad range aminopeptidase inhibitor bestatin, the specific inhibitor of alanine aminopeptidase leuhistin, and the specific inhibitor of arginine aminopeptidase arphamenine A. Cardiac fibroblasts (from normal male adult rats) from passage 2 were cultured to confluency and incubated with(out) 400 pmol/L TGF-beta1 in Dulbecco Modified Eagle Medium (DMEM) with 10% fetal bovine serum (FBS). These fibroblasts were then further incubated in a floating collagen gel lattice with the tested products (angiotensin II, bestatin, leuhistin, or arphamenine A) for 3 days in DMEM without FBS. The contraction of the collagen gel lattice by cardiac fibroblasts was determined by measuring the gel volume with tritiated water. Aminopeptidase activity was estimated by spectrophotometric determination of the liberation of p-nitroaniline from alanine- or arginine-p-nitroanilide. Angiotensin II (100 nmol/L) reduced the gel volume in control and TGF-beta1-treated cardiac fibroblasts. The angiotensin II-stimulated collagen gel contraction in control and TGF-beta1-treated fibroblasts was almost completely reversed by leuhistin and arphamenine A (100 micromol/L). Bestatin (100 micromol/L) only partially inhibited the angiotensin II-stimulated collagen gel contraction in control fibroblasts, although it did not affect the angiotensin II-induced contraction in TGF-beta1-treated fibroblasts. In control and TGF-beta1-treated cardiac fibroblasts, 100 micromol/L leuhistin or arphamenine A only partially inhibited alanine aminopeptidase activity, whereas bestatin (100 micromol/L) completely inhibited the alanine aminopeptidase activity. Arginine aminopeptidase activity was only partially inhibited by leuhistin and arphamenine A at 100 micromol/L in control and TGF-beta1-treated fibroblasts. Bestatin, however, completely blocked the arginine aminopeptidase activity in control fibroblasts and only partially in TGF-beta1-treated fibroblasts at 100 micromol/L. Our data suggest that both alanine and arginine aminopeptidases are involved in the reversal of the angiotensin II-stimulated collagen gel contraction in control and TGF-beta1-treated cardiac fibroblasts or myofibroblasts.
3. Control of APN/CD13 and NEP/CD10 on sperm motility
Nerea Subirán, Francisco M Pinto, Ekaitz Agirregoitia, Luz Candenas, Jon Irazusta Asian J Androl. 2010 Nov;12(6):899-902. doi: 10.1038/aja.2010.82. Epub 2010 Sep 20.
Aminopeptidase N (APN/CD13) and neutral endopeptidase (NEP/CD10) are enzymes present in human sperm cells and involved in regulation of sperm motility of noncapacitated spermatozoa. We investigated the involvement of APN/CD13 and NEP/CD10 in motility and in kinematic parameters of human capacitated spermatozoa. Sperm cells isolated by a discontinuous Percoll gradient (40%-80%) followed up by swim-up techniques were incubated with the APN/CD13-specific inhibitor, leuhistin (100 μmol L(-1)), and the NEP/CD10-specific inhibitor, thiorphan (1 μmol L(-1)). The complete inhibition of both APN/CD13 and NEP/CD10 improved sperm motility. Spermatozoa incubated with the APN/CD13-specific inhibitor leuhistin showed asymmetrical trajectories, whereas sperm trajectories were more regular after treatment with the NEP/CD10-specific inhibitor thiorphan. In conclusion, APN/CD13 and NEP/CD10 modulate the motility of capacitated spermatozoa, although each of the enzymes seems to participate in the control of different aspects of sperm motility. Therefore, both inhibitors may be useful for sperm activation at different functional stages of spermatozoa.

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