» Articles » PMID: 27490097

Combinatorial Solid-Phase Synthesis and Biological Evaluation of Cyclodepsipeptide Destruxin B As a Negative Regulator for Osteoclast Morphology

Overview
Journal ACS Comb Sci
Specialty Chemistry
Date 2016 Aug 5
PMID 27490097
Citations 2
Authors
Affiliations
Soon will be listed here.
Abstract

Combinatorial synthesis and biological evaluation of cyclodepsipeptide destruxin B have been achieved. The cyclization precursors were prepared by solid-phase peptide synthesis via a split and pool method utilizing SynPhase lanterns with colored tags and cogs, followed by cleavage from the polymer-support. Macrolactonization utilizing MNBA-DMAPO in solution-phase was successfully performed in parallel to afford the desired 64-member destruxin analogues in moderate to good yields. Biological evaluation of the synthesized analogues indicated that a MeAla residue for the building block A is required to induce the desired morphological changes in osteoclast-like multinuclear cells (OCLs), and introduction of the substituent at the R(4) position of a proline moiety is tolerated by the morphology and may enable the preparation of a molecular probe for the target identification in the osteoclasts.

Citing Articles

Anti-inflammatory effects of peptides from a marine algicolous fungus Acremonium sp. NTU492 in BV-2 microglial cells.

Hsiao G, Wang S, Chiang Y, Chi W, Kuo Y, Phong D J Food Drug Anal. 2022; 28(2):283-291.

PMID: 35696114 PMC: 9261861. DOI: 10.38212/2224-6614.1062.


Efficient Chemoenzymatic Synthesis of (2,3)-3-Hydroxy-3-Methylproline, a Key Fragment in Polyoxypeptin A and FR225659.

Zhang X, Renata H Tetrahedron. 2019; 75(24):3253-3257.

PMID: 31885405 PMC: 6934255. DOI: 10.1016/j.tet.2019.04.009.