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Total synthesis and anti-hepatitis C virus activity of MA026. | LitMetric

AI Article Synopsis

  • - The study describes the first successful total synthesis of MA026, a unique lipocyclodepsipeptide found in Pseudomonas sp. RtIB026, and identifies its potential target protein for combating hepatitis C virus (HCV).
  • - MA026 is composed of a cyclodepsipeptide, chain peptide, and N-terminal (R)-3-hydroxydecanoic acid, with its synthesis involving intricate steps like calorie coupling and macrocyclization to create its active form.
  • - Testing in HCV cell cultures shows that MA026 effectively reduces HCV infection by interfering with the virus's entry into liver cells, and further analysis identified claudin-1 as its specific target.

Article Abstract

The first total synthesis of MA026 and the identification of its candidate target protein for anti-hepatitis C virus activity are presented. MA026, a novel lipocyclodepsipeptide isolated from the fermentation broth of Pseudomonas sp. RtIB026, consists of a cyclodepsipeptide, a chain peptide, and an N-terminal (R)-3-hydroxydecanoic acid. The first subunit, side chain 2, was prepared by coupling fatty acid moiety 4 with tripeptide 5. The key macrocyclization of the decadepsipeptide at L-Leu(10)-D-Gln(11) provided the second subunit, cyclodepsipeptide 3. Late-stage condensation of the two key subunits and final deprotection afforded MA026. This convergent, flexible, solution-phase synthesis will be invaluable in generating MA026 derivatives for future structure-activity relationship studies. An infectious hepatitis C virus (HCV) cell culture assay revealed that MA026 suppresses HCV infection into host hepatocytes by inhibiting the entry process in a dose-dependent manner. Phage display screening followed by surface plasmon resonance (SPR) binding analyses identified claudin-1, an HCV entry receptor, as a candidate target protein of MA026.

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Source
http://dx.doi.org/10.1021/ja410145xDOI Listing

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