150212-97-8Relevant academic research and scientific papers
Total synthesis and anti-hepatitis C virus activity of MA026
Shimura, Satomi,Ishima, Masahiro,Nakajima, Syo,Fujii, Toshitaka,Himeno, Natsumi,Ikeda, Kentaro,Izaguirre-Carbonell, Jesus,Murata, Hiroshi,Takeuchi, Toshifumi,Kamisuki, Shinji,Suzuki, Takahiro,Kuramochi, Kouji,Watashi, Koichi,Kobayashi, Susumu,Sugawara, Fumio
, p. 18949 - 18956 (2013)
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-Leu10-d-Gln11 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.
A multicomponent macrocyclization strategy to natural product-like cyclic lipopeptides: Synthesis and anticancer evaluation of surfactin and mycosubtilin analogues
Morejón, Micjel C.,Laub, Annegret,Kaluderovi?, Goran N.,Puentes, Alfredo R.,Hmedat, Ali N.,Otero-González, Anselmo J.,Rivera, Daniel G.,Wessjohann, Ludger A.
supporting information, p. 3628 - 3637 (2017/07/07)
A multicomponent macrocyclization strategy towards cyclic lipopeptides is described. The approach relies on the utilization of the Ugi and Passerini multicomponent reactions for the cyclization of peptides and oxo-peptides, and here it is employed for the construction of a small library of analogues of the natural products mycosubtilin and surfactin A. A key feature of this method is the simultaneous incorporation of either one or two exocyclic lipid tails along with the macrocyclic ring closure, which is only possible due to the multicomponent nature of the macrocyclization step. The evaluation of the anticancer activity of the lipopeptide library showed that the installation of a second lipid moiety in the surfactin scaffold leads to a more potent cytotoxicity in cancer cells. This is a new example of the multicomponent reaction potential in rapidly producing natural product analogues for biological screening.
From peptides to their alternating ester-urea analogues: Synthesis and influence of hydrogen bonding motif and stereochemistry on aggregation
Hartwig, Sebastian,Schwarz, Jutta,Hecht, Stefan
supporting information; experimental part, p. 772 - 782 (2010/07/05)
(Chemical Equation Presented) Peptide-mimicking scaffolds with an incorporated ester-urea motif, replacing two adjacent amide residues, were synthesized and their aggregation behavior was studied in dependence of hydrogen bonding sites as well as backbone stereochemistry. Two oligomer series containing either 50% or 100% ester-urea units and either all-(L) or (D)-alt-(L) backbone configuration were prepared via ester and amide couplings, using a divergent/convergent exponential growth strategy. Their aggregation behavior in organic solution was investigated by means of concentration-dependent NMR spectroscopy and compared to the parent peptide series. Interestingly, the naturally occurring peptide scaffold exhibits the largest tendency to associate in combination with the strongest difference in aggregation behavior between all-(L) and (D)-alt-(L) backbone stereochemistry. With increasing incorporation of the ester-urea motif the aggregation strength decreases and become much less dependent on the backbone configuration. The obtained structure-aggregation relationships reveal the importance of the commensurability and multivalency of hydrogen bonding sites as well as conformational restriction for peptide association and should hence aid the design of peptide mimics, such as β -sheet breakers or gelators. 2009 American Chemical Society.
