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Search for "pseudo-peptides" in Full Text gives 4 result(s) in Beilstein Journal of Organic Chemistry.

A dynamic combinatorial library for biomimetic recognition of dipeptides in water

  • Florian Klepel and
  • Bart Jan Ravoo

Beilstein J. Org. Chem. 2020, 16, 1588–1595, doi:10.3762/bjoc.16.131

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  • exchange being one of the most prominent reactions [11][12][13][14]. Notably, while (pseudo)peptides are a common motif for DCL building blocks [7][11][15][16] very few DCLs use peptide templates. Still et al. showed early on that peptide receptors emerging from DCLs are possible. They screened for a
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Published 02 Jul 2020

Sugar-derived oxazolone pseudotetrapeptide as γ-turn inducer and anion-selective transporter

  • Sachin S. Burade,
  • Sushil V. Pawar,
  • Tanmoy Saha,
  • Navanath Kumbhar,
  • Amol S. Kotmale,
  • Manzoor Ahmad,
  • Pinaki Talukdar and
  • Dilip D. Dhavale

Beilstein J. Org. Chem. 2019, 15, 2419–2427, doi:10.3762/bjoc.15.234

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  • transporter for which an anion–anion antiport mechanism was established. Keywords: ion transport; oxazolone; peptidomimetics; pseudo-peptides; sugar amino acid; Introduction Tetrasubstituted α-amino acid (TAA)-derived peptidomimetics offer well-defined turn structures due to the presence of a
  • , we obtained an oxazolone ring containing pseudo peptides 1 and 2a, respectively (Figure 1) The NMR studies of pseudotetrapeptide 2a indicated a γ-turn conformation stabilized by the intramolecular hydrogen bonding [(II)NH···O=C] in a seven-membered ring. The oxazolone pseudotetrapeptide 2a
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Published 14 Oct 2019

Ugi reaction-derived prolyl peptide catalysts grafted on the renewable polymer polyfurfuryl alcohol for applications in heterogeneous enamine catalysis

  • Alexander F. de la Torre,
  • Gabriel S. Scatena,
  • Oscar Valdés,
  • Daniel G. Rivera and
  • Márcio W. Paixão

Beilstein J. Org. Chem. 2019, 15, 1210–1216, doi:10.3762/bjoc.15.118

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  • synthesis of prolyl pseudo-peptides having a furan ring handle, which could be subsequently incorporated into PFA during the polymerization process. Results and Discussion To this end, a solution-phase multicomponent procedure based on the Ugi four-component reaction (Ugi-4CR) [14], was employed to
  • (50 mL), and brine (50 mL), and then dried over anhydrous Na2SO4 and concentrated under reduced pressure. General procedure B. The prolyl pseudo-peptides catalyst was dissolved in 3 mL of CH2Cl2 and treated with 1 mL of trifluoroacetic acid at 0 °C. The reaction mixture was allowed to reach room
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Published 04 Jun 2019

Synthesis of a novel category of pseudo-peptides using an Ugi three-component reaction of levulinic acid as bifunctional substrate, amines, and amino acid-based isocyanides

  • Maryam Khalesi,
  • Azim Ziyaei Halimehjani and
  • Jürgen Martens

Beilstein J. Org. Chem. 2019, 15, 852–857, doi:10.3762/bjoc.15.82

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  • synthesis of a novel category of pseudo-peptides via intramolecular Ugi reaction of levulinic acid (4-oxopentanoic acid), aromatic and aliphatic amines, and amino acid-based isocyanides is reported. Levulinic acid was applied as a bifunctional substrate containing both carbonyl and acid moieties suitable
  • ; multicomponent; pseudo-peptides; Ugi reaction; Introduction The multistep synthesis of complex molecules normally requires a large number of repetitive synthetic operations, such as extraction, separation, chromatography and other purification steps. These disadvantages encouraged chemists to synthesize complex
  • post-multicomponent reactions, diversities of bicyclic drug-like heterocyclic compounds can be obtained [26]. Results and Discussion In continuation of our interest on the synthesis of novel pseudo-peptides [27][28][29] via multicomponent reactions, herein we investigate the Ugi-4C-3CR of levulinic
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Published 04 Apr 2019
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