Literature DB >> 27658010

Synthesis of complex head-to-side-chain cyclodepsipeptides.

Marta Pelay-Gimeno1, Fernando Albericio1,2,3, Judit Tulla-Puche1.   

Abstract

Cyclodepsipeptides are cyclic peptides in which at least one amide link on the backbone is replaced with an ester link. These natural products present a high structural diversity that corresponds to a broad range of biological activities. Therefore, they are very promising pharmaceutical candidates. Most of the cyclodepsipeptides have been isolated from marine organisms, but they can also originate from terrestrial sources. Within the family of cyclodepsipeptides, 'head-to-side-chain' cyclodepsipeptides have, in addition to the macrocyclic core closed by the ester bond, an arm terminated with a polyketide moiety or a branched amino acid, which makes their synthesis a challenge. This protocol provides guidelines for the synthesis of 'head-to-side-chain cyclodepsipeptides' and includes-as an example-a detailed procedure for preparing pipecolidepsin A. Pipecolidepsin was chosen because it is a very complex 'head-to-side-chain cyclodepsipeptide' of marine origin that shows cytotoxicity in several human cancer cell lines. The procedure begins with the synthesis of the noncommercial protected amino acids (2R,3R,4R)-2-{[(9H-fluoren-9-yl)methoxy]carbonylamino}-3-hydroxy-4,5-dimethylhexanoic acid (Fmoc-AHDMHA-OH), Alloc-pipecolic-OH, (4R,5R)-5-((((9H-fluoren-9-yl)methoxy)carbonylamino)-4-oxo-4-(tritylamino)butyl)-2,2-dimethyl-1,3-dioxolane-4-carboxylic acid (Fmoc-DADHOHA(acetonide, Trt))-OH and the pseudodipeptide (2R,3R,4R)-3-hydroxy-2,4,6-trimethylheptanoic acid ((HTMHA)-D-Asp(OtBu)-OH). It details the assembly of the depsipeptidic skeleton using a fully solid-phase approach (typically on an amino polystyrene resin coupled to 3-(4-hydroxymethylphenoxy)propionic acid (AB linker)), including the key ester formation step. It concludes by describing the macrocyclization step performed on solid phase, and the global deprotection and cleavage of the cyclodepsipeptide from the resin using a trifluoroacetic acid-H2O-triisopropylsilane (TFA-H2O-TIS; 95:2.5:2.5) cocktail, as well as the final purification by semipreparative HPLC. The entire procedure takes ∼2 months to complete.

Entities:  

Year:  2016        PMID: 27658010     DOI: 10.1038/nprot.2016.116

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   13.491


  56 in total

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3.  Protection by conformationally restricted mobility: first solid-phase synthesis of triostin A.

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4.  Enzyme-labile protecting groups for the synthesis of natural products: solid-phase synthesis of thiocoraline.

Authors:  Judit Tulla-Puche; Miriam Góngora-Benítez; Núria Bayó-Puxan; Andrés M Francesch; Carmen Cuevas; Fernando Albericio
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Review 5.  Chemistry and biology of kahalalides.

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Authors:  Tillmann Michels; Rudolf Dölling; Uwe Haberkorn; Walter Mier
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7.  Improved solid-phase peptide synthesis method utilizing alpha-azide-protected amino acids.

Authors:  J T Lundquist ; J C Pelletier
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8.  Solid-phase total synthesis and structure proof of callipeltin B.

Authors:  Ravi Krishnamoorthy; Leslie D Vazquez-Serrano; Jeffrey A Turk; Jennifer A Kowalski; Alan G Benson; Nneka T Breaux; Mark A Lipton
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Review 9.  Cyclic depsipeptides as potential cancer therapeutics.

Authors:  Jirouta Kitagaki; Genbin Shi; Shizuka Miyauchi; Shinya Murakami; Yili Yang
Journal:  Anticancer Drugs       Date:  2015-03       Impact factor: 2.248

Review 10.  Cyclodepsipeptides: a rich source of biologically active compounds for drug research.

Authors:  Sivatharushan Sivanathan; Jürgen Scherkenbeck
Journal:  Molecules       Date:  2014-08-15       Impact factor: 4.411

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2.  A glutamic acid-based traceless linker to address challenging chemical protein syntheses.

Authors:  Riley J Giesler; Paul Spaltenstein; Michael T Jacobsen; Weiliang Xu; Mercedes Maqueda; Michael S Kay
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3.  Computational peptidology approach to the study of the chemical reactivity and bioactivity properties of Aspergillipeptide D, a cyclopentapeptide of marine origin.

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4.  Computational Pharmacokinetics Report, ADMET Study and Conceptual DFT-Based Estimation of the Chemical Reactivity Properties of Marine Cyclopeptides.

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Journal:  ChemistryOpen       Date:  2021-11       Impact factor: 2.911

  4 in total

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