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Books and chapters

Baseggio Conrado, A.; Capuozzo, E.; Mosca, L.; Francioso, A.; Fontana, M.; Thiotaurine: From Chemical and Biological Properties to Role in H2S Signaling Hu, J., et al., eds. Adv. Exp. Med. Biol. 1155 755-771 (2019) ISBN:978-981-13-8023-5 DOI: 10.1007/978-981-13-8023-5_66
  • Abstract
  • BibText
  • RIS

In the last decade thiotaurine, 2-aminoethane thiosulfonate, has been investigated as an inflammatory modulating agent as a result of its ability to release hydrogen sulfide (H2S) known to play regulatory roles in inflammation. Thiotaurine can be included in the “taurine family” due to structural similarity to taurine and hypotaurine, and is characterized by the presence of a sulfane sulfur moiety. Thiotaurine can be produced by different pathways, such as the spontaneous transsulfuration between thiocysteine – a persulfide analogue of cysteine – and hypotaurine as well as in vivo from cystine. Moreover, the enzymatic oxidation of cysteamine to hypotaurine and thiotaurine in the presence of inorganic sulfur can occur in animal tissues and last but not least thiotaurine can be generated by the transfer of sulfur from mercaptopyruvate to hypotaurine catalyzed by a sulfurtransferase. Thiotaurine is an effective antioxidant agent as demonstrated by its ability to counteract the damage caused by pro-oxidants in the rat. Recently, we observed the influence of thiotaurine on human neutrophils functional responses. In particular, thiotaurine has been found to prevent human neutrophil spontaneous apoptosis suggesting an alternative or additional role to its antioxidant activity. It is likely that the sulfane sulfur of thiotaurine may modulate neutrophil activation via persulfidation of target proteins. In conclusion, thiotaurine can represent a biologically relevant sulfur donor acting as a biological intermediate in the transport, storage and release of sulfide.

Publications

Puentes, A. R.; Neves Filho, R. A. W.; Rivera, D. G.; Wessjohann, L. A.; Total Synthesis of Cordyheptapeptide A Synlett 28 1971-1974 (2017) DOI: 10.1055/s-0036-1588433
  • Abstract
  • BibText
  • RIS

The first total synthesis of cordyheptapeptide A is described. The synthesis is accomplished by a convergent approach featuring a combination of peptide coupling and the Ugi reaction for the preparation of the main building blocks and the acyclic precursor. The assembly of an N-methylated fragment by the Ugi reaction comprised the utilization of a convertible isonitrile followed by activation of the C-terminal amide. Two different macrocyclization sites were evaluated, proving greater efficacy the macrolactamization at the site Ile-Tyr, likely due of a more suitable conformational bias of the acyclic precursor having an internal β-turn centered at the N-Me-d-Phe-Pro moiety.

Books and chapters

Wessjohann, L. A.; Ostrowski, S.; Bakulev, V.; Berseneva, V.; Bogdanov, A. V.; Romanova, I. P.; Mironov, V. F.; Larionova, O. A.; Shaikhutdinova, G. R.; Sinyashin, O. G.; Baibulatova, N. Z.; Dokichev, V. A.; Fedorova, O. V.; Ovchinnikova, I. G.; Rusinov, G. L.; Titova, J. A.; Nasonova, A.; Kim, D.-J.; Kim, K.-S.; Jang, Y. M.; Kim, S. J.; Rakhimova, E. B.; Minnebaev, A. B.; Akhmetova, V. R.; Qin, C.; Zhang, R.; Wang, Q.; Ren, J.; Tian, L.; Mironov, M. A.; Demina, T. S.; Tcoy, A. M.; Akopova, T. A.; Markvicheva, E. A.; Chernyshenko, A. O.; Zelenetski, A. N.; Pandit, S. S.; Multi-Component Reactions in Supramolecular Chemistry and Material Science Mironov, M. A., ed. Adv. Exp. Med. Biol. 699 173-201 (2011) ISBN:978-1-4419-7270-5 DOI: 10.1007/978-1-4419-7270-5_6
  • Abstract
  • BibText
  • RIS

Multi-component reactions of building blocks with more than one MCR-reactive group will give rise to oligomeric MCR products. The proper choice of at least two bifunctional building blocks will give either a polymeric or a cyclic product. Apart from polymerization, repetitive or consecutive Ugi reactions have been used to produce linear MCR-heterooligomers with such building blocks.

Publications

Ayaz, M.; Westermann, B.; Enantioenriched Naphthoquinone Mannich Bases by Organocatalyzed Nucleophilic Additions to in situ Formed Imines Synlett 2010 1489-1492 (2010) DOI: 10.1055/s-0029-1219946
  • Abstract
  • BibText
  • RIS

Organocatalytic nucleophilic addition of 2-hydroxylnaphthaquinone to imines is reported. This new route can be used to produce enantioenriched Mannich bases with excellent yields and moderate enantioselectivities.

Books and chapters

Frolov, A.; Singer, D.; Zauner, T.; Hoffmann, R.; Solid Phase Synthesis and Analysis of Amadori Peptides Adv. Exp. Med. Biol. 611 423-424 (2009) ISBN:978-0-387-73657-0 DOI: 10.1007/978-0-387-73657-0_182
  • BibText
  • RIS

0

Publications

Rivera, D.; Vercillo, O.; Wessjohann, L.; Combinatorial Synthesis of Macrocycles by Multiple Multicomponent Macrocyclization Including Bifunctional Building Blocks (MiB) Synlett 2007 0308-0312 (2007) DOI: 10.1055/s-2007-968006
  • Abstract
  • BibText
  • RIS

Small libraries of peptoid-based macro(multi)cycles were produced by applying combinatorial principles to the MiB methodology. This combinatorial approach features the incorporation of varied building blocks into the resulting macrocycles by mixing all the components in the same reaction pot. Both skeletal and appendage diversity could be generated in one shot due to the multicomponent nature of the system. HPLC and ESI-MS analyses showed a well-distributed composition of the libraries and revealed the presence of all possible macrocycles resulting from the different combinations of building blocks, especially of members with differentially substituted bridges not available by any other one-pot ­approach.

Publications

Braga, A.; Paixao, M.; Westermann, B.; Schneider, P.; Wessjohann, L.; Aziridine-Modified Amino Alcohols as Efficient Modular Catalysts for Highly Enantioselective Alkenylzinc Additions to Aldehydes Synlett 2007 0917-0920 (2007) DOI: 10.1055/s-2007-973879
  • Abstract
  • BibText
  • RIS

N-Tritylaziridino alcohols have been easily synthesized in a straightforward synthetic route from an inexpensive and easily available chiral pool. They were used in the enantioselective alkenylzinc additions to aldehydes furnishing the products in excellent yields and stereoselectivities up to 97%.

Publications

Wessjohann, L.; Schmidt, G.; Schrekker, H.; The Chromium(II)-Mediated Coupling of Secondary Alkylhalides with Aromatic Aldehydes Synlett 2007 2139-2141 (2007) DOI: 10.1055/s-2007-984887
  • Abstract
  • BibText
  • RIS

The scope of chromium(II)-mediated Takai-Utimoto ­reactions was extended to previously unconvertable secondary alkylhalides. Optimization allowed yields of up to over 95%.

Publications

Kreye, O.; Westermann, B.; Wessjohann, L.; A Stable, Convertible Isonitrile as a Formic Acid Carbanion [-COOH] Equivalent and Its Application in Multicomponent Reactions Synlett 2007 3188-3192 (2007) DOI: 10.1055/s-2007-990912
  • Abstract
  • BibText
  • RIS

The application of 2-(2,2-dimethoxyethyl) phenyl iso­nitrile in Ugi, Passerini, and Ugi-Smiles reactions is described. The simple transformation to highly activated indolyl amides allows functional-group conversion of the isonitrile moiety into a variety of carboxylic acid derivatives, overall acting as a neutral, nucleophilic COOH equivalent.

Publications

Abbas, M.; Neuhaus, C.; Krebs, B.; Westermann, B.; Catalytic Addition of Homoenolates to Imines - The Homo-Mannich Reaction Synlett 2005 473-476 (2005) DOI: 10.1055/s-2005-862378
  • Abstract
  • BibText
  • RIS

For the first time, homo-Mannich reactions with unmasked homoenolates have been achieved by adding homoenolate precursor 1 and imines 5. The key to this reaction is the right choice of the Lewis acids - Cu(OTf)2 proved to be most suitable for preparing the homoenolate and activation of the imine. An asymmetric catalytic version of this reaction is provided by using chiral, non-­racemic phenyl-derived bisoxazolidine as ligand for the Lewis acid.

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