scholarly journals Site-Selective Palladium-Catalyzed Oxidation of Glucose in Glycopeptides

Author(s):  
Niels R.M. Reintjens ◽  
Liubov Yakovlieva ◽  
Nittert Marinus ◽  
Johan Hekelaar ◽  
Francesca Nuti ◽  
...  

<p>Here we report a novel method of site-selective oxidation of glucose moieties on individual glycopeptides and on a mixture of tryptic glycopeptides. The organometallic catalyst [(neocuproine)PdOAc]<sub>2</sub>OTf<sub>2</sub>, that was previously shown to perform regioselective C3-oxidation of glucosides, was used in the scope of this work. The selectivity of the catalyst towards glucose and the sensitivity of specific amino acid residues to oxidation was explored by screening a select panel of glycopeptides in the oxidation reactions. We reveal that glucosylated peptides are more readily oxidized compared to galactosylated peptides, and Thr/Ser-oxidation is a concomitant side-reaction. The oxidation methodology was also applied to the complex mixture of tryptic glucopeptides that was generated from the fragment of <i>Haemophilus influenzae</i> adhesin glycoprotein. The resulting keto-group of the glucose was further transformed into an oxime functionality, which allows introduction of various groups of interest. The methodology outlined in this work will allow to perfrom late-stage modification of glucopeptides as well as selective oxidation and functionalization of tryptic glucopeptides for proteomics analysis. </p>

2021 ◽  
Author(s):  
Niels R.M. Reintjens ◽  
Liubov Yakovlieva ◽  
Nittert Marinus ◽  
Johan Hekelaar ◽  
Francesca Nuti ◽  
...  

<p>Here we report a novel method of site-selective oxidation of glucose moieties on individual glycopeptides and on a mixture of tryptic glycopeptides. The organometallic catalyst [(neocuproine)PdOAc]<sub>2</sub>OTf<sub>2</sub>, that was previously shown to perform regioselective C3-oxidation of glucosides, was used in the scope of this work. The selectivity of the catalyst towards glucose and the sensitivity of specific amino acid residues to oxidation was explored by screening a select panel of glycopeptides in the oxidation reactions. We reveal that glucosylated peptides are more readily oxidized compared to galactosylated peptides, and Thr/Ser-oxidation is a concomitant side-reaction. The oxidation methodology was also applied to the complex mixture of tryptic glucopeptides that was generated from the fragment of <i>Haemophilus influenzae</i> adhesin glycoprotein. The resulting keto-group of the glucose was further transformed into an oxime functionality, which allows introduction of various groups of interest. The methodology outlined in this work will allow to perfrom late-stage modification of glucopeptides as well as selective oxidation and functionalization of tryptic glucopeptides for proteomics analysis. </p>


RSC Advances ◽  
2016 ◽  
Vol 6 (61) ◽  
pp. 56458-56466 ◽  
Author(s):  
Arash Ghorbani-Choghamarani ◽  
Parisa Moradi ◽  
Bahman Tahmasbi

An efficient heterogenized nickel catalyst on boehmite nanoparticles was synthesized and characterized. The catalytic activity of this organometallic catalyst was examined in the selective oxidation of sulfides and oxidative coupling of thiols.


2017 ◽  
Author(s):  
Haibo Ge ◽  
Lei Pan ◽  
Piaoping Tang ◽  
Ke Yang ◽  
Mian Wang ◽  
...  

Transition metal-catalyzed selective C–H bond functionalization enabled by transient ligands has become an extremely attractive topic due to its economical and greener characteristics. However, catalytic pathways of this reaction process on unactivated sp<sup>3</sup> carbons of reactants have not been well studied yet. Herein, detailed mechanistic investigation on Pd-catalyzed C(sp<sup>3</sup>)–H bond activation with amino acids as transient ligands has been systematically conducted. The theoretical calculations showed that higher angle distortion of C(sp2)-H bond over C(sp3)-H bond and stronger nucleophilicity of benzylic anion over its aromatic counterpart, leading to higher reactivity of corresponding C(sp<sup>3</sup>)–H bonds; the angle strain of the directing rings of key intermediates determines the site-selectivity of aliphatic ketone substrates; replacement of glycine with β-alanine as the transient ligand can decrease the angle tension of the directing rings. Synthetic experiments have confirmed that β-alanine is indeed a more efficient transient ligand for arylation of β-secondary carbons of linear aliphatic ketones than its glycine counterpart.<br><br>


ChemInform ◽  
2012 ◽  
Vol 43 (15) ◽  
pp. no-no
Author(s):  
Robert Schloegl ◽  
Christian Hess

Author(s):  
Lejian Zhang ◽  
Xiaoxiao Zhu ◽  
Xinping Wang ◽  
Chuan Shi

Anatase-free titanium silicalite-1 (TS-1) zeolite with high framework titanium content is highly required for catalysing selective oxidation reactions, while its synthesis generally suffers from cost, efficiency and environmental issues. Herein,...


Molecules ◽  
2013 ◽  
Vol 18 (11) ◽  
pp. 13754-13768 ◽  
Author(s):  
Maria Amato ◽  
Francesco Ballistreri ◽  
Andrea Pappalardo ◽  
Gaetano Tomaselli ◽  
Rosa Toscano ◽  
...  

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