Hydrolysis of the amide bond in methionine-containing peptides catalyzed by various palladium(II) complexes: Dependence of the hydrolysis rate on the steric bulk of the catalyst
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Molecular Biology,Biochemistry
Reference32 articles.
1. Complex formation between palladium(II) and amino acids, peptides and related ligands
2. Donor atom preferences in complexes of platinum and palladium with amino acids and related molecules
3. Amino Acid and Peptide Complexes of the Platinum Group Metals
4. Studies on the interaction of histidyl containing peptides with palladium(II) and platinum(II) complex ions
5. Selective hydrolysis of unactivated peptide bonds, promoted by platinum(II) complexes anchored to amino acid side chains
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1. Dinuclear platinum(II) complexes with 1,5-nphe bridging ligand: Spectroscopic and molecular docking study of the interactions with N-acetylated L-methionylglycine and human serum albumin;Journal of Molecular Structure;2023-09
2. Hydrolysis of the Amide Bond in L-Methionine- and L-Histidine-Containing Dipeptides in the Presence of Dinuclear Palladium(II) Complexes with Benzodiazines Bridging Ligands;Journal of Solution Chemistry;2020-08
3. Structures and esterolytic reactivity of novel binuclear copper(ii) complexes with reduced l-serine Schiff bases as mimic carboxylesterases;Dalton Transactions;2020
4. Hydrolysis of the amide bond in histidine- and methionine-containing dipeptides promoted by pyrazine and pyridazine palladium(II)-aqua dimers: Comparative study with platinum(II) analogues;Bioorganic Chemistry;2017-06
5. Remarkable reactivity of alkoxide/acetato-bridged binuclear copper(II) complex as artificial carboxylesterase;JBIC Journal of Biological Inorganic Chemistry;2017-03-31
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