Статья

Papain-like cysteine proteinase zone (PCP-zone) and PCP structural catalytic core (PCP-SCC) of enzymes with cysteine proteinase fold

K. Denessiouk, V. Uversky, S. Permyakov, E. Permyakov, M. Johnson, A. Denesyuk,
2021

There are several families of cysteine proteinases with different folds – for example the (chymo)trypsin fold family and papain-like fold family – but in both families the hydrolase activity of cysteine proteinases requires a cysteine residue as the catalytic nucleophile. In this work, we have analyzed the topology of the active site regions in 146 three-dimensional structures of proteins belonging to the Papain-like Cysteine Proteinase (PCP) superfamily, which includes papain as a typical representative of this protein superfamily. All analyzed enzymes contain a unique structurally closed conformation – a “PCP-Zone” – which can be divided into two groups, Class A and Class B. Eight structurally conserved amino acids of the PCP-Zone form a common Structural Core. The Structural Core, catalytic nucleophile, catalytic base and residue Xaa – which stabilizes the side-chain conformation of the catalytic base – make up a PCP Structural Catalytic Core (PCP-SCC). The PCP-SCC of Class A and Class B are divided into 5 and 2 types, respectively. Seven variants of the mutual arrangement of the amino-acid side chains of the catalytic triad – nucleophile, base and residue Xaa – within the same fold clearly demonstrate how enzymes with the papain-like fold adapt to the need to perform diverse functions in spite of their limited structural diversity. The roles of both the PCP-Zone of SARS-CoV-2-PLpro described in this study and the NBCZone of SARS-CoV-2-3CLpro presented in our earlier article (Denesyuk AI, Johnson MS, Salo-Ahen OMH, Uversky VN, Denessiouk K. Int J Biol Macromol. 2020;153:399-411) that are in contacts with inhibitors are discussed. © 2020 Elsevier B.V.

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  • 1. Version of Record от 2021-04-27

Метаданные

Об авторах
  • K. Denessiouk
    Structural Bioinformatics Laboratory, Faculty of Science and Engineering, Biochemistry, Åbo Akademi University, Turku, 20520, Finland
  • V. Uversky
    Institute for Biological Instrumentation of the Russian Academy of Sciences, Federal Research Center “Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences”, Pushchino, 142290, Russian Federation
  • S. Permyakov
    Department of Molecular Medicine and USF Health Byrd Alzheimer's Research Institute, Morsani College of Medicine, University of South Florida, Tampa, FL 33612, United States
  • E. Permyakov
  • M. Johnson
  • A. Denesyuk
Название журнала
  • International Journal of Biological Macromolecules
Том
  • 165
Страницы
  • 1438-1446
Ключевые слова
  • adenain; ATG4B protein; cysteine proteinase; OTU1 protein; papain; papain like cysteine proteinase; papain like protease 2; protein glutamine gamma glutamyltransferase; ubiquitin carboxyl terminal esterase L3; ubiquitin thioesterase; unclassified drug; Venezuelan equine encephalitis virus protease; viral protein; papain; amino acid sequence; Article; enzyme active site; enzyme conformation; enzyme stability; human; molecular model; nonhuman; papain like cysteine proteinase zone; Protein Data Bank; protein family; protein folding; protein function; three-dimensional imaging; biocatalysis; chemistry; metabolism; Biocatalysis; Catalytic Domain; Models, Molecular; Papain
Издатель
  • Elsevier B.V.
Тип документа
  • journal article
Тип лицензии Creative Commons
  • CC
Правовой статус документа
  • Свободная лицензия
Источник
  • scopus