Literature DB >> 23969025

ITPA (inosine triphosphate pyrophosphatase): from surveillance of nucleotide pools to human disease and pharmacogenetics.

Peter D Simone1, Youri I Pavlov2, Gloria E O Borgstahl3.   

Abstract

Cellular nucleotide pools are often contaminated by base analog nucleotides which interfere with a plethora of biological reactions, from DNA and RNA synthesis to cellular signaling. An evolutionarily conserved inosine triphosphate pyrophosphatase (ITPA) removes the non-canonical purine (d)NTPs inosine triphosphate and xanthosine triphosphate by hydrolyzing them into their monophosphate form and pyrophosphate. Mutations in the ITPA orthologs in model organisms lead to genetic instability and, in mice, to severe developmental anomalies. In humans there is genetic polymorphism in ITPA. One allele leads to a proline to threonine substitution at amino acid 32 and causes varying degrees of ITPA deficiency in tissues and plays a role in patients' response to drugs. Structural analysis of this mutant protein reveals that the protein is destabilized by the formation of a cavity in its hydrophobic core. The Pro32Thr allele is thought to cause the observed dominant negative effect because the resulting active enzyme monomer targets both homo- and heterodimers to degradation.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Base analogs; DSB; Dominant negative; HAM1; HAP; HGPRT; ITP; ITPA; ITPA gene polymorphism; MEF; Mercaptopurines; NUDT16; Nucleotide pool; Pharmacogenetics; Protein stability; SSB; Saccharomyces cerevisiae; TPMT; XTP; base analog 6-hydroxylaminopurine; double-strand break; homolog RdgB E. coli ITPA homolog (Rec-dependent growth B); hypoxanthine-guanine phosphoribosyltransferase; inosine triphosphate; inosine triphosphate pyrophosphatase; mouse embryonic fibroblasts; nudix (nucleoside diphosphate linked moiety X)-type motif 16; single-strand break; thiopurine S-methyltransferase; xanthosine triphosphate

Mesh:

Substances:

Year:  2013        PMID: 23969025      PMCID: PMC3827912          DOI: 10.1016/j.mrrev.2013.08.001

Source DB:  PubMed          Journal:  Mutat Res        ISSN: 0027-5107            Impact factor:   2.433


  23 in total

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Authors:  Marcello Scala; Saskia B Wortmann; Namik Kaya; Menno D Stellingwerff; Angela Pistorio; Emma Glamuzina; Clara D van Karnebeek; Cristina Skrypnyk; Katarzyna Iwanicka-Pronicka; Dorota Piekutowska-Abramczuk; Elżbieta Ciara; Frederic Tort; Beth Sheidley; Annapurna Poduri; Parul Jayakar; Anuj Jayakar; Jariya Upadia; Nicolette Walano; Tobias B Haack; Holger Prokisch; Hesham Aldhalaan; Ehsan G Karimiani; Yilmaz Yildiz; Ahmet C Ceylan; Teresa Santiago-Sim; Amy Dameron; Hui Yang; Mehran B Toosi; Farah Ashrafzadeh; Javad Akhondian; Shima Imannezhad; Hanieh S Mirzadeh; Shazia Maqbool; Aisha Farid; Mohamed A Al-Muhaizea; Meznah O Alshwameen; Lama Aldowsari; Maysoon Alsagob; Ashwaq Alyousef; Rawan AlMass; Aljouhra AlHargan; Ali H Alwadei; Maha M AlRasheed; Dilek Colak; Hanan Alqudairy; Sameena Khan; Matthew A Lines; M Ángeles García Cazorla; Antonia Ribes; Eva Morava; Farah Bibi; Shahzad Haider; Matteo P Ferla; Jenny C Taylor; Hessa S Alsaif; Abdulwahab Firdous; Mais Hashem; Chingiz Shashkin; Kairgali Koneev; Rauan Kaiyrzhanov; Stephanie Efthymiou; Queen Square Genomics; Thomas Schmitt-Mechelke; Andreas Ziegler; Mahmoud Y Issa; Hasnaa M Elbendary; Pasquale Striano; Fowzan S Alkuraya; Maha S Zaki; Joseph G Gleeson; Tahsin Stefan Barakat; Jorgen Bierau; Marjo S van der Knaap; Reza Maroofian; Henry Houlden
Journal:  Hum Mutat       Date:  2022-01-12       Impact factor: 4.700

6.  Structural Basis for the Specificity of Human NUDT16 and Its Regulation by Inosine Monophosphate.

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Review 7.  Hypoxic Vasospasm Mediated by cIMP: When Soluble Guanylyl Cyclase Turns Bad.

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Review 8.  A disease spectrum for ITPA variation: advances in biochemical and clinical research.

Authors:  Nicholas E Burgis
Journal:  J Biomed Sci       Date:  2016-10-22       Impact factor: 8.410

9.  Measuring deaminated nucleotide surveillance enzyme ITPA activity with an ATP-releasing nucleotide chimera.

Authors:  Debin Ji; Elena I Stepchenkova; Jian Cui; Miriam R Menezes; Youri I Pavlov; Eric T Kool
Journal:  Nucleic Acids Res       Date:  2017-11-16       Impact factor: 16.971

10.  Gene dosage effects in yeast support broader roles for the LOG1, HAM1 and DUT1 genes in detoxification of nucleotide analogues.

Authors:  Mattias Carlsson; Guo-Zhen Hu; Hans Ronne
Journal:  PLoS One       Date:  2018-05-08       Impact factor: 3.240

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