Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

An inosine triphosphate pyrophosphatase safeguards plant nucleic acids from aberrant purine nucleotides

View through CrossRef
Summary In plants, inosine is enzymatically introduced in some tRNAs, but not in other RNAs or DNA. Nonetheless, our data show that RNA and DNA from Arabidopsis thaliana contain (deoxy)inosine, probably derived from nonenzymatic adenosine deamination in nucleic acids and usage of (deoxy)inosine triphosphate (dITP and ITP) during nucleic acid synthesis. We combined biochemical approaches, LC–MS, as well as RNA‐Seq to characterize a plant INOSINE TRIPHOSPHATE PYROPHOSPHATASE (ITPA) from A. thaliana, which is conserved in many organisms, and investigated the sources of deaminated purine nucleotides in plants. Inosine triphosphate pyrophosphatase dephosphorylates deaminated nucleoside di‐ and triphosphates to the respective monophosphates. ITPA loss‐of‐function causes inosine di‐ and triphosphate accumulation in vivo and an elevated inosine and deoxyinosine content in RNA and DNA, respectively, as well as salicylic acid (SA) accumulation, early senescence, and upregulation of transcripts associated with immunity and senescence. Cadmium‐induced oxidative stress and biochemical inhibition of the INOSINE MONOPHOSPHATE DEHYDROGENASE leads to more IDP and ITP in the wild‐type (WT), and this effect is enhanced in itpa mutants, suggesting that ITP originates from ATP deamination and IMP phosphorylation. Inosine triphosphate pyrophosphatase is part of a molecular protection system in plants, preventing the accumulation of (d)ITP and its usage for nucleic acid synthesis.
Title: An inosine triphosphate pyrophosphatase safeguards plant nucleic acids from aberrant purine nucleotides
Description:
Summary In plants, inosine is enzymatically introduced in some tRNAs, but not in other RNAs or DNA.
Nonetheless, our data show that RNA and DNA from Arabidopsis thaliana contain (deoxy)inosine, probably derived from nonenzymatic adenosine deamination in nucleic acids and usage of (deoxy)inosine triphosphate (dITP and ITP) during nucleic acid synthesis.
We combined biochemical approaches, LC–MS, as well as RNA‐Seq to characterize a plant INOSINE TRIPHOSPHATE PYROPHOSPHATASE (ITPA) from A.
 thaliana, which is conserved in many organisms, and investigated the sources of deaminated purine nucleotides in plants.
Inosine triphosphate pyrophosphatase dephosphorylates deaminated nucleoside di‐ and triphosphates to the respective monophosphates.
ITPA loss‐of‐function causes inosine di‐ and triphosphate accumulation in vivo and an elevated inosine and deoxyinosine content in RNA and DNA, respectively, as well as salicylic acid (SA) accumulation, early senescence, and upregulation of transcripts associated with immunity and senescence.
Cadmium‐induced oxidative stress and biochemical inhibition of the INOSINE MONOPHOSPHATE DEHYDROGENASE leads to more IDP and ITP in the wild‐type (WT), and this effect is enhanced in itpa mutants, suggesting that ITP originates from ATP deamination and IMP phosphorylation.
Inosine triphosphate pyrophosphatase is part of a molecular protection system in plants, preventing the accumulation of (d)ITP and its usage for nucleic acid synthesis.

Related Results

An inosine triphosphate pyrophosphatase safeguards plant nucleic acids from aberrant purine nucleotides
An inosine triphosphate pyrophosphatase safeguards plant nucleic acids from aberrant purine nucleotides
SUMMARY-In plants, inosine is enzymatically introduced in some tRNAs but not in other RNAs or DNA. Nonetheless, our data show that RNA and DNA fromArabidopsis thalianacontain (deox...
Amino Acids, Survey
Amino Acids, Survey
AbstractAmino acids are the main components of proteins. Approximately 20 amino acids are common constituents of proteins and are called protein amino acids, or primary protein ami...
Resilience and vulnerabilities of tumor cells under purine shortage stress
Resilience and vulnerabilities of tumor cells under purine shortage stress
Abstract Purine metabolism is a promising therapeutic target in cancer; however how cancer cells respond to purine shortage,particularly their adaptation and vulner...
Data from Resilience and Vulnerabilities of Tumor Cells under Purine Shortage Stress
Data from Resilience and Vulnerabilities of Tumor Cells under Purine Shortage Stress
<div>AbstractPurpose:<p>Purine metabolism is a promising therapeutic target in cancer; however, how cancer cells respond to purine shortage, particularly their adaptati...
Amino Acids
Amino Acids
AbstractAmino acids are the main components of proteins. Approximately 20 amino acids are common constituents of proteins and are called protein amino acids, or primary protein ami...
Antibacterial mechanism of inosine against Alicyclobacillus acidoterrestris
Antibacterial mechanism of inosine against Alicyclobacillus acidoterrestris
Abstract Inosine could potentially become a novel antibacterial agent against A. acidoterrestris as low-dose ...
Redd&#43; Safeguards in Indonesia
Redd&#43; Safeguards in Indonesia
Since REDD (Reducing Emissions from Deforestation and Forest Degradation) covers the core issues of Indonesian forestry, such as conservation, halting deforestation, and providing...
Spatiotemporal regulation of de novo and salvage purine synthesis during brain development
Spatiotemporal regulation of de novo and salvage purine synthesis during brain development
Abstract The levels of purines, essential molecules to sustain eukaryotic cell homeostasis, are regulated by the coordination of the ...

Back to Top