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Non-canonical Cyclic Nucleotides

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Cover of 'Non-canonical Cyclic Nucleotides'

Table of Contents

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    Book Overview
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    Chapter 34 Mammalian Nucleotidyl Cyclases and Their Nucleotide Binding Sites
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    Chapter 35 Cyclic Nucleotide Monophosphates in Plants and Plant Signaling.
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    Chapter 36 cAMP-Dependent Protein Kinase and cGMP-Dependent Protein Kinase as Cyclic Nucleotide Effectors
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    Chapter 37 Interaction of Epac with Non-canonical Cyclic Nucleotides
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    Chapter 38 Identification of cCMP and cUMP Substrate Proteins and Cross Talk Between cNMPs.
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    Chapter 39 3',5'-cIMP as Potential Second Messenger in the Vascular Wall.
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    Chapter 40 Discovery and Roles of 2′,3′-cAMP in Biological Systems
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    Chapter 41 Medicinal Chemistry of the Noncanonical Cyclic Nucleotides cCMP and cUMP
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    Chapter 42 Holistic Methods for the Analysis of cNMP Effects
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    Chapter 43 The Chemistry of the Noncanonical Cyclic Dinucleotide 2′3′-cGAMP and Its Analogs
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    Chapter 5000 8-Nitro-cGMP: A Novel Protein-Reactive cNMP and Its Emerging Roles in Autophagy
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    Chapter 5001 Mass Spectrometric Analysis of Non-canonical Cyclic Nucleotides
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    Chapter 5002 Cyclic Dinucleotides in the Scope of the Mammalian Immune System
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    Chapter 5003 The Pseudomonas aeruginosa Exoenzyme Y: A Promiscuous Nucleotidyl Cyclase Edema Factor and Virulence Determinant
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    Chapter 5004 Inactivation of Non-canonical Cyclic Nucleotides: Hydrolysis and Transport
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    Chapter 5005 cCMP and cUMP Across the Tree of Life: From cCMP and cUMP Generators to cCMP- and cUMP-Regulated Cell Functions
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    Chapter 5006 Regulation of HCN Ion Channels by Non-canonical Cyclic Nucleotides
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    Chapter 5007 cCMP and cUMP in Apoptosis: Concepts and Methods
Attention for Chapter 35: Cyclic Nucleotide Monophosphates in Plants and Plant Signaling.
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Chapter title
Cyclic Nucleotide Monophosphates in Plants and Plant Signaling.
Chapter number 35
Book title
Non-canonical Cyclic Nucleotides
Published in
Handbook of experimental pharmacology, January 2016
DOI 10.1007/164_2015_35
Pubmed ID
Book ISBNs
978-3-31-952671-3, 978-3-31-952673-7
Authors

Marondedze, Claudius, Wong, Aloysius, Thomas, Ludivine, Irving, Helen, Gehring, Chris, Claudius Marondedze, Aloysius Wong, Ludivine Thomas, Helen Irving, Chris Gehring

Abstract

Cyclic nucleotide monophosphates (cNMPs) and the enzymes that can generate them are of increasing interest in the plant sciences. Arguably, the major recent advance came with the release of the complete Arabidopsis thaliana genome that has enabled the systematic search for adenylate (ACs) or guanylate cyclases (GCs) and did eventually lead to the discovery of a number of GCs in higher plants. Many of these proteins have complex domain architectures with AC or GC centers moonlighting within cytosolic kinase domains. Recent reports indicated the presence of not just the canonical cNMPs (i.e., cAMP and cGMP), but also the noncanonical cCMP, cUMP, cIMP, and cdTMP in plant tissues, and this raises several questions. Firstly, what are the functions of these cNMPs, and, secondly, which enzymes can convert the substrate triphosphates into the respective noncanonical cNMPs? The first question is addressed here by comparing the reactive oxygen species (ROS) response of cAMP and cGMP to that elicited by the noncanonical cCMP or cIMP. The results show that particularly cIMP can induce significant ROS production. To answer, at least in part, the second question, we have evaluated homology models of experimentally confirmed plant GCs probing the substrate specificity by molecular docking simulations to determine if they can conceivably catalytically convert substrates other than ATP or GTP. In summary, molecular modeling and substrate docking simulations can contribute to the evaluation of cyclases for noncanonical cyclic mononucleotides and thereby further our understanding of the molecular mechanism that underlie cNMP-dependent signaling in planta.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 20 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 20 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 7 35%
Researcher 4 20%
Student > Master 2 10%
Student > Bachelor 1 5%
Student > Doctoral Student 1 5%
Other 1 5%
Unknown 4 20%
Readers by discipline Count As %
Agricultural and Biological Sciences 9 45%
Biochemistry, Genetics and Molecular Biology 5 25%
Unknown 6 30%