2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration

The enzyme, 2′-3′-cyclic nucleotide 3′-phosphodiesterase (CNPase) has been known for over fifty years. Nevertheless, the roles this membrane-bound enzyme play have yet to be described completely. Recently, there has been renewed interest in the study of this enzyme due to studies that suggest that C...

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Main Authors: David C. Platt, Jonathan Rink, Kamaljit Braich, Craig C. McLauchlan, Marjorie A. Jones
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Brain Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3425/11/5/588
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spelling doaj-8d80a0acd9cc4ce8949b0b5e3eddb5522021-04-30T23:07:20ZengMDPI AGBrain Sciences2076-34252021-04-011158858810.3390/brainsci110505882′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS DegenerationDavid C. Platt0Jonathan Rink1Kamaljit Braich2Craig C. McLauchlan3Marjorie A. Jones4Department of Chemistry, Illinois State University, Normal, IL 61790-4160, USADepartment of Chemistry, Illinois State University, Normal, IL 61790-4160, USADepartment of Chemistry, Illinois State University, Normal, IL 61790-4160, USADepartment of Chemistry, Illinois State University, Normal, IL 61790-4160, USADepartment of Chemistry, Illinois State University, Normal, IL 61790-4160, USAThe enzyme, 2′-3′-cyclic nucleotide 3′-phosphodiesterase (CNPase) has been known for over fifty years. Nevertheless, the roles this membrane-bound enzyme play have yet to be described completely. Recently, there has been renewed interest in the study of this enzyme due to studies that suggest that CNPase plays a role in the mediation of cellular inflammatory responses in renal and nervous system tissues. Also, this enzyme, found in oligodendrocytes of the nervous system, has been reported to participate in significant regulatory changes associated with age which may be involved in age-related CNS degeneration. Consequently, development of CNPase inhibitors is of interest and should aid in the study of this, as yet, poorly understood enzyme. In this work we utilized a spectrophotometric enzyme assay to determine the effect a panel of organo-vanadium complexes had on isolated hamster myelin CNPase activity. Our group has now identified several potent in vitro CNPase inhibitors that could prove useful in clarifying the important roles of this enzyme.https://www.mdpi.com/2076-3425/11/5/5882′-3′-cyclic nucleotide 3′-phosphodiesteraseenzyme inhibitionmyelinvanadium complexesmyelin marker enzyme
collection DOAJ
language English
format Article
sources DOAJ
author David C. Platt
Jonathan Rink
Kamaljit Braich
Craig C. McLauchlan
Marjorie A. Jones
spellingShingle David C. Platt
Jonathan Rink
Kamaljit Braich
Craig C. McLauchlan
Marjorie A. Jones
2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
Brain Sciences
2′-3′-cyclic nucleotide 3′-phosphodiesterase
enzyme inhibition
myelin
vanadium complexes
myelin marker enzyme
author_facet David C. Platt
Jonathan Rink
Kamaljit Braich
Craig C. McLauchlan
Marjorie A. Jones
author_sort David C. Platt
title 2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
title_short 2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
title_full 2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
title_fullStr 2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
title_full_unstemmed 2′-3′-Cyclic Nucleotide 3′-Phosphodiesterase Inhibition by Organometallic Vanadium Complexes: A Potential New Paradigm for Studying CNS Degeneration
title_sort 2′-3′-cyclic nucleotide 3′-phosphodiesterase inhibition by organometallic vanadium complexes: a potential new paradigm for studying cns degeneration
publisher MDPI AG
series Brain Sciences
issn 2076-3425
publishDate 2021-04-01
description The enzyme, 2′-3′-cyclic nucleotide 3′-phosphodiesterase (CNPase) has been known for over fifty years. Nevertheless, the roles this membrane-bound enzyme play have yet to be described completely. Recently, there has been renewed interest in the study of this enzyme due to studies that suggest that CNPase plays a role in the mediation of cellular inflammatory responses in renal and nervous system tissues. Also, this enzyme, found in oligodendrocytes of the nervous system, has been reported to participate in significant regulatory changes associated with age which may be involved in age-related CNS degeneration. Consequently, development of CNPase inhibitors is of interest and should aid in the study of this, as yet, poorly understood enzyme. In this work we utilized a spectrophotometric enzyme assay to determine the effect a panel of organo-vanadium complexes had on isolated hamster myelin CNPase activity. Our group has now identified several potent in vitro CNPase inhibitors that could prove useful in clarifying the important roles of this enzyme.
topic 2′-3′-cyclic nucleotide 3′-phosphodiesterase
enzyme inhibition
myelin
vanadium complexes
myelin marker enzyme
url https://www.mdpi.com/2076-3425/11/5/588
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