Literature DB >> 34871739

Identification of cyclin D1 as a major modulator of 3-nitropropionic acid-induced striatal neurodegeneration.

Paula Dietrich1, Shanta Alli2, Megan K Mulligan3, Rachel Cox4, David G Ashbrook3, Robert W Williams3, Ioannis Dragatsis5.   

Abstract

Mitochondria dysfunction occurs in the aging brain as well as in several neurodegenerative disorders and predisposes neuronal cells to enhanced sensitivity to neurotoxins. 3-nitropropionic acid (3-NP) is a naturally occurring plant and fungal neurotoxin that causes neurodegeneration predominantly in the striatum by irreversibly inhibiting the tricarboxylic acid respiratory chain enzyme, succinate dehydrogenase (SDH), the main constituent of the mitochondria respiratory chain complex II. Significantly, although 3-NP-induced inhibition of SDH occurs in all brain regions, neurodegeneration occurs primarily and almost exclusively in the striatum for reasons still not understood. In rodents, 3-NP-induced striatal neurodegeneration depends on the strain background suggesting that genetic differences among genotypes modulate toxicant variability and mechanisms that underlie 3-NP-induced neuronal cell death. Using the large BXD family of recombinant inbred (RI) strains we demonstrate that variants in Ccnd1 - the gene encoding cyclin D1 - of the DBA/2 J parent underlie the resistance to 3-NP-induced striatal neurodegeneration. In contrast, the Ccnd1 variant inherited from the widely used C57BL/6 J parental strain confers sensitivity. Given that cellular stress triggers induction of cyclin D1 expression followed by cell-cycle re-entry and consequent neuronal cell death, we sought to determine if the C57BL/6 J and DBA/2 J Ccnd1 variants are differentially modulated in response to 3-NP. We confirm that 3-NP induces cyclin D1 expression in striatal neuronal cells of C57BL/6 J, but this response is blunted in the DBA/2 J. We further show that striatal-specific alternative processing of a highly conserved 3'UTR negative regulatory region of Ccnd1 co-segregates with the C57BL/6 J parental Ccnd1 allele in BXD strains and that its differential processing accounts for sensitivity or resistance to 3-NP. Our results indicate that naturally occurring Ccnd1 variants may play a role in the variability observed in neurodegenerative disorders involving mitochondria complex II dysfunction and point to cyclin D1 as a possible therapeutic target.
Copyright © 2021 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  3-Nitropropionic acid; BXD; Cell cycle; Cyclin D1; Mouse; Neurodegeneration; Striatum

Mesh:

Substances:

Year:  2021        PMID: 34871739      PMCID: PMC8717869          DOI: 10.1016/j.nbd.2021.105581

Source DB:  PubMed          Journal:  Neurobiol Dis        ISSN: 0969-9961            Impact factor:   5.996


  94 in total

1.  Inactivation of succinate dehydrogenase by 3-nitropropionate.

Authors:  C J Coles; D E Edmondson; T P Singer
Journal:  J Biol Chem       Date:  1979-06-25       Impact factor: 5.157

2.  Susceptibility to excitotoxic and metabolic striatal neurodegeneration in the mouse is genotype dependent.

Authors:  Paula Elyse Schauwecker
Journal:  Brain Res       Date:  2005-04-08       Impact factor: 3.252

Review 3.  3-Nitropropionic acid's lethal triplet: cooperative pathways of neurodegeneration.

Authors:  T Alexi; P E Hughes; R L Faull; C E Williams
Journal:  Neuroreport       Date:  1998-08-03       Impact factor: 1.837

Review 4.  3-Nitropropionic acid-exogenous animal neurotoxin and possible human striatal toxin.

Authors:  A C Ludolph; F He; P S Spencer; J Hammerstad; M Sabri
Journal:  Can J Neurol Sci       Date:  1991-11       Impact factor: 2.104

5.  In vivo calpain/caspase cross-talk during 3-nitropropionic acid-induced striatal degeneration: implication of a calpain-mediated cleavage of active caspase-3.

Authors:  Nicolas Bizat; Jean-Michel Hermel; Sandrine Humbert; Carine Jacquard; Christophe Créminon; Carole Escartin; Frédéric Saudou; Stan Krajewski; Philippe Hantraye; Emmanuel Brouillet
Journal:  J Biol Chem       Date:  2003-08-12       Impact factor: 5.157

6.  ROS scavenging capacity and neuroprotective effect of alpha-mangostin against 3-nitropropionic acid in cerebellar granule neurons.

Authors:  José Pedraza-Chaverrí; Laura María Reyes-Fermín; Eva Guadalupe Nolasco-Amaya; Marisol Orozco-Ibarra; Omar Noel Medina-Campos; Octavio González-Cuahutencos; Isabel Rivero-Cruz; Rachel Mata
Journal:  Exp Toxicol Pathol       Date:  2008-12-23

7.  Chronic mitochondrial energy impairment produces selective striatal degeneration and abnormal choreiform movements in primates.

Authors:  E Brouillet; P Hantraye; R J Ferrante; R Dolan; A Leroy-Willig; N W Kowall; M F Beal
Journal:  Proc Natl Acad Sci U S A       Date:  1995-07-18       Impact factor: 11.205

8.  The genetic structure of recombinant inbred mice: high-resolution consensus maps for complex trait analysis.

Authors:  R W Williams; J Gu; S Qi; L Lu
Journal:  Genome Biol       Date:  2001-10-22       Impact factor: 13.583

9.  MicroRNA-22 (miR-22) overexpression is neuroprotective via general anti-apoptotic effects and may also target specific Huntington's disease-related mechanisms.

Authors:  Ana Jovicic; Julien Francisco Zaldivar Jolissaint; Roger Moser; Mariana de Fatima Silva Santos; Ruth Luthi-Carter
Journal:  PLoS One       Date:  2013-01-17       Impact factor: 3.240

10.  Cyclin-dependent kinases participate in death of neurons evoked by DNA-damaging agents.

Authors:  D S Park; E J Morris; J Padmanabhan; M L Shelanski; H M Geller; L A Greene
Journal:  J Cell Biol       Date:  1998-10-19       Impact factor: 10.539

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