Neuroprotective effect of the PACAP-ADNP axis on SOD1G93A mutant motor neuron death induced by trophic factors deprivation

被引:2
作者
Magri, Benedetta [1 ]
D'Amico, Agata Grazia [2 ]
Maugeri, Grazia [1 ]
Morello, Giovanna [3 ]
La Cognata, Valentina [3 ]
Saccone, Salvatore [4 ]
Federico, Concetta [4 ]
Cavallaro, Sebastiano [3 ]
D'Agata, Velia [1 ]
机构
[1] Univ Catania, Dept Biomed & Biotechnol Sci, Sect Anat Histol & Movement Sci, Via S Sofia 87, I-95100 Catania, Italy
[2] Univ Catania, Dept Drug Sci, Catania, Italy
[3] Inst Biomed Res & Innovat, Natl Res Council, Via P Gaifami 18, I-95126 Catania, Italy
[4] Univ Catania, Dept Biol Geol & Environm Sci, Sect Anim Biol, I-95123 Catania, Italy
关键词
PACAP -ADNP axis; ALS; ROS formation; NRF2; NAP; CYCLASE-ACTIVATING POLYPEPTIDE; AMYOTROPHIC-LATERAL-SCLEROSIS; OXIDATIVE STRESS; LIPID-PEROXIDATION; SIGNALING PATHWAY; PROTEIN; NAP; PEPTIDE; RECEPTORS; GENE;
D O I
10.1016/j.npep.2023.102386
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Amyotrophic lateral Sclerosis (ALS) is a neurodegenerative disease characterized by progressive degeneration of motor neurons in the central nervous system. Mutations in the gene encoding Cu/Zn superoxide dismutase (SOD1) account for approximately in 20% of familial ALS cases. The pathological mechanisms underlying the toxicity induced by mutated SOD1 are still unknown. However, it has been hypothesized that oxidative stress (OS) has a crucial role in motor neuron degeneration in ALS patients. Moreover, it has been described that SOD1 mutation interferes expression of nuclear factor erythroid 2-related factor 2 (Nrf2), a protective key modulator against OS and reactive oxygen species (ROS) formation.The protective effect of pituitary adenylate cyclase-activating peptide (PACAP) has been demonstrated in various neurological disorders, including ALS. Some of its effects are mediated by the stimulation of an intracellular factor known as activity-dependent protein (ADNP). The role of PACAP-ADNP axis on mutated SOD1 motor neuron degeneration has not been explored, yet. The present study aimed to investigate whether PACAP prevented apoptotic cell death induced by growth factor deprivation through ADNP activation and whether the peptidergic axis can counteract the OS insult.By using an in vitro model of ALS, we demonstrated that PACAP by binding to PAC1 receptor (PAC1R) prevented motor neuron death induced by serum deprivation through induction of the ADNP expression via PKC stimulation. Furthermore, we have also demonstrated that the PACAP/ADNP axis counteracted ROS formation by inducing translocation of the Nfr2 from the cytoplasm to the nucleus. In conclusion, our study provides new insights regarding the protective role of PACAP-ADNP in ALS.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] Accumulation of human SOD1 and ubiquitinated deposits in the spinal cord of SOD1G93A mice during motor neuron disease progression correlates with a decrease of proteasome
    Cheroni, C
    Peviani, M
    Cascio, P
    DeBlasi, S
    Monti, C
    Bendotti, C
    NEUROBIOLOGY OF DISEASE, 2005, 18 (03) : 509 - 522
  • [32] Death receptor 6 (DR6) antagonist antibody is neuroprotective in the mouse SOD1G93A model of amyotrophic lateral sclerosis
    G Huang
    X Lee
    Y Bian
    Z Shao
    G Sheng
    R B Pepinsky
    S Mi
    Cell Death & Disease, 2013, 4 : e841 - e841
  • [33] Death receptor 6 (DR6) antagonist antibody is neuroprotective in the mouse SOD1G93A model of amyotrophic lateral sclerosis
    Huang, G.
    Lee, X.
    Bian, Y.
    Shao, Z.
    Sheng, G.
    Pepinsky, R. B.
    Mi, S.
    CELL DEATH & DISEASE, 2013, 4 : e841 - e841
  • [34] Integrative Analysis of Motor Neuron and Microglial Transcriptomes from SOD1G93A Mice Models Uncover Potential Drug Treatments for ALS
    Elif Kubat Oktem
    Busra Aydin
    Metin Yazar
    Kazim Yalcin Arga
    Journal of Molecular Neuroscience, 2022, 72 : 2360 - 2376
  • [35] Decreased signalling of EphA4 improves functional performance and motor neuron survival in the SOD1G93A ALS mouse model
    Zhao, J.
    Cooper, L. T.
    Boyd, A. W.
    Bartlett, P. F.
    SCIENTIFIC REPORTS, 2018, 8
  • [36] Integrative Analysis of Motor Neuron and Microglial Transcriptomes from SOD1G93A Mice Models Uncover Potential Drug Treatments for ALS
    Oktem, Elif Kubat
    Aydin, Busra
    Yazar, Metin
    Arga, Kazim Yalcin
    JOURNAL OF MOLECULAR NEUROSCIENCE, 2022, 72 (11) : 2360 - 2376
  • [37] Urolithin a Improves Motor Dysfunction Induced by Copper Exposure in SOD1G93A Transgenic Mice Via Activation of Mitophagy
    Zhang, Huan
    Gao, Chuanyue
    Yang, Deguang
    Nie, Lulin
    He, Kaiwu
    Chen, Chongyang
    Li, Shangming
    Huang, Guanqin
    Zhou, Li
    Huang, Xinfeng
    Wu, Desheng
    Liu, Jianjun
    Huang, Zhenlie
    Wang, Jie
    Li, Weihua
    Zhang, Zhaohui
    Yang, Xifei
    Zou, Liangyu
    MOLECULAR NEUROBIOLOGY, 2024, : 6922 - 6937
  • [38] The Legs at odd angles (Loa) Mutation in Cytoplasmic Dynein Ameliorates Mitochondrial Function in SOD1G93A Mouse Model for Motor Neuron Disease
    El-Kadi, Ali Morsi
    Bros-Facer, Virginie
    Deng, Wenhan
    Philpott, Amelia
    Stoddart, Eleanor
    Banks, Gareth
    Jackson, Graham S.
    Fisher, Elizabeth M. C.
    Duchen, Michael R.
    Greensmith, Linda
    Moore, Anthony L.
    Hafezparast, Majid
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (24) : 18627 - 18639
  • [39] Persistent NRG1 Type III Overexpression in Spinal Motor Neurons Has No Therapeutic Effect on ALS-Related Pathology in SOD1G93A Mice
    Sara Hernández
    Sara Salvany
    Anna Casanovas
    Lídia Piedrafita
    M. Clara Soto-Bernardini
    Olga Tarabal
    Alba Blasco
    Sílvia Gras
    Alaó Gatius
    Markus H. Schwab
    Jordi Calderó
    Josep E. Esquerda
    Neurotherapeutics, 2023, 20 : 1820 - 1834
  • [40] Persistent NRG1 Type III Overexpression in Spinal Motor Neurons Has No Therapeutic Effect on ALS-Related Pathology in SOD1G93A Mice
    Hernandez, Sara
    Salvany, Sara
    Casanovas, Anna
    Piedrafita, Lidia
    Soto-Bernardini, M. Clara
    Tarabal, Olga
    Blasco, Alba
    Gras, Silvia
    Gatius, Alao
    Schwab, Markus H.
    Caldero, Jordi
    Esquerda, Josep E.
    NEUROTHERAPEUTICS, 2023, 20 (06) : 1820 - 1834