Deregulated Sphingolipid Metabolism and Membrane Organization in Neurodegenerative Disorders

被引:0
|
作者
Marco Piccinini
Federica Scandroglio
Simona Prioni
Barbara Buccinnà
Nicoletta Loberto
Massimo Aureli
Vanna Chigorno
Elisa Lupino
Giovanni DeMarco
Annarosa Lomartire
Maria Teresa Rinaudo
Sandro Sonnino
Alessandro Prinetti
机构
[1] University of Milan,Center of Excellence on Neurodegenerative Diseases, Department of Medical Chemistry, Biochemistry and Biotechnology
[2] University of Turin,Section of Biochemistry, Department of Medicine and Experimental Oncology
[3] Università degli Studi di Milano,Dipartimento di Chimica, Biochimica e Biotecnologie per la Medicina
来源
Molecular Neurobiology | 2010年 / 41卷
关键词
Sphingolipids; Sphingomyelin; Glycosphingolipids; Gangliosides; Alzheimer’s disease; Sphingolipid storage diseases; Parkinson’s disease; Prion diseases;
D O I
暂无
中图分类号
学科分类号
摘要
Sphingolipids are polar membrane lipids present as minor components in eukaryotic cell membranes. Sphingolipids are highly enriched in nervous cells, where they exert important biological functions. They deeply affect the structural and geometrical properties and the lateral order of cellular membranes, modulate the function of several membrane-associated proteins, and give rise to important intra- and extracellular lipid mediators. Sphingolipid metabolism is regulated along the differentiation and development of the nervous system, and the expression of a peculiar spatially and temporarily regulated sphingolipid pattern is essential for the maintenance of the functional integrity of the nervous system: sphingolipids in the nervous system participate to several signaling pathways controlling neuronal survival, migration, and differentiation, responsiveness to trophic factors, synaptic stability and synaptic transmission, and neuron–glia interactions, including the formation and stability of central and peripheral myelin. In several neurodegenerative diseases, sphingolipid metabolism is deeply deregulated, leading to the expression of abnormal sphingolipid patterns and altered membrane organization that participate to several events related to the pathogenesis of these diseases. The most impressive consequence of this deregulation is represented by anomalous sphingolipid–protein interactions that are at least, in part, responsible for the misfolding events that cause the fibrillogenic and amyloidogenic processing of disease-specific protein isoforms, such as amyloid β peptide in Alzheimer’s disease, huntingtin in Huntington’s disease, α-synuclein in Parkinson’s disease, and prions in transmissible encephalopathies. Targeting sphingolipid metabolism represents today an underexploited but realistic opportunity to design novel therapeutic strategies for the intervention in these diseases.
引用
收藏
页码:314 / 340
页数:26
相关论文
共 50 条
  • [31] Sphingolipid glycosylation and its role in membrane organization and plant-microbe interactions
    Scheller, Henrik V.
    Moore, William M.
    Fang, Lin
    Chan, Candace
    Ishikawa, Toshiki
    Ebert, Berit
    Rautengarten, Carsten
    Kawai-Yamada, Maki
    Heazlewood, Joshua L.
    Mortimer, Jenny C.
    GLYCOBIOLOGY, 2018, 28 (12) : 1020 - 1020
  • [32] Sphingolipid metabolism diseases
    Kolter, Thomas
    Sandhoff, Konrad
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2006, 1758 (12): : 2057 - 2079
  • [33] Folate and homocysteine metabolism: Therapeutic targets cardiovascular and neurodegenerative disorders
    Mattson, MP
    Haberman, F
    CURRENT MEDICINAL CHEMISTRY, 2003, 10 (19) : 1923 - 1929
  • [34] Emerging role of HDL in brain cholesterol metabolism and neurodegenerative disorders
    Turri, Marta
    Marchi, Cinzia
    Adorni, Maria Pia
    Calabresi, Laura
    Zimetti, Francesca
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2022, 1867 (05):
  • [35] DOPAMINE METABOLISM IN POSTMORTEM CAUDATE-NUCLEUS IN NEURODEGENERATIVE DISORDERS
    MARSHALL, EF
    PERRY, EK
    PERRY, RH
    MCKEITH, IG
    FAIRBAIRN, AF
    THOMPSON, P
    NEUROSCIENCE RESEARCH COMMUNICATIONS, 1994, 14 (01) : 17 - 25
  • [36] Beyond the cherry-red spot: Ocular manifestations of sphingolipid-mediated neurodegenerative and inflammatory disorders
    Chen, Hui
    Chan, Annie Y.
    Stone, Donald U.
    Mandal, Nawajes A.
    SURVEY OF OPHTHALMOLOGY, 2014, 59 (01) : 64 - 76
  • [37] Potential mechanisms to modify impaired glucose metabolism in neurodegenerative disorders
    McDonald, Tanya S.
    Lerskiatiphanich, Titaya
    Woodruff, Trent M.
    McCombe, Pamela A.
    Lee, John D.
    JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2023, 43 (01): : 26 - 43
  • [38] Altered regulation of brain glucose metabolism as a cause of neurodegenerative disorders?
    BlumDegen, D
    Frolich, L
    Hoyer, S
    Riederer, P
    JOURNAL OF NEURAL TRANSMISSION-SUPPLEMENT, 1995, (46): : 139 - 147
  • [39] Nuclear Sphingolipid Metabolism
    Lucki, Natasha C.
    Sewer, Marion B.
    ANNUAL REVIEW OF PHYSIOLOGY, VOL 74, 2012, 74 : 131 - 151
  • [40] The role of Plasma Membrane Calcium ATPases (PMCAs) in neurodegenerative disorders
    Hajieva, Parvana
    Baeken, Marius W.
    Moosmann, Bernd
    NEUROSCIENCE LETTERS, 2018, 663 : 29 - 38