Hereditary spastic paraplegia: clinico-pathologic features and emerging molecular mechanisms

被引:353
|
作者
Fink, John K. [1 ,2 ]
机构
[1] Univ Michigan, Dept Neurol, Ann Arbor, MI 48109 USA
[2] Ann Arbor Vet Affairs Med Ctr, Geriatr Res Educ & Clin Ctr, Ann Arbor, MI 48109 USA
基金
美国国家卫生研究院;
关键词
NEUROPATHY TARGET ESTERASE; THIN CORPUS-CALLOSUM; SJOGREN-LARSSON SYNDROME; RECESSIVE INTELLECTUAL DISABILITY; MUTILATING SENSORY NEUROPATHY; SEIP CONGENITAL LIPODYSTROPHY; PELIZAEUS-MERZBACHER DISEASE; SILVER SYNDROME VARIANT; HERNDON-DUDLEY-SYNDROME; HEAVY-CHAIN KIF5A;
D O I
10.1007/s00401-013-1115-8
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Hereditary spastic paraplegia (HSP) is a syndrome designation describing inherited disorders in which lower extremity weakness and spasticity are the predominant symptoms. There are more than 50 genetic types of HSP. HSP affects individuals of diverse ethnic groups with prevalence estimates ranging from 1.2 to 9.6 per 100,000. Symptoms may begin at any age. Gait impairment that begins after childhood usually worsens very slowly over many years. Gait impairment that begins in infancy and early childhood may not worsen significantly. Postmortem studies consistently identify degeneration of corticospinal tract axons (maximal in the thoracic spinal cord) and degeneration of fasciculus gracilis fibers (maximal in the cervico-medullary region). HSP syndromes thus appear to involve motor-sensory axon degeneration affecting predominantly (but not exclusively) the distal ends of long central nervous system (CNS) axons. In general, proteins encoded by HSP genes have diverse functions including (1) axon transport (e.g. SPG30/KIF1A, SPG10/KIF5A and possibly SPG4/Spastin); (2) endoplasmic reticulum morphology (e.g. SPG3A/Atlastin, SPG4/Spastin, SPG12/reticulon 2, and SPG31/REEP1, all of which interact); (3) mitochondrial function (e.g. SPG13/chaperonin 60/heat-shock protein 60, SPG7/paraplegin; and mitochondrial ATP6); (4) myelin formation (e.g. SPG2/Proteolipid protein and SPG42/Connexin 47); (5) protein folding and ER-stress response (SPG6/NIPA1, SPG8/K1AA0196 (Strumpellin), SGP17/BSCL2 (Seipin), "mutilating sensory neuropathy with spastic paraplegia" owing to CcT5 mutation and presumably SPG18/ERLIN2); (6) corticospinal tract and other neurodevelopment (e.g. SPG1/L1 cell adhesion molecule and SPG22/thyroid transporter MCT8); (7) fatty acid and phospholipid metabolism (e.g. SPG28/DDHD1, SPG35/FA2H, SPG39/NTE, SPG54/DDHD2, and SPG56/CYP2U1); and (8) endosome membrane trafficking and vesicle formation (e.g. SPG47/AP4B1, SPG48/KIAA0415, SPG50/AP4M1, SPG51/AP4E, SPG52/AP4S1, and VSPG53/VPS37A). The availability of animal models (including bovine, murine, zebrafish, Drosophila, and C. elegans) for many types of HSP permits exploration of disease mechanisms and potential treatments. This review highlights emerging concepts of this large group of clinically similar disorders.
引用
收藏
页码:307 / 328
页数:22
相关论文
共 50 条
  • [1] Hereditary spastic paraplegia: clinico-pathologic features and emerging molecular mechanisms
    John K. Fink
    Acta Neuropathologica, 2013, 126 : 307 - 328
  • [2] Hereditary spastic paraplegia: clinical features and pathogenetic mechanisms
    Salinas, Sara
    Proukakis, Christos
    Crosby, Andrew
    Warner, Thomas T.
    LANCET NEUROLOGY, 2008, 7 (12): : 1127 - 1138
  • [3] Molecular aspects of hereditary spastic paraplegia
    Noreau, Anne
    Dion, Patrick A.
    Rouleau, Guy A.
    EXPERIMENTAL CELL RESEARCH, 2014, 325 (01) : 18 - 26
  • [4] Clinico-Investigative Profile of Hereditary Spastic Paraplegia in Children
    Kamate, Mahesh
    Detroja, Mayank
    ANNALS OF INDIAN ACADEMY OF NEUROLOGY, 2019, 22 (03) : 341 - +
  • [5] Epithelioid Rhabdomyosarcoma: A Clinico-pathologic And Molecular Study
    Zin, Angelica
    Bertorelle, Roberta
    Dall'Igna, Patrizia
    Manzitti, Carla
    Gambini, Claudio
    Bisogno, Gianni
    Rosolen, Angelo
    Alaggio, Rita
    JOURNAL OF PEDIATRIC HEMATOLOGY ONCOLOGY, 2014, 36 (04) : E256 - E256
  • [6] Clinical features and management of hereditary spastic paraplegia
    Faber, Ingrid
    Servelhere, Katiane R.
    Martinez, Alberto R. M.
    D'Abreu, Anelyssa
    Lopes-Cendes, Iscia
    Franca-, Marcondes C., Jr.
    ARQUIVOS DE NEURO-PSIQUIATRIA, 2014, 72 (03) : 219 - 226
  • [7] Mast cell leukemia (MCL): Clinico-pathologic and molecular features and survival outcome
    Jain, Preetesh
    Wang, Sa
    Patel, Keyur P.
    Sarwari, Nawid
    Cortes, Jorge
    Kantarjian, Hagop
    Verstovsek, Srdan
    LEUKEMIA RESEARCH, 2017, 59 : 105 - 109
  • [8] Mechanisms of postural instability in hereditary spastic paraplegia
    Nonnekes, Jorik
    de Niet, Mark
    Nijhuis, Lars B. Oude
    de Bot, Susanne T.
    van de Warrenburg, Bart P. C.
    Bloem, Bastiaan R.
    Geurts, Alexander C.
    Weerdesteyn, Vivian
    JOURNAL OF NEUROLOGY, 2013, 260 (09) : 2387 - 2395
  • [9] Mechanisms of postural instability in hereditary spastic paraplegia
    Jorik Nonnekes
    Mark de Niet
    Lars B. Oude Nijhuis
    Susanne T. de Bot
    Bart P. C. van de Warrenburg
    Bastiaan R. Bloem
    Alexander C. Geurts
    Vivian Weerdesteyn
    Journal of Neurology, 2013, 260 : 2387 - 2395
  • [10] Gouty arthropathy: Review of clinico-pathologic and imaging features
    Parathithasan, Nishanthinie
    Lee, Wai-Kit
    Pianta, Marcus
    Oon, Shereen
    Perera, Warren
    JOURNAL OF MEDICAL IMAGING AND RADIATION ONCOLOGY, 2016, 60 (01) : 9 - 20