Spinal muscular atrophies reveal motor neuron vulnerability to defects in ribonucleoprotein handling

被引:17
|
作者
Anderson, K
Talbot, K
机构
[1] Radcliffe Infirm, Dept Clin Neurol, Oxford OX2 6HE, England
[2] Univ Oxford, Dept Human Anat & Genet, Oxford, England
关键词
spinal muscular atrophy; survival motor neuron; ribonucleoprotein; motor neuron;
D O I
10.1097/00019052-200310000-00005
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Purpose of review Many forms of spinal muscular atrophy, a pure lower motor neuron disease, have been characterized clinically but the molecular basis of most of these is unknown. In this article we review recent developments in our understanding of the spinal muscular atrophies and how this knowledge has revealed important new insights into the causes of motor neuron vulnerability which may ultimately lead to novel therapies for this untreatable group of disorders. Recent findings The identification of the genetic basis of two forms of autosomal recessive spinal muscular atrophy has revealed that lower motor neurons appear to have a specific vulnerability to defects in RNA metabolism. Most notably, the survival motor neuron protein, deficient in the most common form of spinal muscular atrophy, plays a multifunctional role in ribonucleoprotein metabolism and pre-messenger RNA splicing. The role of this protein in motor neurons is currently under intense study. The identification of two other spinal muscular atrophy-causing genes has provided support for the central role of components of the RNA metabolic pathway in determining motor neuron survival. Summary Understanding the molecular basis of lower motor neuron vulnerability in disorders such as spinal muscular atrophy will ultimately allow these disabling disorders to be treated. In addition we can expect to learn much about basic neuronal biology and about the pathways that are relevant to more common neurodegenerative disorders such as amyotrophic lateral sclerosis.
引用
收藏
页码:595 / 599
页数:5
相关论文
共 50 条
  • [21] The survival motor neuron protein (SMN) in spinal muscular atrophy (SMA).
    Coovert, DD
    Le, T
    McAndrew, PE
    Strasswimmer, J
    Crawford, TO
    Mendell, JR
    Androphy, E
    Prior, TW
    Burghes, AHM
    AMERICAN JOURNAL OF HUMAN GENETICS, 1997, 61 (04) : A329 - A329
  • [22] Overturning the Paradigm of Spinal Muscular Atrophy as Just a Motor Neuron Disease
    Yeo, Crystal Jing Jing
    Darras, Basil T.
    PEDIATRIC NEUROLOGY, 2020, 109 : 12 - 19
  • [23] Infantile spinal muscular atrophy: more than a motor neuron disease?
    Rudnik-Schoeneborn, S.
    Lorson, C. L.
    Shababi, M.
    MEDIZINISCHE GENETIK, 2013, 25 (03) : 347 - 351
  • [24] HuD interacts with survival motor neuron protein and can rescue spinal muscular atrophy-like neuronal defects
    Hubers, Lisa
    Valderrama-Carvajal, Hector
    Laframboise, Janik
    Timbers, Janie
    Sanchez, Gabriel
    Cote, Jocelyn
    HUMAN MOLECULAR GENETICS, 2011, 20 (03) : 553 - 579
  • [25] Survival Motor Neuron Protein in Motor Neurons Determines Synaptic Integrity in Spinal Muscular Atrophy
    Martinez, Tara L.
    Kong, Lingling
    Wang, Xueyong
    Osborne, Melissa A.
    Crowder, Melissa E.
    Van Meerbeke, James P.
    Xu, Xixi
    Davis, Crystal
    Wooley, Joe
    Goldhamer, David J.
    Lutz, Cathleen M.
    Rich, Mark M.
    Sumner, Charlotte J.
    JOURNAL OF NEUROSCIENCE, 2012, 32 (25): : 8703 - 8715
  • [26] Mitochondria, ER, and nuclear membrane defects reveal early mechanisms for upper motor neuron vulnerability with respect to TDP-43 pathology
    Gautam, Mukesh
    Jara, Javier H.
    Kocak, Nuran
    Rylaarsdam, Lauren E.
    Kim, Ki Dong
    Bigio, Eileen H.
    Ozdinler, P. Hande
    ACTA NEUROPATHOLOGICA, 2019, 137 (01) : 47 - 69
  • [27] Mitochondria, ER, and nuclear membrane defects reveal early mechanisms for upper motor neuron vulnerability with respect to TDP-43 pathology
    Mukesh Gautam
    Javier H. Jara
    Nuran Kocak
    Lauren E. Rylaarsdam
    Ki Dong Kim
    Eileen H. Bigio
    P. Hande Özdinler
    Acta Neuropathologica, 2019, 137 : 47 - 69
  • [28] A Drosophila Model of Spinal Muscular Atrophy Uncouples snRNP Biogenesis Functions of Survival Motor Neuron from Locomotion and Viability Defects
    Praveen, Kavita
    Wen, Ying
    Matera, A. Gregory
    CELL REPORTS, 2012, 1 (06): : 624 - 631
  • [29] Mitigating aberrant Cdk5 activation alleviates mitochondrial defects and motor neuron disease symptoms in spinal muscular atrophy
    Miller, Nimrod
    Xu, Zhaofa
    Quinlan, Katharina A.
    Ji, Amy
    Mcgivern, Jered, V
    Feng, Zhihua
    Shi, Han
    Ko, Chien-Ping
    Tsai, Li-Huei
    Heckman, Charles J.
    Ebert, Allison D.
    Ma, Yongchao C.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2023, 120 (47)
  • [30] Hybrid survival motor neuron genes in Japanese patients with spinal muscular atrophy
    Nishio, H
    Horikawa, H
    Yakura, H
    Sugie, K
    Nakamuro, T
    Koterazawa, K
    Ishikawa, Y
    Lee, MJ
    Wada, H
    Takeshima, Y
    Matsuo, M
    Sumino, K
    ACTA NEUROLOGICA SCANDINAVICA, 1999, 99 (06): : 374 - 380