Mitochondrial structural and functional dynamics in Huntington's disease

被引:130
作者
Reddy, P. Hemachandra [1 ,2 ]
Mao, Peizhong [1 ]
Manczak, Maria [1 ]
机构
[1] Oregon Hlth & Sci Univ, Neurogenet Lab, Div Neurosci, Oregon Natl Primate Res Ctr, Beaverton, OR 97006 USA
[2] Oregon Hlth & Sci Univ, Dept Physiol & Pharmacol, Portland, OR 97201 USA
基金
美国国家卫生研究院;
关键词
Mitochondria; Huntington's Disease; Mitochondrial dynamics; Dimebon; Calcium dyshomeostasis; Polyglutamine repeat; NEURONAL INTRANUCLEAR INCLUSIONS; TRANSGENIC MOUSE MODEL; CLONAL STRIATAL CELLS; BASAL GANGLIA VOLUME; MUTANT HUNTINGTIN; CAG REPEAT; OXIDATIVE DAMAGE; IN-VIVO; PERMEABILITY TRANSITION; MEMBRANE ASSOCIATION;
D O I
10.1016/j.brainresrev.2009.04.001
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Huntington's disease (HD) is an autosomal, dominantly inherited neurodegenerative disorder, characterized by chorea, involuntary movements, and cognitive impairments. Tremendous progress has been made since the discovery of HD gene in 1993, in terms of developing animal models to study the disease process, unraveling the expression and function of wild-type and mutant huntingtin (Htt) proteins in the central and peripheral nervous systems, and understanding expanded CAG repeat containing mutant Htt protein interactions with CNS proteins in the disease process. HD progression has been found to involve several pathomechanisms, including expanded CAG repeat protein interaction with other CNS proteins, transcriptional dysregulation, calcium dyshomeostasis, abnormal vesicle trafficking, and defective mitochondrial bioenergetics. Recent studies have found that mutant Htt is associated with mitochondria and causes mitochondrial structural changes, decreases mitochondrial trafficking, and impairs mitochondrial dynamics in the neurons affected by HD. This article discusses recent developments in HD research, with a particular focus on intracellular and intramitochondrial calcium influx, mitochondrial DNA defects, and mitochondrial structural and functional abnormalities in HD development and progression. Further, this article outlines the current status of mitochondrial therapeutics with a special reference to Dimebon. (c) 2009 Elsevier B.V. All rights reserved
引用
收藏
页码:33 / 48
页数:16
相关论文
共 131 条
[41]   Extended polyglutamine repeats trigger a feedback loop involving the mitochondrial complex III, the proteasome and huntingtin aggregates [J].
Fukui, Hirokazu ;
Moraes, Carlos T. .
HUMAN MOLECULAR GENETICS, 2007, 16 (07) :783-797
[42]   Impaired Regulation of Brain Mitochondria by Extramitochondrial Ca2+ in Transgenic Huntington Disease Rats [J].
Gellerich, Frank N. ;
Gizatullina, Zemfira ;
Nguyen, Huu P. ;
Trumbeckaite, Sonata ;
Vielhaber, Stefan ;
Seppet, Enn ;
Zierz, Stephan ;
Landwehrmeyer, Bernhard ;
Riess, Olaf ;
von Hoersten, Stephan ;
Striggow, Frank .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (45) :30715-30724
[43]   A POLYMORPHIC DNA MARKER GENETICALLY LINKED TO HUNTINGTONS-DISEASE [J].
GUSELLA, JF ;
WEXLER, NS ;
CONNEALLY, PM ;
NAYLOR, SL ;
ANDERSON, MA ;
TANZI, RE ;
WATKINS, PC ;
OTTINA, K ;
WALLACE, MR ;
SAKAGUCHI, AY ;
YOUNG, AB ;
SHOULSON, I ;
BONILLA, E ;
MARTIN, JB .
NATURE, 1983, 306 (5940) :234-238
[44]   Rate and correlates of weight change in Huntington's disease [J].
Hamilton, JM ;
Wolfson, T ;
Peavy, GM ;
Jacobson, MW ;
Corey-Bloom, J .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2004, 75 (02) :209-212
[45]  
HAMILTON JM, 1996, ARCH NEUROL-CHICAGO, V53, P316
[46]   RNA interference improves motor and neuropathological abnormalities in a Huntington's disease mouse model [J].
Harper, SQ ;
Staber, PD ;
He, XH ;
Eliason, SL ;
Martins, IH ;
Mao, QW ;
Yang, L ;
Kotin, RM ;
Paulson, HL ;
Davidson, BL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (16) :5820-5825
[47]   Single photon emission computed tomographic blood flow and magnetic resonance volume imaging of basal ganglia in Huntington's disease [J].
Harris, GJ ;
Aylward, EH ;
Peyser, CE ;
Pearlson, GD ;
Brandt, J ;
RobertsTwillie, JV ;
Barta, PE ;
Folstein, SE .
ARCHIVES OF NEUROLOGY, 1996, 53 (04) :316-324
[48]   POSITRON EMISSION TOMOGRAPHY IN THE EARLY DIAGNOSIS OF HUNTINGTONS-DISEASE [J].
HAYDEN, MR ;
MARTIN, WRW ;
STOESSL, AJ ;
CLARK, C ;
HOLLENBERG, S ;
ADAM, MJ ;
AMMANN, W ;
HARROP, R ;
ROGERS, J ;
RUTH, T ;
SAYRE, C ;
PATE, BD .
NEUROLOGY, 1986, 36 (07) :888-894
[49]   Specific caspase interactions and amplification are involved in selective neuronal vulnerability in Huntington's disease [J].
Hermel, E ;
Gafni, J ;
Propp, SS ;
Leavitt, BR ;
Wellington, CL ;
Young, JE ;
Hackam, AS ;
Logvinova, AV ;
Peel, AL ;
Chen, SF ;
Hook, V ;
Singaraja, R ;
Krajewski, S ;
Goldsmith, PC ;
Ellerby, HM ;
Hayden, MR ;
Bredesen, DE ;
Ellerby, LM .
CELL DEATH AND DIFFERENTIATION, 2004, 11 (04) :424-438
[50]   A YAC mouse model for Huntington's disease with full-length mutant huntingtin, cytoplasmic toxicity, and selective striatal neurodegeneration [J].
Hodgson, JG ;
Agopyan, N ;
Gutekunst, CA ;
Leavitt, BR ;
LePiane, F ;
Singaraja, R ;
Smith, DJ ;
Bissada, N ;
McCutcheon, K ;
Nasir, J ;
Jamot, L ;
Li, XJ ;
Stevens, ME ;
Rosemond, E ;
Roder, JC ;
Phillips, AG ;
Rubin, EM ;
Hersch, SM ;
Hayden, MR .
NEURON, 1999, 23 (01) :181-192