What have we learned from Drosophila models of Parkinson's disease?

被引:27
作者
Bjorklund, Anders [1 ]
Cenci, M. Angela [2 ]
机构
[1] Lund Univ, Div Neurobiol, Wallenberg Neurosci Ctr, Lund, Sweden
[2] Lund Univ, Dept Expt Med Sci, Basal Ganglia Pathophysiol Unit, Lund, Sweden
来源
RECENT ADVANCES IN PARKINSONS DISEASE: TRANSLATIONAL AND CLINICAL RESEARCH | 2010年 / 184卷
关键词
Parkinson's disease; Drosophila; PINK1; parkin; mitochondria; dopaminergic neurons; animal model; mitochondrial fusion and fission; mitophagy; SERINE-PROTEASE HTRA2/OMI; LOSS-OF-FUNCTION; ALPHA-SYNUCLEIN; MITOCHONDRIAL DYSFUNCTION; CELL-DEATH; INCREASED SENSITIVITY; MUTATIONAL ANALYSIS; OXIDATIVE DAMAGE; DEFICIENT MICE; NEURON LOSS;
D O I
10.1016/S0079-6123(10)84001-4
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Parkinson's disease (PD) is characterized clinically by motor symptoms such as resting tremor, slowness of movement, rigidity, and postural instability, and pathologically by the degeneration of multiple neuronal types, including, most notably, dopaminergic (DA) neurons in the substantia nigra. Current medical treatment for PD focuses on dopamine replacement, but dopamine replacement ultimately fails and has little effect on a variety of dopamine-independent symptoms both within and outside the nervous system. To develop new therapies, we need to aim at alleviating widespread cellular defects in addition to those focusing on DA neuronal survival. Recent observations in Drosophila have provided important insights into the cellular basis of PD pathogenesis through the demonstration that two genes associated with familial forms of PD, pink1 and parkin, function in a common pathway. In this pathway, pink1 functions upstream of parkin to regulate mitochondrial fission/fusion dynamics and normal mitochondrial function. Subsequent observations in both fly and mammalian systems show that these proteins are important for sensing mitochondrial damage and recruiting damaged mitochondria to the quality control machinery for subsequent removal. This chapter reviews these findings, as well as studies of DJ-1 and Omi/HtrA2, two additional genes associated with PD that have also been implicated to regulate mitochondrial function. The chapter ends by discussing how Drosophila can be used to probe further the functions of pink1 and parkin and the regulation of mitochondrial quality more generally. In addition to PD, defects in mitochondrial function are associated with normal aging and with many diseases of aging. Thus, insights gained from the studies of mitochondrial dynamics and quality control in Drosophila are likely to be of general significance.
引用
收藏
页码:3 / 16
页数:14
相关论文
共 100 条
[31]  
HYDE BB, 2010, SEM CELL DE IN PRESS
[32]   Mutational analysis of the PINK1 gene in early-onset parkinsonism in Europe and North Africa [J].
Ibáñez, P ;
Lesage, S ;
Lohmann, E ;
Thobois, S ;
De Michele, G ;
Borg, M ;
Agid, Y ;
Dürr, A ;
Brice, A .
BRAIN, 2006, 129 :686-694
[33]   An RNAi screen for mitochondrial proteins required to maintain the morphology of the organelle in Caenorhabditis elegans [J].
Ichishita, Ryohei ;
Tanaka, Kousuke ;
Sugiura, Yoshimi ;
Sayano, Tomoko ;
Mihara, Katsuyoshi ;
Oka, Toshihiko .
JOURNAL OF BIOCHEMISTRY, 2008, 143 (04) :449-454
[34]   Parkin gene inactivation alters behaviour and dopamine neurotransmission in the mouse [J].
Itier, JM ;
Ibáñez, P ;
Mena, MA ;
Abbas, N ;
Cohen-Salmon, C ;
Bohme, GA ;
Laville, M ;
Pratt, J ;
Corti, O ;
Pradier, L ;
Ret, G ;
Joubert, C ;
Periquet, M ;
Araujo, F ;
Negroni, J ;
Casarejos, MJ ;
Canals, S ;
Solano, R ;
Serrano, A ;
Gallego, E ;
Sánchez, M ;
Denèfle, P ;
Benavides, J ;
Tremp, G ;
Rooney, TA ;
Brice, A ;
de Yébenes, JG .
HUMAN MOLECULAR GENETICS, 2003, 12 (18) :2277-2291
[35]   Loss of Omi mitochondrial protease activity causes the neuromuscular disorder of mnd2 mutant mice [J].
Jones, JM ;
Datta, P ;
Srinivasula, SM ;
Ji, WZ ;
Gupta, S ;
Zhang, ZJ ;
Davies, E ;
Hajnóczky, G ;
Saunders, TL ;
Van Keuren, ML ;
Fernandes-Alnemri, T ;
Meisler, MH ;
Alnemri, ES .
NATURE, 2003, 425 (6959) :721-727
[36]   DJ-1 and prevention of oxidative stress in Parkinson's disease and other age-related disorders [J].
Kahle, Philipp J. ;
Waak, Jens ;
Gasser, Thomas .
FREE RADICAL BIOLOGY AND MEDICINE, 2009, 47 (10) :1354-1361
[37]   PINK1 controls mitochondrial localization of Parkin through direct phosphorylation [J].
Kim, Yongsung ;
Park, Jeehye ;
Kim, Sunhong ;
Song, Saera ;
Won, Seok-Kyu ;
Lee, Sang-Hee ;
Kitada, Tohru ;
Kim, Jin-Man ;
Chung, Jongkyeong .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2008, 377 (03) :975-980
[38]   Mutations in the parkin gene cause autosomal recessive juvenile parkinsonism [J].
Kitada, T ;
Asakawa, S ;
Hattori, N ;
Matsumine, H ;
Yamamura, Y ;
Minoshima, S ;
Yokochi, M ;
Mizuno, Y ;
Shimizu, N .
NATURE, 1998, 392 (6676) :605-608
[39]   Impaired dopamine release and synaptic plasticity in the striatum of PINK1-deficient mice [J].
Kitada, Tohru ;
Pisani, Antonio ;
Porter, Douglas R. ;
Yamaguchi, Hiroo ;
Tscherter, Anne ;
Martella, Giuseppina ;
Bonsi, Paola ;
Zhang, Chen ;
Pothos, Emmanuel N. ;
Shen, Jie .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (27) :11441-11446
[40]   Absence of nigral degeneration in aged parkin/DJ-1/PINK1 triple knockout mice [J].
Kitada, Tohru ;
Tong, Youren ;
Gautier, Clement A. ;
Shen, Jie .
JOURNAL OF NEUROCHEMISTRY, 2009, 111 (03) :696-702