Cortical Axonal Secretion of BDNF in the Striatum Is Disrupted in the Mutant-huntingtin Knock-in Mouse Model of Huntington's Disease

被引:20
作者
Park, Hyungju [1 ,2 ]
机构
[1] Univ Calif Berkeley, Helen Wills Neurosci Inst, Dept Mol & Cell Biol, Div Neurobiol, Berkeley, CA 94720 USA
[2] Korea Brain Res Inst, Dept Struct & Funct Neural Network, Mol Neurobiol Lab, Daegu 41062, South Korea
关键词
BDNF; Huntington's disease; antisense oligonucleotide; corticostriatal synapse; LONG-TERM POTENTIATION; NEUROTROPHIC FACTOR; ANTISENSE OLIGONUCLEOTIDES; BRAIN; EXPRESSION; PHENOTYPES; TRANSPORT; REPEAT; MICE; ASTROCYTES;
D O I
10.5607/en.2018.27.3.217
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
Deficient BDNF signaling is known to be involved in neurodegenerative diseases such as Huntington's disease (HD). Mutant huntingtin (mhtt)-mediated disruption of either BDNF transcription or transport is thought to be a factor contributing to striatal atrophy in the HD brain. Whether and how activity-dependent BDNF secretion is affected by the mhtt remains unclear. In the present study, I provide evidence for differential effects of the mhtt on cortical BDNF secretion in the striatum during HD progression. By two-photon imaging of fluorescent BDNF sensor (BDNF-pHluorin and -EGFP) in acute striatal slices of HD knock-in model mice, I found deficient cortical BDNF secretion regardless of the HD onset, but antisense oligonucleotide (ASO)-mediated reduction of htts only rescues BDNF secretion in the early HD brain before the disease onset. Although secretion modes of individual BDNF-containing vesicle were not altered in the pre-symptomatic brain, the full-fusion and partial-fusion modes of BDNF-containing vesicles were significantly altered after the onset of HD symptoms. Thus, besides abnormal BDNF transcription and transport, our results suggest that mhtt-mediated alteration in activity-dependent BDNF secretion at corticostriatal synapses also contributes to the development of HD.
引用
收藏
页码:217 / 225
页数:9
相关论文
共 33 条
[1]   Anterograde transport of brain-derived neurotrophic factor and its role in the brain [J].
Altar, CA ;
Cai, N ;
Bliven, T ;
Juhasz, M ;
Conner, JM ;
Acheson, AL ;
Lindsay, RM ;
Wiegand, SJ .
NATURE, 1997, 389 (6653) :856-860
[2]   BDNF signaling and survival of striatal neurons [J].
Baydyuk, Maryna ;
Xu, Baoji .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2014, 8
[3]   Potent and Selective Antisense Oligonucleotides Targeting Single-Nucleotide Polymorphisms in the Huntington Disease Gene/Allele-Specific Silencing of Mutant Huntingtin [J].
Carroll, Jeffrey B. ;
Warby, Simon C. ;
Southwell, Amber L. ;
Doty, Crystal N. ;
Greenlee, Sarah ;
Skotte, Niels ;
Hung, Gene ;
Bennett, C. Frank ;
Freier, Susan M. ;
Hayden, Michael R. .
MOLECULAR THERAPY, 2011, 19 (12) :2178-2185
[4]  
Conner JM, 1997, J NEUROSCI, V17, P2295
[5]   Differential loss of thalamostriatal and corticostriatal input to striatal projection neuron types prior to overt motor symptoms in the Q140 knock-in mouse model of Huntington's disease [J].
Deng, Yun-Ping ;
Wong, Ting ;
Wan, Jim Y. ;
Reiner, Anton .
FRONTIERS IN SYSTEMS NEUROSCIENCE, 2014, 8
[6]   Expression of mutant huntingtin blocks exocytosis in PC12 cells by depletion of complexin II [J].
Edwardson, JM ;
Wang, CT ;
Gong, B ;
Wyttenbach, A ;
Bai, JH ;
Jackson, MB ;
Chapman, ER ;
Morton, AJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (33) :30849-30853
[7]   Huntingtin controls neurotrophic support and survival of neurons by enhancing BDNF vesicular transport along microtubules [J].
Gauthier, LR ;
Charrin, BC ;
Borrell-Pagès, M ;
Dompierre, JP ;
Rangone, H ;
Cordelières, FP ;
De Mey, J ;
MacDonald, ME ;
Lessmann, V ;
Humbert, S ;
Saudou, F .
CELL, 2004, 118 (01) :127-138
[8]   Brain-derived neurotrophic factor over-expression in the forebrain ameliorates Huntington's disease phenotypes in mice [J].
Gharami, Kusumika ;
Xie, Yuxiang ;
An, Juan Ji ;
Tonegawa, Susumu ;
Xu, Baoji .
JOURNAL OF NEUROCHEMISTRY, 2008, 105 (02) :369-379
[9]   BDNF regulation under GFAP promoter provides engineered astrocytes as a new approach for long-term protection in Huntington's disease [J].
Giralt, A. ;
Friedman, H. C. ;
Caneda-Ferron, B. ;
Urban, N. ;
Moreno, E. ;
Rubio, N. ;
Blanco, J. ;
Peterson, A. ;
Canals, J. M. ;
Alberch, J. .
GENE THERAPY, 2010, 17 (10) :1294-1308
[10]   Conditional BDNF release under pathological conditions improves Huntington's disease pathology by delaying neuronal dysfunction [J].
Giralt, Albert ;
Carreton, Olga ;
Lao-Peregrin, Cristina ;
Martin, Eduardo D. ;
Alberch, Jordi .
MOLECULAR NEURODEGENERATION, 2011, 6