The methamphetamine-sensitive circadian oscillator is dysfunctional in a transgenic mouse model of Huntington's disease

被引:20
作者
Cuesta, Marc [1 ]
Aungier, Juliet [1 ]
Morton, A. Jennifer [1 ]
机构
[1] Univ Cambridge, Dept Pharmacol, Cambridge CB2 1PD, England
关键词
Huntington's disease; R6/2; Circadian; Methamphetamine; L-DOPA; Sleep; PARKINSONS-DISEASE; GENE-EXPRESSION; CLOCK GENES; INDUCED NEUROTOXICITY; NOCTURNAL SLEEP; ACTIVITY RHYTHM; LESIONED RATS; BASAL GANGLIA; DOPAMINE; MICE;
D O I
10.1016/j.nbd.2011.07.016
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A progressive disintegration of the rest-activity rhythm has been observed in the R6/2 mouse model of Huntington's disease (HD). Rest-activity rhythm is controlled by a circadian clock located in the suprachiasmatic nuclei (SCN) of the hypothalamus, although SCN-independent oscillators such as the methamphetamine (MAP)-sensitive circadian oscillator (MASCO) can also control rhythmicity, even in SCN-lesioned animals. We aimed to test whether or not the administration of MAP could restore a normal rest-activity rhythm in R6/2 mice, via the activation of the MASCO. We administered chronic low doses of MAP to wild-type (WT) and presymptomatic (7-8 weeks) R6/2 mice, in constant darkness. As expected, similar to 40% of the WT mice expressed a rest-activity rhythm controlled by the MASCO, with a period of around 32 h. By contrast, the MASCO was missing from almost 95% of the R6/2 mice, even at early stages of disease. Interestingly, although the MASCO was deficient, initially MAP was able to stabilize the day/night activity ratio in R6/2 mice and delay the onset of disintegration of the rest-activity rhythm driven by the SCN. Furthermore, in presymptomatic R6/2 mice treated with L-DOPA, a MASCO-like component began to emerge, although this never became established. Our data show a major dysfunction of the MASCO in presymptomatic R6/2 mice that is likely to be due to an early abnormality of the catecholaminergic systems. We suggest that the dysfunction of the MASCO in humans could be partially responsible for circadian disturbances observed in HD patients, as well as patients with other neurological diseases in which both catecholaminergic and circadian abnormalities are present, such as Parkinson's disease and schizophrenia. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:145 / 155
页数:11
相关论文
共 69 条
[31]   Molecular components of the mammalian circadian clock [J].
Ko, Caroline H. ;
Takahashi, Joseph S. .
HUMAN MOLECULAR GENETICS, 2006, 15 :R271-R277
[32]   Dysfunctions in circadian behavior and physiology in mouse models of Huntington's disease [J].
Kudo, Takashi ;
Schroeder, Analyne ;
Loh, Dawn H. ;
Kuljis, Dika ;
Jordan, Maria C. ;
Roos, Kenneth P. ;
Colwell, Christopher S. .
EXPERIMENTAL NEUROLOGY, 2011, 228 (01) :80-90
[33]  
Lamont EW, 2010, ISR J PSYCHIATR REL, V47, P27
[34]  
Lione LA, 1999, J NEUROSCI, V19, P10428
[35]   Anticipation and entrainment to feeding time in intact and SCN-ablated C57BL/6j mice [J].
Marchant, EG ;
Mistlberger, RE .
BRAIN RESEARCH, 1997, 765 (02) :273-282
[36]   Circadian activity rhythm in methamphetamine-treated Clock mutant mice [J].
Masubuchi, S ;
Honma, S ;
Abe, H ;
Nakamura, W ;
Honma, K .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2001, 14 (07) :1177-1180
[37]   Clock genes outside the suprachiasmatic nucleus involved in manifestation of locomotor activity rhythm in rats [J].
Masubuchi, S ;
Honma, S ;
Abe, H ;
Ishizaki, K ;
Namihira, M ;
Ikeda, M ;
Honma, K .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2000, 12 (12) :4206-4214
[38]   Disruption of Peripheral Circadian Timekeeping in a Mouse Model of Huntington's Disease and Its Restoration by Temporally Scheduled Feeding [J].
Maywood, Elizabeth S. ;
Fraenkel, Eloise ;
McAllister, Catherine J. ;
Wood, Nigel ;
Reddy, Akhilesh B. ;
Hastings, Michael H. ;
Morton, A. Jennifer .
JOURNAL OF NEUROSCIENCE, 2010, 30 (30) :10199-10204
[39]   Sleep disorders associated with Parkinson's disease: Role of dopamine, epidemiology, and clinical scales of assessment [J].
Mehta, Shyamal H. ;
Morgan, John C. ;
Sethi, Kapil D. .
CNS SPECTRUMS, 2008, 13 (03) :6-11