Behavioural profile of a new mouse model for NPY deficiency

被引:106
作者
Karl, Tim [1 ,2 ]
Duffy, Liesl [1 ,2 ]
Herzog, Herbert [1 ]
机构
[1] Garvan Inst Med Res, Neurosci Res Program, Sydney, NSW 2010, Australia
[2] Schizophrenia Res Inst, Sydney, NSW, Australia
关键词
anxiety; exploration; learning; motor activity; NPY knockout mouse; sex;
D O I
10.1111/j.1460-9568.2008.06306.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The abundantly expressed neuropeptide Y (NPY) plays an important role in anxiety and stress reactivity, as exogenous NPY administration reduces anxiety-like behaviour in rodents. However, unlike the potent effects of NPY seen in pharmacological studies, two independent examinations of a genetic mouse model for NPY deficiency have shown only subtle, inconsistent and task-dependent anxiety-related phenotypes for male mutants. Here we present results of a newly developed germline NPY-knockout model, which has been characterized behaviourally using a comprehensive multi-tiered phenotyping strategy. Mice of both sexes were investigated in locomotion and exploration tasks, anxiety-related paradigms, a hippocampus-dependent memory test and a battery of basic tasks screening for sensory and motor functions. Male and female NPY-deficient mice consistently demonstrated suppressed levels of locomotion and exploration. Furthermore, mutant mice exhibited a pronounced anxiogenic-like phenotype when tested in spatiotemporal anxiety-relevant paradigms (i.e. elevated-plus maze, open field and light-dark task). Importantly, this phenotype was more pronounced in male NPY mutants, revealing a moderate sexually dimorphic impact of NPY deficiency on behaviour. Interestingly, lack of NPY did not result in impaired learning and memory in either sex. Our carefully selected comprehensive behavioural phenotyping strategy revealed a consistent hypolocomotive and sex-dependent anxious-like phenotype. This new NPY-knockout mouse model reveals the importance of sex-specific testing. It also offers a potent new model for research into anxiety-related disorders and suggests potential treatment options for these conditions via the NPY system.
引用
收藏
页码:173 / 180
页数:8
相关论文
共 48 条
[1]   NEUROPEPTIDE-Y DISTRIBUTION IN HUMAN-BRAIN [J].
ADRIAN, TE ;
ALLEN, JM ;
BLOOM, SR ;
GHATEI, MA ;
ROSSOR, MN ;
ROBERTS, GW ;
CROW, TJ ;
TATEMOTO, K ;
POLAK, JM .
NATURE, 1983, 306 (5943) :584-586
[2]   Testosterone rapidly reduces anxiety in male house mice (Mus musculus) [J].
Aikey, JL ;
Nyby, JG ;
Anmuth, DM ;
James, PJ .
HORMONES AND BEHAVIOR, 2002, 42 (04) :448-460
[3]   Behavioral characterization of neuropeptide Y knockout mice [J].
Bannon, AW ;
Seda, J ;
Carmouche, M ;
Francis, JM ;
Norman, MH ;
Karbon, B ;
McCaleb, ML .
BRAIN RESEARCH, 2000, 868 (01) :79-87
[4]   NEUROPEPTIDE-Y POTENTIATES LUTEINIZING-HORMONE (LH)-RELEASING HORMONE-INDUCED LH-SECRETION ONLY UNDER CONDITIONS LEADING TO PREOVULATORY LH SURGES [J].
BAUERDANTOIN, AC ;
MCDONALD, JK ;
LEVINE, JE .
ENDOCRINOLOGY, 1992, 131 (06) :2946-2952
[5]  
BOISSIER J R, 1962, Therapie, V17, P1225
[6]   TRANSFER OF RESPONDING BETWEEN DIFFERENT STIMULI IN RATS TRAINED IN 2 AVOIDANCE TASKS [J].
BOVET, D ;
RENZI, P ;
OLIVERIO, A .
LIFE SCIENCES PART 1 PHYSIOLOGY AND PHARMACOLOGY AND PART 2 BIOCHEMISTRY GENERAL AND MOLECULAR BIOLOGY, 1969, 8 (12P2) :575-&
[7]  
BROQUA P, 1995, BEHAV PHARMACOL, V6, P215
[8]   Aged neuropeptide Y transgenic rats are resistant to acute stress but maintain spatial and non-spatial learning [J].
Carvajal, CC ;
Vercauteren, F ;
Dumont, Y ;
Michalkiewicz, M ;
Quirion, R .
BEHAVIOURAL BRAIN RESEARCH, 2004, 153 (02) :471-480
[9]   A proposed test battery and constellations of specific behavioral paradigms to investigate the behavioral phenotypes of transgenic and knockout mice [J].
Crawley, JN ;
Paylor, R .
HORMONES AND BEHAVIOR, 1997, 31 (03) :197-211
[10]   Behavioral phenotyping of transgenic and knockout mice: experimental design and evaluation of general health, sensory functions, motor abilities, and specific behavioral tests [J].
Crawley, JN .
BRAIN RESEARCH, 1999, 835 (01) :18-26