The expression of DARPP-32 in adult male zebra finches (Taenopygia guttata)

被引:6
作者
Singh, Utkarsha A. [1 ]
Iyengar, Soumya [1 ]
机构
[1] Natl Brain Res Ctr Deemed Univ, Div Syst Neurosci, NH-8, Gurugram 122052, Haryana, India
关键词
DARPP-32; Dopamine; Core and shell regions; Anterior forebrain pathway; Vocal motor pathway; Zebra finch; ADENOSINE 3-5-MONOPHOSPHATE-REGULATED PHOSPHOPROTEIN; STRIATAL PROJECTION NEURONS; AVIAN SOMATOSENSORY SYSTEM; INNERVATED BRAIN-REGIONS; CHICK GALLUS-DOMESTICUS; BASAL GANGLIA; OPTIC TECTUM; IMMUNOHISTOCHEMICAL LOCALIZATION; HIPPOCAMPAL-FORMATION; TELENCEPHALIC NUCLEUS;
D O I
10.1007/s00429-019-01947-0
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Although the catecholaminergic circuitry in the zebra finch brain has been well studied, there is little information regarding the postsynaptic targets of dopamine. To answer this question, we looked at overall patterns of immunoreactivity for DARPP-32 (a dopamine and cAMP-regulated phosphoprotein, present mostly in dopaminoceptive neurons) in adult male zebra finches. Our results demonstrated that as in mammals and other avian species, DARPP-32 expression was highest in both medial and lateral striatum. Interestingly, a specific pattern of immunoreactivity was observed in the song control system, with 'core' song control regions, that is, LMANcore (lateral magnocellular nucleus of the anterior nidopallium), RA (nucleus robustus arcopallialis) and HVC being less immunoreactive for DARPP-32 than 'shell' areas such as LMANshell, RAcup, AId (intermediate arcopallium) and HVCshelf. Our results suggest that whereas dopamine may modulate the shell pathways at various levels of the AFP, dopaminergic modulation of the core pathway occurs mainly through Area X, a basal ganglia nucleus. Further, secondary sensory cortices including the perientopallial belt, Fields L1 and L3 had higher DARPP-32-immunoreactivity than primary sensory cortical areas such as the pallial basolateral nucleus, entopallium proper and Field L2, corresponding to somatosensory, visual and auditory systems, respectively. We also found DARPP-32-rich axon terminals surrounding dopaminergic neurons in the ventral tegmental area-substantia nigra complex which in turn project to the striatum, suggesting that there may be a reciprocal modulation between these regions. Overall, DARPP-32 expression appears to be higher in areas involved in integrating sensory information, which further supports the role of this protein as a molecular integrator of different signal processing pathways.
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页码:2939 / 2972
页数:34
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