Striosomes Mediate Value-Based Learning Vulnerable in Age and a Huntington’s Disease Model

生物 亨廷顿病 神经科学 纹状体 中棘神经元 帕尔瓦布明 疾病 内科学 多巴胺 医学
作者
Alexander Friedman,Emily Hueske,Sabrina M. Drammis,Sebastian E. Toro Arana,Erik D. Nelson,Cody W. Carter,Sébastien Delcasso,Raimundo Rodriguez,Hope Lutwak,Kaden S. DiMarco,Qingyang Zhang,Lara I. Rakocevic,Dan Hu,Joshua Xiong,Jiajia Zhao,Leif Gibb,Tomoko Yoshida,Cody A. Siciliano,Thomas Diefenbach,Charu Ramakrishnan
出处
期刊:Cell [Cell Press]
卷期号:183 (4): 918-934.e49 被引量:62
标识
DOI:10.1016/j.cell.2020.09.060
摘要

Learning valence-based responses to favorable and unfavorable options requires judgments of the relative value of the options, a process necessary for species survival. We found, using engineered mice, that circuit connectivity and function of the striosome compartment of the striatum are critical for this type of learning. Calcium imaging during valence-based learning exhibited a selective correlation between learning and striosomal but not matrix signals. This striosomal activity encoded discrimination learning and was correlated with task engagement, which, in turn, could be regulated by chemogenetic excitation and inhibition. Striosomal function during discrimination learning was disturbed with aging and severely so in a mouse model of Huntington's disease. Anatomical and functional connectivity of parvalbumin-positive, putative fast-spiking interneurons (FSIs) to striatal projection neurons was enhanced in striosomes compared with matrix in mice that learned. Computational modeling of these findings suggests that FSIs can modulate the striosomal signal-to-noise ratio, crucial for discrimination and learning.
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