Mapping Brain-Wide Afferent Inputs of Parvalbumin-Expressing GABAergic Neurons in Barrel Cortex Reveals Local and Long-Range Circuit Motifs

绘制桶状皮质中表达小白蛋白的 GABA 能神经元的全脑传入输入图谱,揭示局部和长程回路基序

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作者:Georg Hafner, Mirko Witte, Julien Guy, Nidhi Subhashini, Lief E Fenno, Charu Ramakrishnan, Yoon Seok Kim, Karl Deisseroth, Edward M Callaway, Martina Oberhuber, Karl-Klaus Conzelmann, Jochen F Staiger

Abstract

Parvalbumin (PV)-expressing GABAergic neurons are the largest class of inhibitory neocortical cells. We visualize brain-wide, monosynaptic inputs to PV neurons in mouse barrel cortex. We develop intersectional rabies virus tracing to specifically target GABAergic PV cells and exclude a small fraction of excitatory PV cells from our starter population. Local inputs are mainly from layer (L) IV and excitatory cells. A small number of inhibitory inputs originate from LI neurons, which connect to LII/III PV neurons. Long-range inputs originate mainly from other sensory cortices and the thalamus. In visual cortex, most transsynaptically labeled neurons are located in LIV, which contains a molecularly mixed population of projection neurons with putative functional similarity to LIII neurons. This study expands our knowledge of the brain-wide circuits in which PV neurons are embedded and introduces intersectional rabies virus tracing as an applicable tool to dissect the circuitry of more clearly defined cell types.

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