Ablation of microRNAs in VIP+ interneurons impairs olfactory discrimination and decreases neural activity in the olfactory bulb

Aim MicroRNAs (miRNAs) are abundantly expressed in vasoactive intestinal peptide expressing (VIP+) interneurons and are indispensable for their functional maintenance and survival. Here, we blocked miRNA biogenesis in postmitotic VIP+ interneurons in mice by selectively ablating Dicer, an enzyme ess...

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Published inActa Physiologica Vol. 234; no. 2; pp. e13767 - n/a
Main Authors Wu, Jing, Liu, Penglai, Mao, Xingfeng, Qiu, Fang, Gong, Ling, Wu, Jinyun, Wang, Dejuan, He, Miao, Li, Anan
Format Journal Article
LanguageEnglish
Published England 01.02.2022
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Summary:Aim MicroRNAs (miRNAs) are abundantly expressed in vasoactive intestinal peptide expressing (VIP+) interneurons and are indispensable for their functional maintenance and survival. Here, we blocked miRNA biogenesis in postmitotic VIP+ interneurons in mice by selectively ablating Dicer, an enzyme essential for miRNA maturation, to study whether ablation of VIP+ miRNA affects olfactory function and neural activity in olfactory centres such as the olfactory bulb, which contains a large number of VIP+ interneurons. Methods A go/no‐go odour discrimination task and a food‐seeking test were used to assess olfactory discrimination and olfactory detection. In vivo electrophysiological techniques were used to record single units and local field potentials. Results Olfactory detection and olfactory discrimination behaviours were impaired in VIP+‐specific Dicer‐knockout mice. In vivo electrophysiological recordings in awake, head‐fixed mice showed that both spontaneous and odour‐evoked firing rates were decreased in mitral/tufted cells in knockout mice. The power of ongoing and odour‐evoked beta local field potentials response of the olfactory bulb and anterior piriform cortex were dramatically decreased. Furthermore, the coherence of theta oscillations between the olfactory bulb and anterior piriform cortex was decreased. Importantly, Dicer knockout restricted to olfactory bulb VIP+ interneurons recapitulated the behavioural and electrophysiological results of the global knockout. Conclusions VIP+ miRNAs are an important factor in sensory processing, affecting olfactory function and olfactory neural activity.
Bibliography:Funding information
See editorial article: Simoes de Souza Fabio M. Restrepo D. 2022 Does miRNA ablation in VIP+ interneurons of the olfactory bulb impair olfaction?
This work was supported by the National Key R&D Programme of China (2018YFA0108000 to M. H.), the National Natural Science Foundation of China (NSFC, 31872771 and 32070995 to A.L, 31700895 and 32071024 to D.W, 31970971 and 31771196 to M. H., 32000729 to LG: 32171087), the Natural Science Foundation of Jiangsu Province (BK20170260 to D.W), the Shanghai Rising‐Star Programme (18QA1400600 to M. H.), the Shanghai Municipal Science and Technology Major Project (No.2018SHZDZX01) and ZJLab
Acta Physiol
(Oxf). e13755.
Jing Wu, Penglai Liu and Xingfeng Mao contributed equally.
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ISSN:1748-1708
1748-1716
DOI:10.1111/apha.13767