Characterization of a knock-in mouse line expressing a fusion protein of k opioid receptor conjugated with tdtomato: 3-dimensional brain imaging via clarity

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Abstract

Activation of k opioid receptor (KOR) produces analgesia, antipruritic effect, sedation and dysphoria. To characterize neuroanatomy of KOR at high resolutions and circumvent issues of specificity of KOR antibodies, we generated a knock-in mouse line expressing KOR fused at the C terminus with the fluorescent protein tdTomato (KtdT). The selective KOR agonist U50,488H caused anti-scratch effect and hypolocomotion, indicating intact KOR neuronal circui-tries. Clearing of brains with CLARITY revealed three-dimensional (3-D) images of distribution of KOR, and any G-protein-coupled receptors, for the first time. 3-D brain images of KtdT and immunohistochemistry (IHC) on brain sections with antibodies against tdTomato show similar distribution to that of autoradiography of [3H]U69,593 binding to KOR in wild-type mice. KtdT was observed in regions involved in reward and aversion, pain modulation, and neu-roendocrine regulation. KOR is present in several areas with unknown roles, including the claustrum (CLA), dorsal en-dopiriform nucleus, paraventricular nucleus of the thalamus (PVT), lateral habenula (LHb), and substantia nigra pars reticulata (SNr), which are discussed. Prominent KtdT-containing fibers were observed to project from caudate puta-men (CP) and nucleus accumbens (ACB) to substantia innominata (SI) and SNr. Double IHC revealed co-localization of KtdT with tyrosine hydroxylase (TH) in brain regions, including CP, ACB, and ventral tegmental area (VTA). KOR was visualized at the cellular level, such as co-localization with TH and agonist-induced KOR translocation into intra-cellular space in some VTA neurons. These mice thus represent a powerful and heretofore unparalleled tool for neu-roanatomy of KOR at both the 3-D and cellular levels.

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Chen, C., Willhouse, A. H., Huang, P., Ko, N., Wang, Y., Xu, B., … Liu-Chen, L. Y. (2020). Characterization of a knock-in mouse line expressing a fusion protein of k opioid receptor conjugated with tdtomato: 3-dimensional brain imaging via clarity. ENeuro, 7(4), 1–18. https://doi.org/10.1523/ENEURO.0028-20.2020

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