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利用基因编码标记和体式电子显微镜技术鉴定长程突触输入。

Identifying long-range synaptic inputs using genetically encoded labels and volume electron microscopy.

机构信息

Epigenetics & Neurobiology Unit, European Molecular Biology Laboratory (EMBL), Via Ramarini 32, 00015, Monterotondo, RM, Italy.

Electron Microscopy Core Facility (EMCF), European Molecular Biology Laboratory (EMBL), 69117, Meyerhofstr, Germany.

出版信息

Sci Rep. 2022 Jun 17;12(1):10213. doi: 10.1038/s41598-022-14309-4.

Abstract

Enzymes that facilitate the local deposition of electron dense reaction products have been widely used as labels in electron microscopy (EM) for the identification of synaptic contacts in neural tissue. Peroxidases, in particular, can efficiently metabolize 3,3'-diaminobenzidine tetrahydrochloride hydrate (DAB) to produce precipitates with high contrast under EM following heavy metal staining, and can be genetically encoded to facilitate the labeling of specific cell-types or organelles. Nevertheless, the peroxidase/DAB method has so far not been reported to work in a multiplexed manner in combination with 3D volume EM techniques (e.g. Serial blockface electron microscopy, SBEM; Focused ion beam electron microscopy, FIBSEM) that are favored for the large-scale ultrastructural assessment of synaptic architecture However, a recently described peroxidase with enhanced enzymatic activity (dAPEX2) can efficienty deposit EM-visible DAB products in thick tissue without detergent treatment opening the possibility for the multiplex labeling of genetically defined cell-types in combination with volume EM methods. Here we demonstrate that multiplexed dAPEX2/DAB tagging is compatible with both FIBSEM and SBEM volume EM approaches and use them to map long-range genetically identified synaptic inputs from the anterior cingulate cortex to the periaqueductal gray in the mouse brain.

摘要

在电子显微镜(EM)中,广泛使用有助于电子致密反应产物局部沉积的酶作为标记物,以识别神经组织中的突触接触。过氧化物酶,特别是可以有效地代谢 3,3'-二氨基联苯胺四盐酸盐一水合物(DAB),在重金属染色后产生具有高对比度的沉淀物,并且可以进行基因编码以促进特定细胞类型或细胞器的标记。然而,迄今为止,过氧化物酶/DAB 方法尚未与 3D 体积 EM 技术(例如,连续块面电子显微镜,SBEM;聚焦离子束电子显微镜,FIBSEM)结合以多路复用方式报告工作,这些技术有利于对突触结构进行大规模超微结构评估。然而,最近描述的一种具有增强酶活性的过氧化物酶(dAPEX2)可以有效地在没有去污剂处理的厚组织中沉积 EM 可见的 DAB 产物,为结合体积 EM 方法对遗传定义的细胞类型进行多路标记开辟了可能性。在这里,我们证明了多路复用的 dAPEX2/DAB 标记与 FIBSEM 和 SBEM 体积 EM 方法兼容,并使用它们来绘制来自小鼠大脑扣带前皮质的长程遗传鉴定的突触输入到导水管周围灰质的图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e965/9205864/96ad141cc7a7/41598_2022_14309_Fig1_HTML.jpg

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