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解码非鼻外嗅觉受体的挑战与可能的解决方案。

Challenges and possible solutions for decoding extranasal olfactory receptors.

机构信息

Department of Computational Biology, Indraprastha Institute of Information Technology, New Delhi, India, India.

Pathfinder Research and Training Foundation, Greater Noida, India.

出版信息

FEBS J. 2021 Jul;288(14):4230-4241. doi: 10.1111/febs.15606. Epub 2020 Nov 6.

Abstract

Olfactory receptors are primarily known to be expressed in the olfactory epithelium of the nasal cavity and therefore assist in odor perception. With the advent of high-throughput omics technologies such as tissue microarray or RNA sequencing, a large number of olfactory receptors have been reported to be expressed in the nonolfactory tissues. Although these technologies uncovered the expression of these olfactory receptors in the nonchemosensory tissues, unfortunately, they failed to reveal the information about their cell type of origin. Accurate characterization of the cell types should be the first step towards devising cell type-specific assays for their functional evaluation. Single-cell RNA-sequencing technology resolved some of these apparent limitations and opened new means to interrogate the expression of these extranasal olfactory receptors at the single-cell resolution. Moreover, the availability of large-scale, multi-organ/species single-cell expression atlases offer ample resources for the systematic reannotation of these receptors in a cell type-specific manner. In this Viewpoint article, we discuss some of the technical limitations that impede the in-depth understanding of these extranasal olfactory receptors, with a special focus on odorant receptors. Moreover, we also propose a list of single cell-based omics technologies that could further promulgate the opportunity to decipher the regulatory network that drives the odorant receptors expression at atypical locations.

摘要

嗅觉受体主要表达在鼻腔的嗅上皮中,因此有助于嗅觉感知。随着高通量组学技术(如组织微阵列或 RNA 测序)的出现,大量嗅觉受体已被报道在非嗅觉组织中表达。尽管这些技术揭示了这些嗅觉受体在非化学感觉组织中的表达,但不幸的是,它们未能揭示其细胞起源类型的信息。准确描述细胞类型应该是设计针对其功能评估的细胞类型特异性测定的第一步。单细胞 RNA 测序技术解决了其中的一些明显限制,并为在单细胞分辨率下研究这些外鼻嗅觉受体的表达开辟了新的途径。此外,大规模、多器官/物种单细胞表达图谱的出现为这些受体以细胞类型特异性的方式进行系统重新注释提供了丰富的资源。在这篇观点文章中,我们讨论了一些阻碍深入了解这些外鼻嗅觉受体的技术限制,特别是气味受体。此外,我们还提出了一系列基于单细胞的组学技术,这些技术可以进一步推动机会,以阐明驱动非典型部位气味受体表达的调控网络。

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