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G 蛋白偶联受体作为调节和激活十足目甲壳动物化学感觉的候选者。

G protein-coupled receptors as candidates for modulation and activation of the chemical senses in decapod crustaceans.

机构信息

Neuroscience Institute, Georgia State University, Atlanta, Georgia, United States of America.

Yale Center for Genomic Analysis, Yale University, New Haven, Connecticut, United States of America.

出版信息

PLoS One. 2021 Jun 4;16(6):e0252066. doi: 10.1371/journal.pone.0252066. eCollection 2021.

Abstract

Many studies have characterized class A GPCRs in crustaceans; however, their expression in crustacean chemosensory organs has yet to be detailed. Class A GPCRs comprise several subclasses mediating diverse functions. In this study, using sequence homology, we classified all putative class A GPCRs in two chemosensory organs (antennular lateral flagellum [LF] and walking leg dactyls) and brain of four species of decapod crustaceans (Caribbean spiny lobster Panulirus argus, American lobster Homarus americanus, red-swamp crayfish Procambarus clarkii, and blue crab Callinectes sapidus). We identified 333 putative class A GPCRs- 83 from P. argus, 81 from H. americanus, 102 from P. clarkii, and 67 from C. sapidus-which belong to five distinct subclasses. The numbers of sequences for each subclass in the four decapod species are (in parentheses): opsins (19), small-molecule receptors including biogenic amine receptors (83), neuropeptide receptors (90), leucine-rich repeat-containing GPCRs (LGRs) (24), orphan receptors (117). Most class A GPCRs are predominately expressed in the brain; however, we identified multiple transcripts enriched in the LF and several in the dactyl. In total, we found 55 sequences with higher expression in the chemosensory organs relative to the brain across three decapod species. We also identified novel transcripts enriched in the LF including a metabotropic histamine receptor and numerous orphan receptors. Our work establishes expression patterns for class A GPCRs in the chemosensory organs of crustaceans, providing insight into molecular mechanisms mediating neurotransmission, neuromodulation, and possibly chemoreception.

摘要

许多研究已经对甲壳动物中的 A 类 G 蛋白偶联受体进行了描述;然而,它们在甲壳动物化学感受器官中的表达尚未详细描述。A 类 GPCR 包含几个亚类,介导多种功能。在这项研究中,我们使用序列同源性,对 4 种十足目甲壳动物(加勒比刺龙虾 Panulirus argus、美洲龙虾 Homarus americanus、红沼泽小龙虾 Procambarus clarkii 和蓝蟹 Callinectes sapidus)的两个化学感受器官(触角侧鞭毛[LF]和步行足指节)和大脑中的所有假定 A 类 GPCR 进行了分类。我们鉴定了 333 个假定的 A 类 GPCR-83 个来自 P. argus、81 个来自 H. americanus、102 个来自 P. clarkii、67 个来自 C. sapidus-它们属于五个不同的亚类。四个十足目物种中每个亚类的序列数量如下:视蛋白(19)、包括生物胺受体的小分子受体(83)、神经肽受体(90)、富含亮氨酸重复的 GPCR(LGRs)(24)、孤儿受体(117)。大多数 A 类 GPCR 主要在大脑中表达;然而,我们在 LF 中鉴定了多个丰度较高的转录本,在指节中也鉴定了几个。总共,我们在三个十足目物种中发现了 55 个在化学感受器官中相对大脑表达更高的序列。我们还鉴定了在 LF 中富集的新转录本,包括代谢型组胺受体和许多孤儿受体。我们的工作为甲壳动物化学感受器官中的 A 类 GPCR 表达模式提供了依据,为介导神经传递、神经调节和可能的化学感受的分子机制提供了线索。

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