Key Laboratory of Aquatic Biodiversity and Conservation, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.
Int J Mol Sci. 2023 Feb 15;24(4):3869. doi: 10.3390/ijms24043869.
G protein-coupled receptors (GPCRs) are the largest family of transmembrane receptors and play important roles in many physiological processes. As a representative group of protozoa, ciliates represent the highest stage of eukaryotic cell differentiation and evolution in terms of their reproductive mode, two-state karyotype, and extremely diverse cytogenesis patterns. GPCRs have been poorly reported in ciliates. In this study, we identified 492 GPCRs in 24 ciliates. Using the existing classification system for animals, GPCRs in ciliates can be assigned to four families, including families A, B, E, and F. Most (377 members) belong to family A. The number of GPCRs is extremely different in different ciliates; the Heterotrichea ciliates usually have more GPCRs than other ciliates. Parasitic or symbiotic ciliates usually have only a few GPCRs. Gene/genome duplication events seem to play important roles in the expansion of the GPCR superfamily in ciliates. GPCRs in ciliates displayed seven typical domain organizations. GPCRs in an ortholog group are common and conserved in all ciliates. The gene expression analysis of the members in this conserved ortholog group in the model ciliate, , suggested that these GPCRs play important roles in the life cycle of ciliates. In summary, this study provides the first comprehensive genome-wide identification of GPCRs in ciliates, improving our understanding of the evolution and function of GPCR in ciliates.
G 蛋白偶联受体(GPCRs)是最大的跨膜受体家族,在许多生理过程中发挥着重要作用。作为原生动物的一个代表群体,纤毛虫在生殖模式、二态性核型和极其多样化的细胞发生模式方面代表了真核细胞分化和进化的最高阶段。GPCR 在纤毛虫中的报道较少。在这项研究中,我们在 24 种纤毛虫中鉴定了 492 种 GPCR。使用现有的动物分类系统,纤毛虫中的 GPCR 可分为四个家族,包括 A、B、E 和 F 家族。大多数(377 个成员)属于 A 家族。不同纤毛虫中的 GPCR 数量差异极大;异毛目纤毛虫通常比其他纤毛虫拥有更多的 GPCR。寄生或共生的纤毛虫通常只有少数几个 GPCR。基因/基因组复制事件似乎在纤毛虫 GPCR 超家族的扩张中发挥了重要作用。纤毛虫中的 GPCR 具有七个典型的结构域组织。同源物组中的 GPCR 在所有纤毛虫中都是常见且保守的。在模式纤毛虫中,这个保守同源物组中成员的基因表达分析表明,这些 GPCR 在纤毛虫的生命周期中发挥着重要作用。总之,这项研究首次全面鉴定了纤毛虫中的 GPCR,提高了我们对 GPCR 在纤毛虫中的进化和功能的理解。