鳗鱼黄体生成素受体组成型激活和失活突变体的细胞表面损失。

Development & reproduction Pub Date : 2021-12-01 Epub Date: 2021-12-31 DOI:10.12717/DR.2021.25.4.225
Munkhzaya Byambaragchaa, Seung-Hee Choi, Dong-Wan Kim, Kwan-Sik Min
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引用次数: 2

摘要

本研究旨在探讨日本鳗鲡(Anguilla japonica)黄体生成素受体(LHR)的两个组成型激活突变体(指定为L469R和D590Y)和两个失活突变体(D417N和Y558F)对细胞表面受体损失的机制,这两个突变体已知存在于人类LHR跨膜结构域。我们使用酶联免疫吸附法研究了HEK 293细胞的细胞表面受体损失。野生型鳗鱼LHR的表达量为100%,其中L469R和D417N的表达量分别为97%和101%,而D590Y和Y558F的表达量略有增加,分别约为110%和106%。组成型激活突变体L469R和D590Y表现出与野生型鳗鱼LHR相似的细胞表面损失减少的方式。在野生型和激活型突变体中,观察到细胞表面激动剂-受体复合物的丢失速度非常快(2.6-6.2分钟)。然而,在表达失活突变体D417N和Y558F的细胞中,尽管用高浓度激动剂处理,但在表达失活突变体D417N和Y558F的细胞中,细胞表面受体的损失轻微。这些结果为研究鱼类LHR功能以及糖蛋白激素受体中高度保守氨基酸突变的调控提供了重要信息。
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Cell-Surface Loss of Constitutive Activating and Inactivating Mutants of Eel Luteinizing Hormone Receptors.

The present study aimed to investigate the mechanism of cell surface receptor loss by two constitutively activating mutants (designated L469R, and D590Y) and two inactivating mutants (D417N and Y558F) of the luteinizing hormone receptor (LHR) in the Japanese eel Anguilla japonica, known to naturally occur in human LHR transmembrane domains. We investigated cell surface receptor loss using an enzyme-linked immunosorbent assay in HEK 293 cells. The expression level of wild-type eel LHR was considered to be 100%, and the expression levels of L469R and D417N were 97% and 101%, respectively, whereas the expression levels of D590Y and Y558F slightly increased to approximately 110% and 106%, respectively. The constitutively activating mutants L469R and D590Y exhibited a decrease in cell surface loss in a manner similar to that of wild-type eel LHR. The rates of loss of cell surface agonist-receptor complexes were observed to be very rapid (2.6-6.2 min) in both the wild-type eel LHR and activating mutants. However, cell surface receptor loss in the cells expressing inactivating mutants D417N and Y558F was slightly observed in the cells expressing inactivating mutants D417N and Y558F, despite treatment with a high concentration of agonist. These results provide important information on LHR function in fish and the regulation of mutations of highly conserved amino acids in glycoprotein hormone receptors.

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