Specific Signal Transduction of Constitutively Activating (D576G) and Inactivating (R476H) Mutants of Agonist-Stimulated Luteinizing Hormone Receptor in Eel

Author:

Choi Seung-Hee1ORCID,Byambaragchaa Munkhzaya2,Kim Dae-Jung3,Lee Jong-Hyuk4ORCID,Kang Myung-Hwa5,Min Kwan-Sik126ORCID

Affiliation:

1. Animal BioScience, School of Animal Life Convergence, Hankyong National University, Ansung 17579, Republic of Korea

2. Institute of Genetic Engineering, Hankyong National University, Ansung 17579, Republic of Korea

3. Aquaculture Industry Division, South Sea Fisheries Research Institute, National Institute of Fisheries Science (NIFS), Yeosu 59780, Republic of Korea

4. College of Pharmacy, Chung-Ang University, Seoul 06974, Republic of Korea

5. Department of Food Science and Nutrition, Hoseo University, Asan 31499, Republic of Korea

6. Carbon-Neutral Resources Research Center, Hankyong National University, Ansung 17579, Republic of Korea

Abstract

We investigated the mechanism of signal transduction using inactivating (R476H) and activating (D576G) mutants of luteinizing hormone receptor (LHR) of eel at the conserved regions of intracellular loops II and III, respectively, naturally occurring in mammalian LHR. The expression of D576G and R476H mutants was approximately 58% and 59%, respectively, on the cell surface compared to those of eel LHR-wild type (wt). In eel LHR-wt, cAMP production increased upon agonist stimulation. Cells expressing eel LHR-D576G, a highly conserved aspartic acid residue, exhibited a 5.8-fold increase in basal cAMP response; however, the maximal cAMP response by high-agonist stimulation was approximately 0.62-fold. Mutation of a highly conserved arginine residue in the second intracellular loop of eel LHR (LHR-R476H) completely impaired the cAMP response. The rate of loss in cell-surface expression of eel LHR-wt and D576G mutant was similar to the agonist recombinant (rec)-eel LH after 30 min. However, the mutants presented rates of loss higher than eel LHR-wt did upon rec-eCG treatment. Therefore, the activating mutant constitutively induced cAMP signaling. The inactivating mutation resulted in the loss of LHR expression on the cell surface and no cAMP signaling. These data provide valuable information regarding the structure–function relationship of LHR–LH complexes.

Funder

KOREAN RESEARCH FOUNDATION PROGRAM

NATIONAL INSTITUTE OF FISHERIES SCIENCE

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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