Literature DB >> 30056138

Site specificity of eel luteinizing hormone N-linked oligosaccharides in signal transduction.

Munkhzaya Byambaragchaa1, Dae-Jung Kim2, Myung-Hwa Kang3, Kwan-Sik Min4.   

Abstract

Eel luteinizing hormone (eelLH) is composed of a common α-subunit and hormone specific β-subunit, both of which contain asparagine-linked carbohydrate residues, located at positions 56 and 79 on the α-subunit and position 10 on the β-subunit. The specific roles of the individual carbohydrate chains are poorly defined in eel. Thus, we characterized the biologically active single chains by fusing the α-subunit to the carboxyl terminal region of the eelLH β-subunit. Site-directed mutagenesis of the three N-linked glycosylation sites was performed to examine the function of individual glycosylation sites in secretion and signal transduction. The absence of the Asn79N-linked sugar chain slightly reduced secretion in Chinese hamster ovary (CHO) cells. The expression of eelLHβ/α (wild-type) in CHO suspension cells was increased by approximately 2-fold higher than that of attached CHO cells. By western blotting analysis, the molecular weight of wild-type was found to be 32 kDa. Mutants (β/α△56, β/α△79, and β△10/α) of the oligosaccharide chain at a single site showed molecular weights that were reduced by approximately 10%. However, the double mutant (β/α△56.79) molecular weight was decreased by more than 20% compared to the wild-type. Enzymatic digestion of oligosaccharides using PNGaseF treatment showed that the molecular weights of all mutants, including wild-type, were reduced to 25 kDa. The results obtained in the absence of carbohydrates at Asn56 of the α-subunit and at Asn10 of the β-subunit revealed their roles in signal transduction through the eelLH receptor. The EC50 value of the cAMP response at Asn79 of the α-subunit was increased by 5-fold, whereas the maximum response was dramatically reduced to 17.8% of wild-type levels. Specifically, removal of the carbohydrates at double mutant (β/α△56.79) is approximately 85% to wild-type levels in biopotency. These results revealed the site-specific roles of eelLH carbohydrate residues. Our data suggest that N-linked oligosaccharide chains play a pivotal role in biological activity through the eelLH receptor.
Copyright © 2018 The Authors. Published by Elsevier Inc. All rights reserved.

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Year:  2018        PMID: 30056138     DOI: 10.1016/j.ygcen.2018.07.015

Source DB:  PubMed          Journal:  Gen Comp Endocrinol        ISSN: 0016-6480            Impact factor:   2.822


  6 in total

1.  Roles of N-linked and O-linked glycosylation sites in the activity of equine chorionic gonadotropin in cells expressing rat luteinizing hormone/chorionic gonadotropin receptor and follicle-stimulating hormone receptor.

Authors:  So-Yun Lee; Munkhzaya Byambaragchaa; Seung-Hee Choi; Han-Ju Kang; Myung-Hwa Kang; Kwan-Sik Min
Journal:  BMC Biotechnol       Date:  2021-09-05       Impact factor: 2.563

2.  Cell-Surface Loss of Constitutive Activating and Inactivating Mutants of Eel Luteinizing Hormone Receptors.

Authors:  Munkhzaya Byambaragchaa; Seung-Hee Choi; Dong-Wan Kim; Kwan-Sik Min
Journal:  Dev Reprod       Date:  2021-12-31

3.  Specific Biological Activity of Equine Chorionic Gonadotropin (eCG) Glycosylation Sites in Cells Expressing Equine Luteinizing Hormone/CG (eLH/CG) Receptor.

Authors:  Munkhzaya Byambaragchaa; Seung-Hee Choi; Hyo-Eun Joo; Sang-Gwon Kim; Yean-Ji Kim; Gyeong-Eun Park; Myung-Hwa Kang; Kwan-Sik Min
Journal:  Dev Reprod       Date:  2021-12-31

4.  Constitutive Activation and Inactivation of Mutations Inducing Cell Surface Loss of Receptor and Impairing of Signal Transduction of Agonist-Stimulated Eel Follicle-Stimulating Hormone Receptor.

Authors:  Munkhzaya Byambaragchaa; Jeong-Soo Kim; Hong-Kyu Park; Dae-Jung Kim; Sun-Mee Hong; Myung-Hwa Kang; Kwan-Sik Min
Journal:  Int J Mol Sci       Date:  2020-09-25       Impact factor: 5.923

5.  Constitutive Activating Eel Luteinizing Hormone Receptors Induce Constitutively Signal Transduction and Inactivating Mutants Impair Biological Activity.

Authors:  Munkhzaya Byambaragchaa; Seung-Hee Choi; Dong-Wan Kim; Kwan-Sik Min
Journal:  Dev Reprod       Date:  2021-09-30

6.  Functional characterization of naturally-occurring constitutively activating/inactivating mutations in equine follicle-stimulating hormone receptor.

Authors:  Munkhzaya Byambaragchaa; Tae-Young Ahn; Seung-Hee Choi; Myung-Hwa Kang; Kwan-Sik Min
Journal:  Anim Biosci       Date:  2021-08-24
  6 in total

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