Browse > Article
http://dx.doi.org/10.5713/ajas.2003.498

Production of Biological Active Single Chain Bovine LH and FSH  

Min, K.S. (Graduate School of Bio. & Information Technology, Dept. of Animal Resource Science Hankyong National University)
Kang, M.H. (Dept. of Food and Nutrition, Hoseo University)
Yoon, J.T. (Dept. of Animal Resource Science, Hankyong National University)
Jin, H.J. (NARI, RDA)
Seong, H.H. (NARI, RDA)
Chang, Y.M. (NARI, RDA)
Chung, H.J. (NARI, RDA)
Oh, S.J. (NARI, RDA)
Yun, S.G. (NARI, RDA)
Chang, W.K. (NARI, RDA)
Publication Information
Asian-Australasian Journal of Animal Sciences / v.16, no.4, 2003 , pp. 498-503 More about this Journal
Abstract
Luteinizing hormone as other glycoprotein hormones is characterized by a heterodimeric structure composed a common $\alpha$-subunit noncovalently linked to a specific $\beta$-subunit. The correct conformation of the heterodimer is important for efficient secretion, hormonal-specific post-translational modifications, receptor binding and signal transduction. To determine whether $\alpha$- and $\beta$- subunits can be synthesized as a single polypeptide chain (tethered-bLH and -bFSH) and also display biological activities, the tetheredbLH and -bFSH molecules were constructed and transfected into chinese hamster ovary (CHO-K1) cells. LH and FSH activities were assayed by using the human embryonic kidney (HEK) 293 cells expressing rat LH and FSH receptor genes. The tethered-bLH and - bFSH proteins were efficiently secreted and showed a similar activity to the dimeric bovine LH and FSH $\alpha$/$\beta$ wild type and native purified from bovine pituitary. The tethered-molecules can be permit development of potent new analogues that stimulate ovarian development. Taken together, a single-chain analog can also be constructed to include additional hormone-specific bioactive generating potentially efficacious compounds. These data indicate the potentiality of the single chain approach to further investigate structurefunction relationships of LH and FSH.
Keywords
Tethered-bLH and -FSH; Biological Activity;
Citations & Related Records

Times Cited By Web Of Science : 1  (Related Records In Web of Science)
Times Cited By SCOPUS : 1
연도 인용수 순위
1 Calvo, F. O., H. T. Keutmann, E. R. Berger and R. J. Ryan. 1986. Deglycosylated human follitropin; Characterization and effects on adenosine cyclic 3', 5'-phosphate production in porcine granulosa cells. Biochemistry 25:3938-3943.   DOI   ScienceOn
2 Furuhashi, M., T. Shikone, F. A. Farest, T. Sugahara, A. J. W. Hsueh and I. Boime. 1995. Fusing the carboxyl-terminal peptide of the chorionic gonadotropin (CG) $\beta$-subunit to the common $\alpha$-subunit: retension of O-linked glycosylation and enhanced in vitro bioactivity of chimeric human CG. Mol. Endocrinol. 9:54-63.   DOI   ScienceOn
3 Min, K. S. 2000c. Function of constitutively activating lutropin/choriogonadotropin receptor. Kor. J. Anim. Reprod. 24:41-47.
4 Singh, C. and M. L. Madan. 1998. Hypophyseal and gonadal response to GnRH in buffalo heifers (bubalus bubalis). Asian-Aust. J. Anim. 11:416-421.
5 Sugahara, T., A. Sato, M. Kudo, D. Ben-Menahem, M. R. Pixley, A. J. W. Hsueh and I. Boime. 1996. Expression of biologically active fusion genes encoding the common alpha subunit and the follicle-stimulating hormone beta. Role of a linker suquence. J. Biol. Chem. 271:10445-10448.   DOI   ScienceOn
6 Keene, J. L., M. M. Matzuk, T. Otani, B. C. Fauser, A. B. Galway, A. J. W. Hsueh and I. Boime. 1989. Expression of biologically active human follitropin in chinese hamster ovary cells. J. Biol. Chem. 264:4769-4775.
7 Kendall, S. K., L. C. Samuelson, T. L. Saunders, R. I. Wood and S. A. Camper. 1995. Targeted disruption of the pituitary glycoprotein hormone $\alpha$-subunit produces hypogonadal and hypothyroid mice. Genes and Development 9:2007-2019.   DOI   ScienceOn
8 Matthews, C. H., S. Borgato, P. Beck-Peccoz, M. Adams, Y. Tone, G. Gambino, S. C. Casagrande, G. Tedeschine, A. Benedetti and V. K. K. Chatterjee. 1993. Primary amenorrhoes and infertility due to a mutation in the $\beta$-subunit of follicle stimulating hormone. Nature Genetics 5:83-86.   DOI   ScienceOn
9 Suganuma, N., K. Furui, F. Kikkawa, Y. Tomoda and M, Furuhashi. 1996. Effects of the mutations (Trp8-Arg and Ile15-Thr) in human luteinizing hormone (LH) -$\beta$subunit on LH bioactivity in vitro and in vivo. Endocrinology 137:831-838.   DOI   ScienceOn
10 Min, K. S., X. Liu, J. Fabritz, J. Jaquette, A. M. Abell and M. Ascoli. 1998. Mutations that induce constitutive activation and mutations that impair signal transduction modulate the basal and/or agonist-stimulated internalization of the lutropin/choriogonadotropin receptor. J. Biol. Chem. 273:34911-34919.   DOI   ScienceOn
11 Min, K. S. 2000a. Biological functions of N- and O-linked Oligosaccharides of equine chorionic gonadotropin and lutropin/chorionic gonadotropin receptor. Kor. J. Anim. Reprod. 24:357-364.
12 Pierce, J. G and T. F. Parsons. 1981. Glycoprotein hormones: structure and function. Annu. Rev. Biochem. 50:465-490.   DOI   ScienceOn
13 Garcia-Campayo, V., A. Sato, B. Hirsch, T. Sugahara, M. Muyan, A. J. W. Hsueh and I. Boime. 1997. Design of stable biologically active recombinant lutropin analogs. Nature Biotechnology 15:663-667.   DOI   ScienceOn
14 Sugahara, T., M. R. Pixley, S. Minami, E. Perlas, D. Ben-Menahem, A. J. W. Hsueh and I. Boime. 1995. Biosynthesis of a biologically active single peptide chain containing the human common $\alpha$ and chorionic gonadotropin $\beta$ subunits in tandem. Proc. Natl. Acad. Sci. USA. 92:2041-2045.   DOI   ScienceOn
15 Min, K. S., N. Hattori, J. I. Aikawa, K. Shiota and T. Ogawa. 1996. Site-directed mutagenesis of recombinant equine chorionic gonadotropin/luteinizing hormone: differential role of oligosaccharides in luteinizing hormone- and folliclestimulaiting hormone-like activities. Endocrine J. 43:585-593.   DOI   ScienceOn
16 Saneyoshi, T., K. S. Min, X. J. Ma, T. Nambo, T. Hiyama, T. Tanaka and K. Shiota. 2001. Equine follicle-stimulating hormone: Molecular cloning of $\beta$-subunit and biological role of the asparagines-linked oligosaccharide at asparagine56 of $\alpha$-subunit. Biol. Reprod. 65:1686-1690.   DOI   ScienceOn
17 Min, K. S., M. Shinozaki, K. Miyazawa, R. Nishimura, N. Sasaki, K. Shiota and T. Ogawa. 1994. Nucleotide sequence of eCG $\alpha$-subunit cDNA and its expression in the equine placenta. J. Reprod. Dev. 40:301-305.   DOI   ScienceOn
18 Sugino, H., G. R. Bousfield, W. T. Moore and D. N. Ward. 1987. Structural studies on equine glycoprotein hormones. Amino acid sequence of equine chorionic gonadotropin $\alpha$-subunit. J. Biol. Chem. 262:8603-8609.
19 Crawford, R. J., G. W. Tregear and H. D. Niall. 1986. The nucleotide sequences of baboon chorionic gonadotropin $\beta$-subunit genes have diverged from the human. Gene 46:161-169.   DOI   ScienceOn
20 Narayan, P., C. Wu and D. Puett. 1995. Functional expression of yoked human chorionic gonadotropin in baculovirus-infected insect cells. Mol. Endocrinol. 9:1720-1726.   DOI   ScienceOn
21 Sairam, M. R. and G. N. Bhargavi. 1985. A role for glycosylation of the $\alpha$subunit in transduction of biological signal in glycoprotein hormones. Science 229:65-67.   DOI   ScienceOn
22 Min, K. S., K. Shiota, T. Saneyoshi, M. Hirosawa and T. Ogawa. 1997. Differential role of oligosacchairdes in equine chorionic gonadotropin (eCG)/luteinizing hormone (LH) to express follicle stimulating hormone (FSH) -like and LH-like activities. J. Reprod. Dev. 43:177-179.
23 Hunter, W. H and F. C. Greenwood. 1962. Preparation of iodine-131labelled human growth hormone of high specific activity. Nature 194:495-496.   DOI   ScienceOn
24 Min, K. S. 2001. Biosynthesis of a biological active single chain equine chorionic gonadotropin. J. Life Science 11:103-107.
25 Min, K. S. 1999. Functional expression of lutropin/choriogonadotropin and follitropin receptor cDNAs in 293 cells. Kor. J. Anim. Reprod. 23:347-352.
26 Bousfield, G. R., V. L. Baker and D. M. Clem. 1992. Comparision of the O-glycosylation of eLH and eCG beta subunits. The endocrine society, p1200.
27 Fares, F. A., S. Yamabe, D. Ben-Menahem, M. Pixley, A. J. W. Hsueh and I. Boime. 1998. Conversion of thyrotropin heterodimer to a biologically active single-chain. Endocrinology 139:2459-2464.   DOI   ScienceOn
28 Kumar, T. R., Y. Wang, N. Lu and M. M. Matzuk. 1997. Follicle stimulating hormone is required for ovarian follicle maturation but not male fertility. Nature Genetics 15:201-204.   DOI   ScienceOn
29 Puett, D., C. Wu and P. Narayan. 1998. The Tie that binds: Design of biologically active single-chain human chorionic gonadotropins and a gonadotropin-receptor complex using protein engineering. Biol. Reprod. 58:1337-1342.   DOI   ScienceOn
30 Min, K. S. 2000b. Differential expression of glycoprotein hormones in equine placenta and pituitary. Dev. Reprod. 4:87-93.