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Molecular characterization modeling in silico analysis of equine pituitary gonadotropin alpha subunit and docking interaction studies with ganirelix

机译:马垂体促性腺激素α亚基的分子表征建模计算机分析和与ganirelix的对接相互作用研究

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摘要

Equine pituitary gonadotropins (eLH, eFSH, eCG) are heterodimeric glycoprotein hormones with alpha (α) and beta (β) subunits. It is responsible for maintenance of pregnancy in mares during early gestation and fairly valuable for inducing superovulation in animals other than equines. The alpha subunit is common, while beta subunit is species-specific in all glycoprotein hormones. In the present investigation, molecular cloning and in silico characterization including homology modeling and molecular docking analysis of the equine chorionic gonadotropin (eCG) alpha subunit was carried out for gaining structural and functional insights into the eCG alpha subunit and its possible interaction with ganirelix, a gonadotropin-releasing hormone (GnRH) antagonist. The equine chorionic gonadotropin (eCG) alpha subunit expressed in pituitary gland was selected, amplified from total RNA, cloned and sequenced. The in silico analyses were made for homology modelling, structural details, epitope identification and chromosomal localization. Molecular docking studies of eCG alpha were undertaken with a drug ganirelix which is used to control ovulation and has antagonistic activity against GnRH. The protein sequence corresponding to selected open reading frame (ORF) was 99–100% similar with domesticated horse, Przewalski’s horse, and 92–93% with Burchell’s zebra and donkey. Molecular docking studies revealed the possible interaction of eCG alpha with ganirelix. The possible drug-macromolecule interactions were visualized between eCG alpha and ganirelix. The study will provide structural insight into unique sites and an alternate route of gonadotropin suppression applicable to assisted reproductive technologies.Electronic supplementary materialThe online version of this article (doi:10.1007/s40203-017-0025-1) contains supplementary material, which is available to authorized users.
机译:马垂体促性腺激素(eLH,eFSH,eCG)是异源二聚体糖蛋白激素,具有α(α)和β(β)亚基。它负责维持母猪在早期妊娠期间的怀孕,对于诱导除马以外的动物超排卵非常有价值。在所有糖蛋白激素中,α亚基是常见的,而β亚基是物种特异性的。在本研究中,进行了分子克隆和计算机表征,包括马绒毛膜促性腺激素(eCG)α亚基的同源性建模和分子对接分析,以获取eCGα亚基及其与ganirelix的可能相互作用的结构和功能方面的见解。促性腺激素释放激素(GnRH)拮抗剂。选择在垂体中表达的马绒毛膜促性腺激素(eCG)α亚基,从总RNA中扩增,克隆并测序。对同源性建模,结构细节,表位鉴定和染色体定位进行了计算机分析。 eCGα的分子对接研究是用药物ganirelix进行的,该药物用于控制排卵并具有对抗GnRH的拮抗活性。对应于选定的开放阅读框(ORF)的蛋白质序列与驯养的马,普氏原羚的马相似,为99–100%,与Burchell的斑马和驴相似,为92–93%。分子对接研究揭示了eCGα与ganirelix的可能相互作用。在eCGα和ganirelix之间可视化了可能的药物-大分子相互作用。该研究将提供结构独特的洞察力以及适用于辅助生殖技术的促性腺激素抑制的替代途径。电子补充材料本文的在线版本(doi:10.1007 / s40203-017-0025-1)包含补充材料,可以通过以下途径获得给授权用户。

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