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Evaluation of the Biological Properties and the Enzymatic Stability of Glycosylated Luteinizing Hormone-Releasing Hormone Analogs

机译:糖基化黄体激素释放激素类似物的生物学特性和酶稳定性的评价

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The enzymatic stability, antitumor activity, and gonadotropin stimulatory effects of glycosylated luteinizing hormone-releasing hormone (LHRH) analogs were investigated in this study. Conjugation of carbohydrate units, including lactose (Lac), glucose (GS), and galactose (Gal) to LHRH peptide protected the peptide from proteolytic degradation and increased the peptides’ half-lives in human plasma, rat kidney membrane enzymes, and liver homogenate markedly. Among all seven modified analogs, compound 1 (Lac-[Q1][w6]LHRH) and compound 6 (GS4-[w6]LHRH) were stable in human plasma during 4 h of experiment. The half-lives of compounds 1 and 6 improved significantly in kidney membrane enzymes (from 3 min for LHRH to 68 and 103 min, respectively). The major cleavage sites for most of the glycosylated compounds were found to be at Trp3-Ser4 and Ser4-Tyr5 in compounds 1–5. Compound 6 was hydrolyzed at Ser4-Tyr5 and the sugar conjugation site. The antiproliferative activity of the glycopeptides was evaluated on LHRH receptor-positive prostate cancer cells. The glycosylated LHRH derivatives had a significant growth inhibitory effect on the LNCaP cells after a 48-h treatment. It was demonstrated that compound 1 significantly increased the release of luteinizing hormone (LH) at 5 and 10 nM concentrations and compound 5 (GS-[Q1]LHRH) stimulated the release of follicle-stimulating hormone (FSH) at 5 nM concentration in dispersed rat pituitary cells (p < 0.05). In our studies, compound 1-bearing lactose and d-Trp was the most stable and active and is a promising candidate for future preclinical investigations in terms of in vitro biological activity and metabolic stability.Electronic supplementary materialThe online version of this article (doi:10.1208/s12248-015-9769-x) contains supplementary material, which is available to authorized users.
机译:糖化黄体生成激素释放激素(LHRH)类似物的酶稳定性,抗肿瘤活性和促性腺激素的刺激作用进行了研究。碳水化合物单元(包括乳糖(Lac),葡萄糖(GS)和半乳糖(Gal))与LHRH肽的结合可保护该肽免受蛋白水解降解,并增加该肽在人血浆,大鼠肾膜酶和肝匀浆中的半衰期明显地。在所有七个修饰的类似物中,化合物1(Lac- [Q 1 ] [w 6 ] LHRH)和化合物6(GS 4 -[在实验的4小时内,w 6 ] LHRH)在人血浆中稳定。化合物1和6的半衰期在肾膜酶中有显着改善(从LHRH的3分钟到68和103分钟)。发现大多数糖基化化合物的主要切割位点在Trp 3 -Ser 4 和Ser 4 -Tyr 5 在化合物1-5中。化合物6在Ser 4 -Tyr 5 和糖结合位点水解。在LHRH受体阳性的前列腺癌细胞上评估了糖肽的抗增殖活性。 48小时处理后,糖基化的LHRH衍生物对LNCaP细胞具有显着的生长抑制作用。结果表明,化合物1在5和10nM浓度下显着增加了促黄体生成激素(LH)的释放,化合物5(GS- [Q 1 ] LHRH)刺激了促卵泡激素的释放( FSH)在分散的大鼠垂体细胞中浓度为5 nM(p <0.05)。在我们的研究中,带有化合物1的乳糖和d-Trp是最稳定和活性的,并且就体外生物学活性和代谢稳定性而言,是未来临床前研究的有希望的候选者。电子补充材料本文的在线版本(doi: 10.1208 / s12248-015-9769-x)包含补充材料,授权用户可以使用。

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