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GnRH 免疫公猪附睾 β-防御素的结构建模和 mRNA 表达:人类继发性性腺功能减退症的模型。

Structural modeling and mRNA expression of epididymal β-defensins in GnRH immunized boars: A model for secondary hypogonadism in man.

机构信息

Laboratório de Biotecnologia, Universidade do Vale do Taquari - Univates, Lajeado, RS, Brazil.

出版信息

Mol Reprod Dev. 2018 Dec;85(12):921-933. doi: 10.1002/mrd.23069. Epub 2018 Nov 14.

Abstract

Human secondary hypogonadism is associated with impaired testicular function, however, little is known about its impact on sperm epididymal maturation. Endocrine disruption in the epididymis could impair the secretion of key proteins, such as β-defensins, responsible for spermatozoa maturation during epididymal transit. This study evaluated the sequence and structural similarities between porcine epididymal β-defensins porcine β-defensins (pBD3), pBD4, pBD125, and pEP2C and their human homologs using bioinformatics integrated with information derived from protein databanks. We then verified whether the expression of pBD3, pBD4, pBD125, and pEP2C genes in the testis and epididymis are influenced by disruption of the hypothalamic-pituitary-testicular (HPT) axis in a pig model for male human secondary hypogonadism. Upon modeling porcine β-defensins, structural and functional analysis confirmed the presence of motifs associated with β-defensin function, validating the models generated in silico. pBD3 and pBD4 showed acceptable structural alignments with human β-defensins BDEF103 and BDEF110, respectively. In addition, evaluation of hormonal regulation of β-defensins was assessed by analyzing the expression of these four β-defensins in adult boars immunized against gonadotropin-releasing hormone (GnRH). Our results indicate that HPT axis disruption modifies the expression of pBD3, pBD4, pBD125, and pEP2C in boar testis and epididymis, suggesting an endocrine-dependent regulation of β-defensins in swine epididymis. In conclusion, sequence and structural homology between pBD3 and pBD4 and their human homologs provide a basis for using the pig as a model for the study of human secondary hypogonadism. Further investigation of the human homologs in hypogonadal men could elucidate the connections between fertility and epididymal expression of β-defensins.

摘要

人类继发性性腺功能减退与睾丸功能受损有关,但人们对其对精子附睾成熟的影响知之甚少。附睾内分泌失调可能会损害关键蛋白的分泌,如β-防御素,这些蛋白负责精子在附睾转运过程中的成熟。本研究使用生物信息学方法评估了猪附睾β-防御素(pBD3、pBD4、pBD125 和 pEP2C)与它们的人类同源物之间的序列和结构相似性,并结合蛋白质数据库中的信息进行分析。然后,我们验证了在雄性人类继发性性腺功能减退的猪模型中,下丘脑-垂体-睾丸(HPT)轴中断是否会影响睾丸和附睾中 pBD3、pBD4、pBD125 和 pEP2C 基因的表达。在对猪β-防御素进行建模后,结构和功能分析证实了存在与β-防御素功能相关的基序,从而验证了计算机生成的模型。pBD3 和 pBD4 分别与人类β-防御素 BDEF103 和 BDEF110 具有可接受的结构排列。此外,通过分析对促性腺激素释放激素(GnRH)免疫的成年公猪中这四种β-防御素的表达,评估了β-防御素的激素调节。我们的结果表明,HPT 轴中断会改变公猪睾丸和附睾中 pBD3、pBD4、pBD125 和 pEP2C 的表达,表明β-防御素在猪附睾中的表达受到内分泌调节。总之,pBD3 和 pBD4 及其人类同源物之间的序列和结构同源性为使用猪作为研究人类继发性性腺功能减退的模型提供了基础。进一步研究性腺功能减退男性中的人类同源物可以阐明生育力和附睾β-防御素表达之间的联系。

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