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Construction and evaluation of the novel DNA vaccine harboring the inhibinα (1–32) and the RF-amide related peptide-3 genes for improvingfertility in mice

机译:带有抑制素的新型DNA疫苗的构建与评价α(1-32)和RF-酰胺相关的peptide-3基因可以改善小鼠的生育力

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摘要

To further improve fertility of animals, a novel gene RFRP-3 (RF-amide related peptide-3, RFRP-3) was used to construct DNA vaccines with INH α (1–32) (inhibin, INH) fragment for the first time. The aim of this study was to evaluate the effects of novel DNA vaccines on fertility in mice. Synthesized SINH and SRFRP (INH and RFRP genes were separately ligated to the C-terminus of the small envelope protein of the hepatitis B virus (HBV-S) gene) fragments were inserted into multiple cloning site of pIRES vector to develop p-SINH/SRFRP. The synthesized tissue plasminogen activator (TPA) signal sequence was then inserted into the p-SINH/SRFRP to construct p-TPA-SINH/TPA-SFRFP. Meanwhile, p-SINH was prepared and considered as positive control. Forty Kunming mice were equally divided into four groups and respectively immunized by electroporation with p-SINH, p-SINH/SRFRP and p-TPA-SINH/TPA-SRFRP vaccine (three times at 2 weeks interval) and saline as control. Results showed that the average antibodies (P/N value) of anti-INH and anti-RFRP in mice inoculated with p-TPA-SINH/TPA-SFRFP were significantly higher (P<0.05) than those inoculated with p-SINH/SRFRP and the positive rates were 100% (anti-INH) and 90% (anti-RFRP) respectively, at 2 weeks after the third immunization. Litter size of mice immunized with the three recombinant plasmids was higher(P<0.05) than that of the control, and litter size of mice immunizedwith p-TPA-SINH/TPA-SRFRP significantly increased (P<0.05) comparedwith p-SINH. These results suggested that the p-TPA-SINH/TPA-SRFRP harboringINH and RFRP genes was successfully constructed andhad good immunogenicity, and might effectively increase litter size.
机译:为了进一步提高动物的生育能力,首次使用新型基因RFRP-3(RF-酰胺相关肽3,RFRP-3)构建具有INHα(1-32)(抑制素,INH)片段的DNA疫苗。这项研究的目的是评估新型DNA疫苗对小鼠生育力的影响。将合成的SINH和SRFRP(INH和RFRP基因分别连接到乙型肝炎病毒小包膜蛋白(HBV-S)基因的C端)片段插入pIRES载体的多个克隆位点以开发p-SINH / SRFRP。然后将合成的组织纤溶酶原激活物(TPA)信号序列插入p-SINH / SRFRP中,以构建p-TPA-SINH / TPA-SFRFP。同时,制备了p-SINH并认为是阳性对照。将四十只昆明小鼠平均分为四组,分别用p-SINH,p-SINH / SRFRP和p-TPA-SINH / TPA-SRFRP疫苗(间隔2周间隔3次)和生理盐水进行电穿孔免疫。结果表明,接种p-TPA-SINH / TPA-SFRFP的小鼠的抗INH和抗RFRP的平均抗体(P / N值)明显高于接种p-SINH / SRFRP的小鼠(P <0.05)第三次免疫后2周的阳性率分别为100%(抗INH)和90%(抗RFRP)。用三种重组质粒免疫的小鼠的产仔数更高(P <0.05)比对照组和免疫小鼠的产仔数与p-TPA-SINH / TPA-SRFRP相比,显着增加(P <0.05)与p-SINH。这些结果表明p-TPA-SINH / TPA-SRFRP具有INH和RFRP基因已成功构建并具有良好的免疫原性,并可能有效地增加产仔数。

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