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Identification of Functional Single Nucleotide Polymorphisms in Porcine

机译:猪缺血函数单核苷酸多态性的鉴定

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摘要

Steroid hormone levels are associated with estrous behavior, which affects timely mating and reproductive efficiency in pigs. 17β-hydroxysteroid dehydrogenase type 14 (HSD17B14) modulates steroid synthesis and metabolism. To identify the functional single nucleotide polymorphisms (SNPs) in the porcine HSD17B14 gene, ear tissues from Large White and Mi gilts were collected to extract genomic DNA. Variable lengths of truncated promoter of HSD17B14 gene were used to determine the promoter activity by a dual luciferase reporter system. The vector HSD17B14Phe or HSD17B14Val was transfected into porcine granulosa cells (GCs). The core promoter region was identified between −72 bp and −218 bp. Six of seven SNPs had significant differences of allele frequency between Large White and Mi gilts. The plasmids with the wild genotype AA of rs329427898 maintained a smaller fraction of promoter activity compared with the plasmids with the mutant genotype GG, while the plasmids with wild the genotype TT of rs319864566 had a greater promoter activity than the plasmids with the mutant genotype CC. A missense mutation (Phe73Val) caused changes in the structural dynamics and function of the HSD17B14 protein. The highly expressed HSD17B14Val degraded less estradiol into estrone, while the relatively lowly expressed HSD17B14Phe degraded more estradiol into estrone, suggesting the protein activity of HSD17B14Phe was greater than that of HSD17B14Val. Moreover, the HSD17B14Phe group has a greater apoptosis rate of porcine GCs. The HSD17B14 gene could been used as a candidate molecular marker for estrus behavior in pigs.
机译:类固醇激素水平与原始行为有关,其影响猪的及时交配和生殖效率。 17β-羟类脱氢酶14型(HSD17B14)调节类固醇合成和代谢。为了鉴定猪HSD17B14基因中的功能单核苷酸多态性(SNP),收集来自大白和MI吉尔的耳组织以提取基因组DNA。 HSD17B14基因的截短启动子的可变长度用于通过双荧光素酶报告系统确定启动子活性。将载体HSD17B14phe或HSD17B14VAL转染到猪颗粒细胞(GCS)中。核心启动子区域在-72bp和-218bp之间鉴定。七个SNP中的六个具有大白和MI吉尔之间等位基因频率的显着差异。与突变基因型Gg的质粒相比,具有RS329427898的野生基因型AA的质粒保持较小的启动子活性,而野生基因型TT的质粒比具有突变基因型CC的质粒更大的启动子活性。畸形突变(PHE73VAL)导致HSD17B14蛋白的结构动力学和功能的变化。高表达的HSD17B14VAL将较少的雌二醇降低到雌激素中,而相对较低表达的HSD17B14phe将更多的雌二醇降解为雌激素,表明HSD17B14phe的蛋白质活性大于HSD17B14VAL的蛋白质活性。此外,HSD17B14phe基团具有更高的猪GCS细胞凋亡率。 HSD17B14基因可以用作猪中的患者行为的候选分子标志物。

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