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Naturally occurring genetic mutations in the 5-upstream regulatory region of bovine FSHB generate a novel cis-regulatory element that affects its expression

机译:牛FSHB 5上游调节区中的自然发生的基因突变产生影响其表达的新型顺式调节元件。

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We previously reported that numerous naturally occurring genetic mutations in the 5-upstream regulatory region (5-URR) of the bovine follicle-stimulating hormone beta-subunit gene (FSHB) were associated with reduced serum follicle-stimulating hormone (FSH) levels, poor-quality semen and low fertility in bulls. In addition, two different FSHB mRNA transcripts resulting from the linked mutations of genomic DNA were discovered in mutation-bearing bull pituitaries. Here, using electrophoretic mobility shift assay, we identified c.-1539_-1538delGGinsTTAACT mutations in the 5-URR that generated a novel cis-regulatory element in bovine FSHB. Moreover, this novel element seemed to play a role in repressing FSHB transcription based on a promoter activity analysis in LT2 gonadotrope cells. Quantitative assays of FSHB mRNA in the bovine pituitaries suggested that the levels of FSHB wild-type transcripts in the mutation-bearing bulls were significantly lower (P0.05) than in those of bulls without FSHB genetic mutations and that the levels of FSHB-mutated transcripts were significantly lower (P0.05) than that of wild-type transcripts in the mutation-bearing bulls. Altogether, our results suggest that decreased serum FSH levels and male fertility in bulls with the c.-1539_-1538delGGinsTTAACT mutation likely result from the alteration of cis-regulatory elements and induction of FSHB transcription.
机译:我们先前曾报道,牛卵泡刺激素β-亚基基因(FSHB)的5-上游调节区(5-URR)中发生了许多自然发生的基因突变,与血清卵泡刺激素(FSH)水平降低相关,差精液和公牛的低生育力。此外,在携带突变的公牛垂体动物中发现了两个不同的由基因组DNA连锁突变产生的FSHB mRNA转录物。在这里,使用电泳迁移率变动分析,我们确定了5-URR中的c.-1539_-1538delGGinsTTAACT突变,该突变在牛FSHB中产生了新的顺式调控元件。此外,基于LT2促性腺激素细胞中的启动子活性分析,该新颖元素似乎在抑制FSHB转录中发挥作用。牛垂体中FSHB mRNA的定量分析表明,携带突变的公牛中FSHB野生型转录本水平显着低于没有FSHB基因突变的公牛中(P <0.05),并且FSHB突变的水平携带突变的公牛的转录本显着低于野生型转录本(P <0.05)。总之,我们的结果表明,带有c.-1539_-1538delGGinsTTAACT突变的公牛血清FSH水平降低和雄性育性降低可能是由于顺式调节元件的改变和FSHB转录的诱导。

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