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转录因子 TFDP1 结合启动子活性上调对 RBP4 g.36491960G>C 突变诱导山羊颗粒细胞增殖的影响。

Effect of Upregulation of Transcription Factor TFDP1 Binding Promoter Activity Due to RBP4 g.36491960G>C Mutation on the Proliferation of Goat Granulosa Cells.

机构信息

Key Laboratory of Animal Genetics, Breeding and Reproduction of Ministry of Agriculture and Rural Affairs, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Yunnan Animal Science and Veterinary Institute, Kunming 650224, China.

出版信息

Cells. 2022 Jul 8;11(14):2148. doi: 10.3390/cells11142148.

Abstract

Retinol-binding protein 4 (RBP4), a member of the lipocalin family, is a specific carrier of retinol (vitamin A) in the blood. Numerous studies have shown that RBP4 plays an important role in mammalian embryonic development and that mutations in RBP4 can be used for the marker-assisted selection of animal reproductive traits. However, there are few studies on the regulation of reproduction and high-prolificacy traits by RBP4 in goats. In this study, the 5′ flanking sequence of RBP4 was amplified, and a G>C polymorphism in the promoter region -211 bp (g.36491960) was detected. An association analysis revealed that the respective first, second and third kidding number and mean kidding number of nanny goats with CC and GC genotypes (2.167 ± 0.085, 2.341 ± 0.104, 2.529 ± 0.107 and 2.189 ± 0.070 for CC and 2.052 ± 0.047, 2.206 ± 0.057, 2.341 ± 0.056 and 2.160 ± 0.039 for GC) were significantly higher (p < 0.05) than those with the GG genotype (1.893 ± 0.051, 2.027 ± 0.064, 2.107 ± 0.061 and 1.74 ± 0.05). The luciferase assay showed that luciferase activity was increased in C allele individuals compared with that in G allele individuals. A competitive electrophoretic mobility shift assay (EMSA) showed that individuals with the CC genotype had a stronger promoter region binding capacity than those with the GG genotype. In addition, transcription factor prediction software showed that the RBP4 g.36491960G>C mutation added a novel binding site for transcription factor DP-1 (TFDP1). RT−qPCR results showed that the expression of TFDP1 was significantly higher in the high-prolificacy group than in the low-prolificacy group, and the expression of RBP4 was higher in both the CC and GC genotypes than that in the GG genotype. TFDP1 overexpression significantly increased the expression of RBP4 mRNA (p < 0.05) and the expression of the cell proliferation factors cyclin-D1, cyclin-D2 and CDK4 (p < 0.05). The opposite trend was observed after interference with TFDP1. Both the EdU and CCK-8 results showed that TFDP1 expression could regulate the proliferation of goat ovarian granulosa cells. In summary, our results showed that RBP4 g.36491960G>C was significantly associated with fecundity traits in goats. The g.36491960G>C mutation enhanced the transcriptional activity of RBP4 and increased the expression of RBP4, thus improving the fertility of Yunshang black goats.

摘要

视黄醇结合蛋白 4(RBP4)是亲脂素家族的一员,是血液中视黄醇(维生素 A)的特异性载体。大量研究表明,RBP4 在哺乳动物胚胎发育中起重要作用,并且 RBP4 中的突变可用于动物生殖性状的标记辅助选择。然而,关于 RBP4 在山羊繁殖和高产性状中的调控作用的研究较少。在本研究中,扩增了 RBP4 的 5′侧翼序列,并检测到启动子区域 -211bp(g.36491960)处的 G>C 多态性。关联分析表明,具有 CC 和 GC 基因型的母羊的第一、第二和第三胎产仔数和平均产仔数(CC 分别为 2.167 ± 0.085、2.341 ± 0.104、2.529 ± 0.107 和 2.189 ± 0.070,GC 分别为 2.052 ± 0.047、2.206 ± 0.057、2.341 ± 0.056 和 2.160 ± 0.039)明显高于 GG 基因型(1.893 ± 0.051、2.027 ± 0.064、2.107 ± 0.061 和 1.74 ± 0.05)(p < 0.05)。荧光素酶报告基因实验表明,C 等位基因个体的荧光素酶活性高于 G 等位基因个体。竞争电泳迁移率变动分析(EMSA)表明,CC 基因型个体的启动子区域结合能力强于 GG 基因型个体。此外,转录因子预测软件表明,RBP4 g.36491960G>C 突变增加了转录因子 DP-1(TFDP1)的一个新结合位点。RT-qPCR 结果表明,高产组 TFDP1 的表达显著高于低产组,CC 和 GC 基因型的 RBP4 表达均高于 GG 基因型。TFDP1 过表达显著增加了 RBP4 mRNA 的表达(p < 0.05)和细胞增殖因子 cyclin-D1、cyclin-D2 和 CDK4 的表达(p < 0.05)。干扰 TFDP1 后观察到相反的趋势。EdU 和 CCK-8 结果均表明,TFDP1 表达可调节山羊卵巢颗粒细胞的增殖。综上所述,我们的结果表明,RBP4 g.36491960G>C 与山羊繁殖力性状显著相关。g.36491960G>C 突变增强了 RBP4 的转录活性,增加了 RBP4 的表达,从而提高了云商黑山羊的繁殖力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cea9/9321149/4a372a18fa72/cells-11-02148-g001.jpg

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