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首页> 外文期刊>The Journal of Reproduction and Development >Select Nutrients in the Uterine Lumen of Sheep and Pigs Affect Conceptus Development
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Select Nutrients in the Uterine Lumen of Sheep and Pigs Affect Conceptus Development

机译:绵羊和猪子宫腔中的营养成分影响概念发展

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摘要

Interferon tau (IFNT) is the pregnancy recognition signal from ruminant conceptuses. IFNT also acts with P4 to induce expression of genes for transport of nutrients, such as glucose (Gluc) and arginine (Arg) into the uterine lumen to activate mechanistic mammalian target of rapamycin (MTOR) cell signaling that stimulates proliferation, migration, gene transcription and mRNA translation by conceptus trophectoderm (Tr). In ewes, Arg and Gluc increase significantly in the uterine lumen between Days 10 and 15 of pregnancy due to increased expression of transporters for Gluc ( SLC2A1 and SLC5A1 ) and Arg (S LC7A2B ) by uterine epithelia. Arg and Gluc stimulate proliferation, migration and mRNA translation by Tr. Arg increases expression of GTP cyclohydrolase 1 ( GCH1 ) and IFNT mRNAs while Arg and Gluc increase ornithine decarboxylase, nitric oxide synthase 2, and GCH1 mRNAs and proteins by Tr cells. GCH1 is required for synthesis of tetrahydrobiopterin, an essential cofactor for all NOS isoforms. Arg is metabolized to nitric oxide and polyamines that increase proliferation and migration of Tr cells. In pigs, Gluc, Arg, leucine (Leu) and glutamine (Gln) increase in the uterine lumen between Days 12 and 15 of pregnancy due to enhanced expression of transporters for Gluc and amino acids. Transporters for Gluc in porcine uterine LE ( SLC2A1 ) and conceptus trophectoderm ( SLC2A2 ) are abundant. Transporters for glutamate and neutral ( SLC1A1 , SLC1A4 ) and cationic (S LC7A1 , SLC7A2 , SLC7A7 , SLC7A9 ) amino acids are expressed in uterine LE and SLC7A3 mRNA is expressed in conceptus Tr. Arg and Leu increase MTOR cell signaling and proliferation of pig Tr, as do Gluc and fructose. Azaserine, an inhibitor of hexosamine biosynthesis, inhibits effects of Gluc and fructose. Thus, select nutrients in the uterine lumen affect gene transcription and mRNA translation to affect conceptus development.
机译:干扰素tau(IFNT)是反刍动物的妊娠识别信号。 IFNτ还与P4一起诱导基因表达,以将营养物质如葡萄糖(Gluc)和精氨酸(Arg)转运到子宫腔中,以激活哺乳动物雷帕霉素(MTOR)细胞信号转导机制,从而刺激增殖,迁移,基因转录通过滋养外胚层(Tr)进行mRNA和mRNA的翻译。在母羊中,由于子宫上皮对Gluc(SLC2A1和SLC5A1)和Arg(S LC7A2B)转运蛋白的表达增加,在妊娠的第10天和第15天之间,子宫内腔中的Arg和Gluc显着增加。 Arg和Gluc通过Tr刺激增殖,迁移和mRNA翻译。 Arg增加Tr细胞的GTP环水解酶1(GCH1)和IFNτmRNA的表达,而Arg和Gluc增加鸟氨酸脱羧酶,一氧化氮合酶2和GCH1 mRNA和蛋白的表达。 GCH1是合成四氢生物蝶呤所需的,四氢生物蝶呤是所有NOS亚型的必需辅助因子。精氨酸被代谢为一氧化氮和多胺,从而增加Tr细胞的增殖和迁移。在猪中,由于葡萄糖和氨基酸转运蛋白的表达增强,在妊娠第12至15天之间,子宫内腔中的Gluc,Arg,亮氨酸(Leu)和谷氨酰胺(Gln)增加。猪子宫LE(SLC2A1)和肠滋养外胚层(SLC2A2)中Gluc的转运蛋白丰富。谷氨酸和中性(SLC1A1,SLC1A4)和阳离子(SLC7A1,SLC7A2,SLC7A7,SLC7A9)氨基酸的转运蛋白在子宫LE中表达,而SLC7A3 mRNA在概念性Tr中表达。精氨酸和亮氨酸增加了猪Tr的MTOR细胞信号传导和增殖,葡萄糖和果糖也是如此。 Azaserine是己糖胺生物合成的抑制剂,可抑制葡萄糖和果糖的作用。因此,选择子宫腔中的营养物会影响基因转录和mRNA翻译,从而影响概念发育。

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