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Alterations in expression of endometrial genes coding for proteins secreted into the uterine lumen during conceptus elongation in cattle

机译:牛受精过程中子宫内膜编码子宫内膜分泌蛋白的基因表达变化

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Background We hypothesized that genes that are up-regulated in the uterine endometrium at the initiation of conceptus elongation in cattle, and that encode for secreted proteins, contribute to the composition of the uterine luminal fluid (ULF) and ultimately, drive conceptus elongation. The aims of this study were to: 1) screen endometrial transcriptomic data for genes that encode secreted proteins on Day 13; 2) determine temporal changes in the expression of these genes during the estrous cycle/early pregnancy; 3) determine if expression of these genes is affected by altered concentrations of progesterone (P4) in vivo and 4) determine if the protein products of these genes are detectable in ULF. Results Of the fourteen candidate genes examined, quantitative real-time PCR analysis revealed the expression of APOA1, ARSA, DCN, LCAT, MUC13, NCDN, NMN, NPNT, NXPH3, PENK, PLIN2 and TINAGL1 was modulated in the endometrium (PAPOA1, DCN and NPNT expression was higher in cyclic compared to pregnant heifers, and pregnancy increased (PLCAT, NCDN, NMN, PLIN2 and TINAGL1. The magnitude of the increase in expression of APOA1, PENK and TINAGL1 on Day 13 was reduced (PLCAT and NPNT on Day 7, while an early increase (PNXPH3 and PLIN2 was observed in heifers with high P4. The protein products of 5 of the candidate genes (APOA1, ARSA, LCAT, NCDN and PLIN) were detected in the ULF on either Days 13, 16 or 19 of pregnancy. Conclusion Using a candidate gene approach, we determined that both P4 concentration and the presence of the conceptus alter endometrial expression of PLIN2, TINAGL1, NPNT, LCAT, NMN and APOA1. Comparison of the expression profiles of these genes to proteins detected in ULF during conceptus elongation (i.e., Days 13 through 19) revealed the presence of APOA1, ARSA, LCAT, NCDN as well as members of the PLIN family of proteins that may play roles in driving conceptus elongation in cattle.
机译:背景我们假设在牛的概念延伸期开始时子宫内膜上调的基因以及编码分泌蛋白的基因有助于子宫腔液(ULF)的组成,并最终推动概念延伸。这项研究的目的是:1)在第13天筛选子宫内膜转录组数据以寻找编码分泌蛋白的基因。 2)确定在发情周期/早孕期间这些基因表达的时间变化; 3)确定这些基因的表达是否受到体内孕酮(P4)浓度变化的影响,以及4)确定这些基因的蛋白质产物在ULF中是否可检测到。结果在检查的14个候选基因中,实时定量PCR分析显示APOA1,ARSA,DCN,LCAT,MUC13,NCDN,NMN,NPNT,NXPH3,PENK,PLIN2和TINAGL1的表达在子宫内膜中被调节(PAPOA1,DCN与妊娠小母牛相比,循环中的NPNT表达更高,并且妊娠增加(PLCAT,NCDN,NMN,PLIN2和TINAGL1。在第13天,APOA1,PENK和TINAGL1表达的增加幅度减小(在白天,PLCAT和NPNT从图7可以看出,在高P4的小母牛中,早期增加(PNXPH3和PLIN2),在第13、16或16天在ULF中检测到了5个候选基因(APOA1,ARSA,LCAT,NCDN和PLIN)的蛋白质产物。妊娠19结论结论我们使用候选基因方法确定了P4浓度和概念的存在都改变了PLIN2,TINAGL1,NPNT,LCAT,NMN和APOA1的子宫内膜表达。在ULF duri ng的概念延伸(即第13至19天)表明,存在APOA1,ARSA,LCAT,NCDN以及可能在驱动牛的概念延伸中起作用的PLIN蛋白家族成员。

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