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Calcium-binding protein S100P is highly expressed during the implantation window in human endometrium.

机译:钙结合蛋白S100P在人子宫内膜的植入窗口中高表达。

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摘要

OBJECTIVE: To investigate S100P expression and localization in human endometrium throughout the menstrual cycle. DESIGN: Experimental study. SETTING: University hospital. PATIENT(S): Eighty-four women. INTERVENTION(S): Complementary DNA (cDNA) microarray analysis was performed on human endometrium from days LH+4, LH+7, and hCG+7. Reverse transcriptase-polymerase chain reaction (RT-PCR) and Western blot analysis were used to detect the expression of S100P and of additional S100 family members, S100A4, S100A13, and S100A6. Immunofluorescence was used to detect the localization of S100P protein in LH+7 and LH+4 endometrium. MAIN OUTCOME MEASURE(S): Differential gene expression, levels of S100P messenger RNA (mRNA), and protein expression and immunofluorescent localization of S100P. RESULT(S): A statistical method, based on hierarchical clustering, identified genes whose expression varied at LH+7 compared with LH+4. We found that S100P was the fourth most up-regulated gene at LH+7. The S100P mRNA and protein levels were quite low during the proliferative phase and LH+4, but were elevated significantly at LH+7. The S100P expression at hCG+7 was lower than that at LH+7. However, the expression of S100A4, S100A13, and S100A6 did not vary throughout the menstrual cycle. CONCLUSION(S): S100P was specifically up-regulated during the implantation window. The underlying biological effects of S100P need further exploration.
机译:目的:研究整个月经周期中人子宫内膜中S100P的表达和定位。设计:实验研究。地点:大学医院。患者:84名妇女。干预:对LH + 4,LH + 7和hCG + 7天的人子宫内膜进行了互补DNA(cDNA)微阵列分析。逆转录聚合酶链反应(RT-PCR)和蛋白质印迹分析用于检测S100P和其他S100家族成员S100A4,S100A13和S100A6的表达。免疫荧光法检测S100P蛋白在LH + 7和LH + 4子宫内膜中的定位。主要观察指标:差异基因表达,S100P信使RNA(mRNA)的水平以及S100P的蛋白表达和免疫荧光定位。结果:一种基于层次聚类的统计方法,鉴定了与LH + 4相比LH + 7表达变化的基因。我们发现S100P是LH + 7上调第四高的基因。 S100P mRNA和蛋白水平在增生期和LH + 4时非常低,但在LH + 7时显着升高。 hCG + 7的S100P表达低于LH + 7的S100P表达。但是,S100A4,S100A13和S100A6的表达在整个月经周期中没有变化。结论:S100P在植入窗口期间被特别上调。 S100P的潜在生物学效应需要进一步探索。

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