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Testicular Lumicrine Factors Regulate ERK, STAT, and NFKB Pathways in the Initial Segment of the Rat Epididymis to Prevent Apoptosis1

机译:睾丸发光因子调节大鼠附睾起始段的ERK,STAT和NFKB通路以防止细胞凋亡1

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摘要

The initial segment of the epididymis is vital for male fertility; therefore, it is important to understand the mechanisms that regulate this important region. Deprival of testicular luminal fluid factors/lumicrine factors from the epididymis results in a wave of apoptosis in the initial segment. In this study, a combination of protein array and microarray analyses was used to examine the early changes in downstream signal transduction pathways following loss of lumicrine factors. We discovered the following cascade of events leading to the loss of protection and eventual apoptosis: in the first 6 h after loss of lumicrine factors, down-regulation of the ERK pathway components was observed at the mRNA expression and protein activity levels. Microarray analysis revealed that mRNA levels of several key components of the ERK pathway, Dusp6, Dusp5, and Etv5, decreased sharply, while the analysis from the protein array revealed a decline in the activities of MAP2K1/2 and MAPK1. Immunostaining of phospho-MAPK3/1 indicated that down-regulation of the ERK pathway was specific to the epithelial cells of the initial segment. Subsequently, after 12 h of loss of lumicrine factors, levels of mRNA expression of STAT and NFKB pathway components increased, mRNA levels of several genes encoding cell cycle inhibitors increased, and levels of protein expression of several proapoptotic phosphatases increased. Finally, after 18 h of loss of protection from lumicrine factors, apoptosis was observed. In conclusion, testicular lumicrine factors protect the cells of the initial segment by activating the ERK pathway, repressing STAT and NFKB pathways, and thereby preventing apoptosis.
机译:附睾的初始部分对男性的生育至关重要。因此,重要的是要了解调节这一重要区域的机制。从附睾中剥夺睾丸腔液因子/黄体生成因子会导致细胞凋亡在初始阶段。在这项研究中,蛋白质阵列和微阵列分析的结合被用来检查荧光素因子丧失后下游信号转导通路的早期变化。我们发现以下一系列事件导致保护作用的丧失和最终的细胞凋亡:在荧光素因子丧失后的最初6小时内,在mRNA表达和蛋白活性水平观察到ERK途径组分的下调。微阵列分析显示,ERK途径的几个关键成分(Dusp6,Dusp5和Etv5)的mRNA水平急剧下降,而蛋白质阵列分析显示MAP2K1 / 2和MAPK1的活性下降。磷酸化MAPK3 / 1的免疫染色表明,ERK通路的下调对起始节段的上皮细胞具有特异性。随后,在缺乏荧光素因子12小时后,STAT和NFKB途径组分的mRNA表达水平增加,编码细胞周期抑制剂的几种基因的mRNA水平升高,并且几种促凋亡磷酸酶的蛋白质表达水平升高。最终,在失去对发光蛋白因子的保护18小时后,观察到细胞凋亡。总之,睾丸发光素因子通过激活ERK通路,抑制STAT和NFKB通路从而保护细胞凋亡,从而保护了初始区段的细胞。

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