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Species-Specific Dibutyl Phthalate Fetal Testis Endocrine Disruption Correlates with Inhibition of SREBP2-Dependent Gene Expression Pathways

机译:特定于物种的邻苯二甲酸二丁酯胎儿睾丸内分泌干扰与抑制SREBP2依赖的基因表达途径相关。

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摘要

Fetal rat phthalate exposure produces a spectrum of male reproductive tract malformations downstream of reduced Leydig cell testosterone production, but the molecular mechanism of phthalate perturbation of Leydig cell function is not well understood. By bioinformatically examining fetal testis expression microarray data sets from susceptible (rat) and resistant (mouse) species after dibutyl phthalate (DBP) exposure, we identified decreased expression of several metabolic pathways in both species. However, lipid metabolism pathways transcriptionally regulated by sterol regulatory element–binding protein (SREBP) were inhibited in the rat but induced in the mouse, and this differential species response corresponded with repression of the steroidogenic pathway. In rats exposed to 100 or 500 mg/kg DBP from gestational days (GD) 16 to 20, a correlation was observed between GD20 testis steroidogenic inhibition and reductions of testis cholesterol synthesis endpoints including testis total cholesterol levels, Srebf2 gene expression, and cholesterol synthesis pathway gene expression. SREBP2 expression was detected in all fetal rat testis cells but was highest in Leydig cells. Quantification of SREBP2 immunostaining showed that 500 mg/kg DBP exposure significantly reduced SREBP2 expression in rat fetal Leydig cells but not in seminiferous cords. By Western analysis, total rat testis SREBP2 levels were not altered by DBP exposure. Together, these data suggest that phthalate-induced inhibition of fetal testis steroidogenesis is closely associated with reduced activity of several lipid metabolism pathways and SREBP2-dependent cholesterologenesis in Leydig cells.
机译:胎儿大鼠邻苯二甲酸酯暴露会在减少Leydig细胞睾丸激素产生的下游产生一系列男性生殖道畸形,但人们对邻苯二甲酸酯扰动Leydig细胞功能的分子机制尚不甚了解。通过生物信息学检查邻苯二甲酸二丁酯(DBP)暴露后的易感性(大鼠)和耐药性(小鼠)物种的胎儿睾丸表达微阵列数据集,我们确定了这两种物种中几种代谢途径的表达降低。但是,固醇调节元件结合蛋白(SREBP)转录调节的脂质代谢途径在大鼠中受到抑制,而在小鼠中被诱导,这种差异的物种反应与类固醇生成途径的抑制相对应。从妊娠天(GD)16到20暴露于100或500 mg / kg DBP的大鼠中,观察到GD20睾丸类固醇抑制与睾丸胆固醇合成终点(包括睾丸总胆固醇水平,Srebf2基因表达和胆固醇合成)的降低之间存在相关性途径基因表达。在所有胎儿大鼠睾丸细胞中均检测到SREBP2表达,但在Leydig细胞中最高。 SREBP2免疫染色的定量显示,暴露于500 mg / kg DBP会显着降低大鼠胎儿Leydig细胞中SREBP2的表达,但不会影响生精索。通过Western分析,DBP暴露不会改变大鼠睾丸的总SREBP2水平。总之,这些数据表明邻苯二甲酸盐诱导的胎儿睾丸类固醇生成的抑制与Leydig细胞中几种脂质代谢途径的活性降低和SREBP2依赖性胆固醇生成密切相关。

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