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A Mechanism of Male Germ Cell Apoptosis Induced by Bisphenol-A and Nonylphenol Involving ADAM17 and p38 MAPK Activation

机译:双酚A和壬基酚诱导的ADAM17和p38 MAPK活化诱导男性生殖细胞凋亡的机制

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摘要

Germ cell apoptosis regulation is pivotal in order to maintain proper daily sperm production. Several reports have shown that endocrine disruptors such as Bisphenol-A (BPA) and Nonylphenol (NP) induce germ cell apoptosis along with a decrease in sperm production. Given their ubiquitous distribution in plastic products used by humans it is important to clarify their mechanism of action. TACE/ADAM17 is a widely distributed extracellular metalloprotease and participates in the physiological apoptosis of germ cells during spermatogenesis. The aims of this work were: 1) to determine whether BPA and NP induce ADAM17 activation; and 2) to study whether ADAM17 and/or ADAM10 are involved in germ cell apoptosis induced by BPA and NP in the pubertal rat testis. A single dose of BPA or NP (50 mg/kg) induces germ cell apoptosis in 21-day-old male rats, which was prevented by a pharmacological inhibitor of ADAM17, but not by an inhibitor of ADAM10. In vitro, we showed that BPA and NP, at similar concentrations to those found in human samples, induce the shedding of exogenous and endogenous (TNF-α) ADAM17 substrates in primary rat Sertoli cell cultures and TM4 cell line. In addition, pharmacological inhibitors of metalloproteases and genetic silencing of ADAM17 prevent the shedding induced in vitro by BPA and NP. Finally, we showed that in vivo BPA and NP induced early activation (phosphorylation) of p38 MAPK and translocation of ADAM17 to the cell surface. Interestingly, the inhibition of p38 MAPK prevents germ cell apoptosis and translocation of ADAM17 to the cell surface. These results show for the first time that xenoestrogens can induce activation of ADAM17 at concentrations similar to those found in human samples, suggesting a mechanism by which they could imbalance para/juxtacrine cell-to-cell-communication and induce germ cell apoptosis.
机译:生殖细胞凋亡调节对于维持正常的每日精子生产至关重要。几篇报道表明,内分泌干扰物如双酚A(BPA)和壬基酚(NP)诱导生殖细胞凋亡以及精子产量下降。考虑到它们在人类使用的塑料产品中的普遍分布,弄清它们的作用机理非常重要。 TACE / ADAM17是一种分布广泛的细胞外金属蛋白酶,在生精过程中参与生殖细胞的生理凋亡。这项工作的目的是:1)确定BPA和NP是否诱导ADAM17激活; 2)研究ADAM17和/或ADAM10是否参与青春期大鼠睾丸中BPA和NP诱导的生殖细胞凋亡。单剂量的BPA或NP(50 mg / kg)会在21天大的雄性大鼠中诱导生殖细胞凋亡,这可以通过药理抑制剂ADAM17阻止,但不能通过ADAM10抑制剂阻止。在体外,我们发现BPA和NP浓度与人类样品中的浓度相似,可诱导原代大鼠Sertoli细胞培养物和TM4细胞系中外源和内源(TNF-α)ADAM17底物的脱落。此外,金属蛋白酶的药理抑制剂和ADAM17的基因沉默可防止BPA和NP在体外引起的脱落。最后,我们显示了体内BPA和NP诱导p38 MAPK的早期激活(磷酸化)和ADAM17易位到细胞表面。有趣的是,对p38 MAPK的抑制可阻止生殖细胞凋亡和ADAM17易位至细胞表面。这些结果首次表明异种雌激素可以以与人类样品中相似的浓度诱导ADAM17的活化,表明它们可以通过这种机制失衡对/邻分泌分泌的细胞间通讯并诱导生殖细胞凋亡。

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