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首页> 外文期刊>Cell death & disease. >Aroclor1254 disrupts the blood–testis barrier by promoting endocytosis and degradation of junction proteins via p38 MAPK pathway
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Aroclor1254 disrupts the blood–testis barrier by promoting endocytosis and degradation of junction proteins via p38 MAPK pathway

机译:Aroclor1254通过P38 Mapk途径促进结咽蛋白的内吞炎和结降来破坏血液睾丸屏障

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The blood–testis barrier (BTB) constituted by coexisting junction apparatus between Sertoli cells (SCs) plays an important role in spermatogenesis, which is a known target of various environmental toxicants. The commercial polychlorinated biphenyls mixture, Aroclor1254, has been shown to impair male reproduction by decreasing sperm count and affecting SC metabolism. This study was designed to investigate the effects of Aroclor1254 on the BTB integrity and elucidate the underlying mechanisms. We found that Aroclor1254 treatment in rats (1 or 3?mg/kg per day for 21 consecutive days) and in primary cultured SCs (5 or 10 μ g/ml for 48?h) could induce BTB disruption via p38 MAPK pathway, concurrently with increments in junction proteins (JAM-A, N-cadherin, and β -catenin) endocytosis, and occludin ubiquitination. Either inhibition of caveolin-dependent membrane protein internalization by cholesterol oxidase or silencing E3 ubiquitine ligase Itch by small interfering RNA could partially counteract the effects of Aroclor1254 on the barrier function of cultured SCs. These results demonstrate that Aroclor1254 disrupts the BTB function by promoting the caveolin-dependent endocytosis and ubiquitine–proteasome degradation of junction proteins through the p38 MAPK pathway, which might be the potential reasons for its negative effects on spermatogenesis and male reproduction.
机译:由Sertoli细胞(SCS)之间的共存结装置构成的血液睾丸屏障(BTB)在精子发生中起重要作用,这是各种环境毒物的已知靶标。已经证明了商业多氯联苯混合物,Aroclor1254,通过降低精子计数并影响SC代谢来损害雄性繁殖。本研究旨在探讨Aroclor1254对BTB完整性的影响,并阐明潜在机制。我们发现在大鼠(连续21天每天1或3毫克/千克/千克)和初级培养的SCs(5或10μg/ ml,48〜H)的芳烃治疗可通过P38 Mapk途径,同时诱导BTB破坏在结蛋白(卡纸A,N-Cadherin和β-凝胶蛋白)内吞作用中的增量,和瘤中泛素化。通过小干扰RNA通过胆固醇氧化酶或沉默的E3 ubiquitine连接酶瘙痒的抑制Caveolin依赖性膜蛋白质化可以部分地抵消芳烃对培养SCS的阻隔功能的影响。这些结果表明,通过P38 Mapk途径促进Caveolin依赖性内吞作用和泛素蛋白酶体降解结鼠蛋白质蛋白的脱蛋白蛋白酶,这可能是其对精子发生和男性繁殖的负面影响的潜在原因来破坏BTB功能。

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