锌转运蛋白ZIP12在精子发生过程中维持锌稳态并保护精原细胞免受氧化应激。

Xinye Zhu, Chengxuan Yu, Wangshu Wu, Lei Shi, Chenyi Jiang, Li Wang, Zhide Ding, Yue Liu
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引用次数: 11

摘要

背景:大量证据表明氧化应激是精子功能障碍和男性不育的主要原因。锌是一种重要的非酶促抗氧化剂,具有广泛的生物学功能,在保持男性生育能力方面起着重要作用。值得注意的是,锌通过细胞膜和胞内转运是由特定的锌转运蛋白家族,即SLC39s/ZIPs和SLC30s/ znt介导的。然而,它们在男性生殖细胞中的表达和功能很少被研究。本研究的目的是确定和表征负责维持精子发生的关键锌转运体。方法:对14个ZIP成员在小鼠睾丸中的表达谱进行分析。qRT-PCR、免疫印迹和免疫组织化学分析ZIP12基因和蛋白表达水平。在精原细胞C18-4中,研究了ZIP12表达对氧化应激诱导的精子质量的抑制作用。转染Zip12 RNAi以确定其下调是否改变了该细胞系的细胞活力和凋亡。为了确定ZIP12表达水平的变化与精子质量之间是否存在相关性,研究人员使用了一只喂食高脂肪食物的肥胖小鼠模型。结果:在小鼠睾丸和其他组织中,ZIP12 mRNA和蛋白表达水平均高于其他ZIP家族成员。重要的是,ZIP12在小鼠和人类精原细胞和精子中的表达水平都非常显著地高。肥胖小鼠睾丸ZIP12表达水平显著降低,与精子锌含量降低、精子ROS生成过多、精子质量差、男性生育能力低下有关。同样,暴露于氧化应激诱导C18-4细胞中ZIP12表达水平显著下降。转染ZIP12 siRNA介导的ZIP12表达下调降低了C18-4细胞系的锌含量和活力,而凋亡活性增加。结论:睾丸锌转运蛋白ZIP12在精原细胞和精子中的表达水平明显高于其他组织。ZIP12可能在维持细胞内锌含量的水平上发挥关键作用,从而降低氧化应激对精子发生过程中精原细胞和精子活力的抑制作用,从而帮助抵消男性生育能力的下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Zinc transporter ZIP12 maintains zinc homeostasis and protects spermatogonia from oxidative stress during spermatogenesis.

Zinc transporter ZIP12 maintains zinc homeostasis and protects spermatogonia from oxidative stress during spermatogenesis.

Zinc transporter ZIP12 maintains zinc homeostasis and protects spermatogonia from oxidative stress during spermatogenesis.

Zinc transporter ZIP12 maintains zinc homeostasis and protects spermatogonia from oxidative stress during spermatogenesis.

Background: Overwhelming evidences suggest oxidative stress is a major cause of sperm dysfunction and male infertility. Zinc is an important non-enzymatic antioxidant with a wide range of biological functions and plays a significant role in preserving male fertility. Notably, zinc trafficking through the cellular and intracellular membrane is mediated by specific families of zinc transporters, i.e., SLC39s/ZIPs and SLC30s/ZnTs. However, their expression and function were rarely evaluated in the male germ cells. The aim of this study is to determine and characterize the crucial zinc transporter responsible for the maintenance of spermatogenesis.

Methods: The expression patterns of all 14 ZIP members were characterized in the mouse testis. qRT-PCR, immunoblot and immunohistochemistry analyses evaluated the ZIP12 gene and protein expression levels. The role of ZIP12 expression was evaluated in suppressing the sperm quality induced by exposure to an oxidative stress in a spermatogonia C18-4 cell line. Zip12 RNAi transfection was performed to determine if its downregulation altered cell viability and apoptosis in this cell line. An obese mouse model fed a high-fat-diet was employed to determine if there is a correlation between changes in the ZIP12 expression level and sperm quality.

Results: The ZIP12 mRNA and protein expression levels were higher than those of other ZIP family members in both the mouse testis and other tissues. Importantly, the ZIP12 expression levels were very significantly higher in both mice and human spermatogonia and spermatozoa. Moreover, the testicular ZIP12 expression levels significantly decreased in obese mice, which was associated with reduced sperm zinc content, excessive sperm ROS generation, poor sperm quality and male subfertility. Similarly, exposure to an oxidative stress induced significant declines in the ZIP12 expression level in C18-4 cells. Knockdown of ZIP12 expression mediated by transfection of a ZIP12 siRNA reduced both the zinc content and viability whereas apoptotic activity increased in the C18-4 cell line.

Conclusions: The testicular zinc transporter ZIP12 expression levels especially in spermatogonia and spermatozoa are higher than in other tissues. ZIP12 may play a key role in maintaining intracellular zinc content at levels that reduce the inhibitory effects of rises in oxidative stress on spermatogonia and spermatozoa viability during spermatogenesis which help counteract declines in male fertility.

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