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Sirt1 m6A 修饰诱发的 Leydig 细胞衰老促进 Cd 诱导的睾酮下降。

Sirt1 m6A modification-evoked Leydig cell senescence promotes Cd-induced testosterone decline.

机构信息

Department of Toxicology, School of Public Health, Center for Big Data and Population Health of IHM, Anhui Medical University, China; Key Laboratory of Environmental Toxicology of Anhui Higher Education Institutes, China; Key Laboratory of Population Health Across Life Cycle (Anhui Medical University), Ministry of Education of the People's Republic of China, China.

Department of Toxicology, School of Public Health, Center for Big Data and Population Health of IHM, Anhui Medical University, China; Key Laboratory of Environmental Toxicology of Anhui Higher Education Institutes, China.

出版信息

Ecotoxicol Environ Saf. 2024 Oct 1;284:116884. doi: 10.1016/j.ecoenv.2024.116884. Epub 2024 Aug 16.

Abstract

Diminished testosterone levels have been documented as a key factor in numerous male health disorders. Both human and animal studies have consistently demonstrated that cadmium (Cd), a pervasive environmental heavy metal, results in decreased testosterone levels. However, the exact mechanism through which Cd interferes with testosterone synthesis remains incompletely elucidated. This research sought to examine the impact of cellular senescence on Cd-suppressed testosterone synthesis. We also investigated the related m6A modification mechanism. The results demonstrated that Cd (100 mg/L) led to a decrease in testosterone levels, along with downregulated expression of testosterone synthase in C57BL/6 N male mice. Furthermore, Cd significantly increased β-galactosidase staining intensity, senescence-related proteins, and senescence-related secretory phenotypes in mouse testicular Leydig cells. Subsequent investigations revealed that Cd decreased the mRNA and protein levels of NAD-dependent deacetylase Sirtuin-1 (SIRT1) in Leydig cells. Mechanistically, mice treated with resveratrol (50 mg/kg), a specific SIRT1 activator, mitigated Leydig cell senescence and reversed Cd-reduced testosterone levels in mouse testes. These effects were also restored by SIRT1 overexpression in Leydig cells. Additionally, we found that Cd increased the level of methyltransferase enzyme METTL3 and Sirt1 m6A modification in Leydig cells. Mettl3 siRNA effectively restored Cd-enhanced Sirt1 m6A level and reversed Cd-downregulated Sirt1 mRNA expression in Leydig cells. Overall, our findings suggest that Cd exposure inhibits testosterone synthesis via Sirt1 m6A modification-mediated senescence in mouse testes. These results offer an experimental basis for investigating the causes and potential treatments of hypotestosteronemia induced by environmental factors.

摘要

睾丸酮水平降低已被证实是许多男性健康障碍的一个关键因素。人类和动物研究都一致表明,镉(Cd)这种普遍存在的环境重金属会导致睾丸酮水平降低。然而,Cd 干扰睾丸酮合成的确切机制仍不完全清楚。本研究旨在探讨细胞衰老对 Cd 抑制睾丸酮合成的影响。我们还研究了相关的 m6A 修饰机制。结果表明,Cd(100mg/L)导致 C57BL/6N 雄性小鼠睾丸酮水平下降,同时睾丸酮合成酶的表达下调。此外,Cd 显著增加了小鼠睾丸间质细胞的β-半乳糖苷酶染色强度、衰老相关蛋白和衰老相关分泌表型。进一步的研究表明,Cd 降低了 Leydig 细胞中 NAD 依赖性去乙酰化酶 Sirtuin-1(SIRT1)的 mRNA 和蛋白水平。机制上,用白藜芦醇(50mg/kg)处理的小鼠,一种特定的 SIRT1 激活剂,减轻了 Leydig 细胞衰老,并逆转了小鼠睾丸中 Cd 降低的睾丸酮水平。这些效应也可以通过 Leydig 细胞中 SIRT1 的过表达来恢复。此外,我们发现 Cd 增加了甲基转移酶酶 METTL3 和 Leydig 细胞中 Sirt1 m6A 修饰的水平。Mettl3 siRNA 有效地恢复了 Cd 增强的 Sirt1 m6A 水平,并逆转了 Cd 下调的 Leydig 细胞中 Sirt1 mRNA 表达。总之,我们的研究结果表明,Cd 暴露通过小鼠睾丸中的 Sirt1 m6A 修饰介导的衰老抑制了睾丸酮的合成。这些结果为研究环境因素引起的低睾丸酮血症的原因和潜在治疗方法提供了实验依据。

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