Zhang Weijing, Adetunji Adedeji O, Zeng Wenxian, Bastawy Eslam M, Min Lingjiang, Ding Nengshui, Zhu Zhendong
College of Animal Science and Technology, Qingdao Agricultural University, Qingdao 266109, China.
Department of Agriculture, University of Arkansas at Pine Bluff, Pine Bluff, AR 71601, USA.
Biology (Basel). 2025 Sep 2;14(9):1182. doi: 10.3390/biology14091182.
Mammalian sperm has a high metabolic activity and primarily relies on glycolysis and mitochondrial oxidative phosphorylation for energy supply. It has been reported that imiquimod (R837), a specific ligand of TLR7 protein, reduces the motility of sperm. However, the specific molecular mechanism by which TLR7 modulates boar sperm is unclear. In this study, the effect of R837, a Toll-like receptor 7 (TLR7) agonist, on boar sperm motility was investigated. Sperm samples were incubated with varying concentrations of R837 (0 to 0.8 µM) at different time points (30, 60, and 90 min). Findings reveal for the first time that TLR7 protein, a key component of the immune system's Toll-like receptors, is predominantly localized in the middle section of the boar sperm tail, with a smaller concentration observed in the neck. Also, immunofluorescence (IF) revealed that approximately half of the boar sperm sample expressed TLR7. Furthermore, the TLR7 agonist influenced glycolytic hexokinase activity and mitochondrial function via the PI3K-GSK3β signaling pathway. It also selectively inhibited motility in the lower-layer sperm, while motility in the upper-layer sperm remained unaffected. Additionally, this study determined that incubation conditions for boar sperm with 0.2 μM R837 at 37 °C for 60 min yielded the most pronounced inhibition of forward motility in the lower layer of sperm, without compromising the integrity of the acrosome or plasma membrane. The present study reveals the crucial role of R837 in boar sperm motility and highlights TLR7 as an important protein that regulates boar sperm energy metabolism.
哺乳动物精子具有较高的代谢活性,主要依靠糖酵解和线粒体氧化磷酸化来提供能量。据报道,Toll样受体7(TLR7)蛋白的特异性配体咪喹莫特(R837)可降低精子活力。然而,TLR7调节公猪精子的具体分子机制尚不清楚。在本研究中,研究了Toll样受体7(TLR7)激动剂R837对公猪精子活力的影响。精子样本在不同时间点(30、60和90分钟)与不同浓度(0至0.8 μM)的R837孵育。研究结果首次表明,免疫系统Toll样受体的关键组成部分TLR7蛋白主要定位于公猪精子尾部的中段,颈部的浓度较低。此外,免疫荧光(IF)显示,约一半的公猪精子样本表达TLR7。此外,TLR7激动剂通过PI3K-GSK3β信号通路影响糖酵解己糖激酶活性和线粒体功能。它还选择性地抑制下层精子的活力,而上层精子的活力不受影响。此外,本研究确定,在37℃下用0.2 μM R837孵育公猪精子60分钟的条件对下层精子的前向运动抑制最为明显,且不影响顶体或质膜的完整性。本研究揭示了R837在公猪精子活力中的关键作用,并突出了TLR7作为调节公猪精子能量代谢的重要蛋白。