Wu Di, Pandupuspitasari Nuruliarizki Shinta, Zhang Kejia, Tang Yuan, Khan Faheem Ahmed, Li Haitao, Huang Chunjie, Sun Fei
Institute of Reproductive Medicine, School of Medicine, Nantong University, Nantong 226001, China.
Faculty of Animal and Agricultural Sciences, Universitas Diponegoro, Semarang 1269, Indonesia; Department of Biological Engineering, Massachusetts Institute of Technology, MA 02139, USA.
Biochim Biophys Acta Mol Cell Res. 2023 Apr;1870(4):119434. doi: 10.1016/j.bbamcr.2023.119434. Epub 2023 Jan 27.
Efferocytosis of non-viable germ cells by Sertoli cells (SCs) constitutes a sentinel for testis homeostasis, yet how SCs signal for the metabolic and cytoskeletal adaption to this energetically costly process remains unexplored. Spectrin is membrane-associated periodic skeleton assembled into an actin-spectrin-based cytoskeletal structure with an interaction with glucose transporter Glut1. The contribution of spectrin to glucose uptake and efferocytosis is unknown. In this study, we identified a cross-regulation between glucose metabolism and efferocytosis in SCs. Pharmacological or genetic inhibition of glucose uptake or glycolysis compromises efferocytosis activity. We further found that βII-spectrin is a hitherto unappreciated regulator of glucose metabolism and cytoskeletal architecture. βII-spectrin deficiency impairs glucose uptake and lactate production in SCs. Moreover, a defective assembly of cytoskeleton and a loss of blood-testis barrier integrity are also featured by SCs deficient in βII-spectrin. The disruption in glucose metabolism and cytoskeletal organization synergistically lead to a defective efferocytosis. In vivo siRNA-mediated targeting of βII-spectrin in testis causes an obvious morphological aberration in seminiferous epithelium with the presence of exfoliated germ cells and multinucleated giant cells. Importantly, a decrease in expression of αII/βII-spectrin was observed in testes of Adjudin-induced infertility model. By exploring the functional relevance of βII-spectrin to the metabolic and cytoskeletal regulation of efferocytosis, our study proposes a potential link between βII-spectrin deregulation and male infertility.
支持细胞(SCs)对无活力生殖细胞的胞葬作用是睾丸内环境稳定的一个重要标志,但支持细胞如何通过信号传导来实现对这一能量消耗巨大过程的代谢和细胞骨架适应仍未得到探索。血影蛋白是一种与膜相关的周期性骨架,组装成基于肌动蛋白-血影蛋白的细胞骨架结构,并与葡萄糖转运蛋白Glut1相互作用。血影蛋白对葡萄糖摄取和胞葬作用的贡献尚不清楚。在本研究中,我们确定了支持细胞中葡萄糖代谢与胞葬作用之间的交叉调节。对葡萄糖摄取或糖酵解的药理学或遗传学抑制会损害胞葬作用活性。我们进一步发现,βII-血影蛋白是一种迄今未被重视的葡萄糖代谢和细胞骨架结构调节因子。βII-血影蛋白缺乏会损害支持细胞中的葡萄糖摄取和乳酸生成。此外,βII-血影蛋白缺乏的支持细胞还具有细胞骨架组装缺陷和血睾屏障完整性丧失的特征。葡萄糖代谢和细胞骨架组织的破坏协同导致胞葬作用缺陷。体内通过小干扰RNA介导靶向睾丸中的βII-血影蛋白会导致生精上皮出现明显的形态畸变,伴有脱落的生殖细胞和多核巨细胞。重要的是,在阿地金诱导的不育模型的睾丸中观察到αII/βII-血影蛋白表达降低。通过探索βII-血影蛋白与胞葬作用的代谢和细胞骨架调节的功能相关性,我们的研究提出了βII-血影蛋白失调与男性不育之间的潜在联系。