Department of Gynecology and Obstetrics, Tangdu Hospital, Reproductive Medicine Center, Air Force Medical University, Xi'an, China.
Department of Human Anatomy, Histology and Embryology, Air Force Medical University, Xi'an, China.
FEBS J. 2022 May;289(10):2809-2827. doi: 10.1111/febs.16326. Epub 2022 Jan 7.
Phagocytic clearance of apoptotic germ cells (GCs), as well as residual bodies released from developing spermatids, is critical for Sertoli cells (SCs) to maintain inner environment homeostasis within the testis. However, the molecular mechanisms controlling the phagocytosis are ill defined. Here, we identify a new role for alpha-enolase (ENO1), a key enzyme during glycolysis, as a molecule that facilitates testicular phagocytosis via transactivation of the engulfment and cell motility 1 (Elmo1) gene. Using immunohistochemistry and double-labeling immunofluorescence, ENO1 was observed to be expressed exclusively in the nuclei of SCs and its expression correlated with the completion of SC differentiation. By incubating TM4 cells with different pharmacological inhibitors and establishing TM4 cells, we demonstrated that SC-specific expression of ENO1 was under a delicate paracrine control from apoptotic GCs. In turn, persistent blockade of ENO1 expression by a validated small interfering RNA protocol resulted in the disturbance of spermatogenesis and impairment of male fertility. Furthermore, using ChIP, electrophoretic mobility shift and luciferase reporter assays, we showed that, in the presence of apoptotic GCs, ENO1 binds to the distal region of the Elmo1 promoter and facilitates transactivation of the Elmo1 gene. In agreement, overexpression of ELMO1 ameliorated ENO1 deficiency-induced impairment of phagocytosis in TM4 cells. These data reveal a novel role for SC-specific expression of ENO1 in regulating phagocytosis in testis, identify tumor necrosis factor-α and ELMO1 as critical upstream and downstream factors in mediating ENO1 action, and have important implications for our understanding of paracrine control of SC function by adjacent GCs.
吞噬凋亡性生殖细胞 (GCs) 和从发育中的精原细胞释放的残余体,对于支持细胞 (SCs) 在睾丸内维持内环境稳态至关重要。然而,控制吞噬作用的分子机制尚不清楚。在这里,我们确定了糖酵解过程中的关键酶α-烯醇酶 (ENO1) 的一个新作用,即通过转激活吞噬和细胞运动 1 (Elmo1) 基因来促进睾丸吞噬作用的分子。通过免疫组织化学和双标记免疫荧光,观察到 ENO1 仅在 SC 的核中表达,其表达与 SC 分化的完成相关。通过用不同的药理抑制剂孵育 TM4 细胞并建立 TM4 细胞,我们证明了 ENO1 的 SC 特异性表达受到来自凋亡 GCs 的精细旁分泌控制。反过来,通过验证的小干扰 RNA 方案持续阻断 ENO1 表达会导致精子发生紊乱和雄性生育力受损。此外,通过 ChIP、电泳迁移率变动和荧光素酶报告基因分析,我们表明,在存在凋亡 GCs 的情况下,ENO1 结合到 Elmo1 启动子的远端区域,并促进 Elmo1 基因的转激活。一致地,过表达 ELMO1 改善了 TM4 细胞中 ENO1 缺乏诱导的吞噬作用损伤。这些数据揭示了 SC 特异性表达 ENO1 在调节睾丸吞噬作用中的新作用,确定了肿瘤坏死因子-α和 ELMO1 作为介导 ENO1 作用的关键上下游因素,并对我们理解相邻 GCs 对 SC 功能的旁分泌控制具有重要意义。