Department of Human Anatomy, Histology and Embryology, School of Basic Medicine, Qingdao University, Qingdao, China.
Institute of Stem Cell Regeneration Medicine, School of Basic Medicine, Qingdao University, Qingdao, China.
Invest Ophthalmol Vis Sci. 2023 Sep 1;64(12):27. doi: 10.1167/iovs.64.12.27.
Dry eye disease (DED) is multifactorial and associated with nerve abnormalities. We explored an Aquaporin 5 (AQP5)-deficiency-induced JunB activation mechanism, which causes abnormal lacrimal gland (LG) nerve distribution through Slit2 upregulation and Netrin-1 repression.
Aqp5 knockout (Aqp5-/-) and wild-type (Aqp5+/+) mice were studied. LGs were permeabilized and stained with neuronal class III β-tubulin, tyrosine hydroxylase (TH), vasoactive intestinal peptide (VIP), and calcitonin gene-related peptide (CGRP). Whole-mount images were acquired through tissue clearing and 3D fluorescence imaging. Mouse primary trigeminal ganglion (TG) neurons were treated with LG extracts and Netrin-1/Slit2 neutralizing antibody. Transcription factor (TF) prediction and chromatin immunoprecipitation-polymerase chain reaction (ChIP-PCR) experiments verified the JunB binding and regulatory effect on Netrin-1 and Slit2.
Three-dimensional tissue and section immunofluorescence showed reduced LG nerves in Aqp5-/- mice, with sympathetic and sensory nerves significantly decreased. Netrin-1 was reduced and Slit2 increased in Aqp5-/- mice LGs. Aqp5+/+ mice LG tissue extracts (TEs) promoted Aqp5-/- TG neurons axon growth, but Netrin-1 neutralizing antibody (NAb) could inhibit that promotion. Aqp5-/- mice LG TEs inhibited Aqp5+/+ TG axon growth, but Slit2 NAb alleviated that inhibition. Furthermore, JunB, a Netrin-1 and Slit2 TF, could bind them and regulate their expression. SR11302, meanwhile, reversed the Netrin-1 and Slit2 shifts caused by AQP5 deficiency.
AQP5 deficiency causes LG nerve abnormalities. Persistent JunB activation, the common denominator for Netrin-1 suppression and Slit2 induction, was found in Aqp5-/- mice LG epithelial cells. This affected sensory and sympathetic nerve fibers' distribution in LGs. Our findings provide insights into preventing, reversing, and treating DED.
干眼症(DED)是多因素的,并与神经异常有关。我们探索了一种水通道蛋白 5(AQP5)缺陷诱导 JunB 激活的机制,该机制通过上调 Slit2 和抑制 Netrin-1 导致异常的泪腺(LG)神经分布。
研究了 Aqp5 敲除(Aqp5-/-)和野生型(Aqp5+/+)小鼠。LG 经透化和神经元 III 类 β-微管蛋白、酪氨酸羟化酶(TH)、血管活性肠肽(VIP)和降钙素基因相关肽(CGRP)染色。通过组织透明化和 3D 荧光成像获取全组织图像。用 LG 提取物和 Netrin-1/Slit2 中和抗体处理原代三叉神经节(TG)神经元。转录因子(TF)预测和染色质免疫沉淀聚合酶链反应(ChIP-PCR)实验验证了 JunB 对 Netrin-1 和 Slit2 的结合和调节作用。
三维组织和切片免疫荧光显示,Aqp5-/- 小鼠的 LG 神经减少,交感神经和感觉神经明显减少。Aqp5-/- 小鼠的 LG 中 Netrin-1 减少,Slit2 增加。Aqp5+/+ 小鼠 LG 组织提取物(TEs)促进 Aqp5-/- TG 神经元轴突生长,但 Netrin-1 中和抗体(NAb)可抑制该促进作用。Aqp5-/- 小鼠 LG TEs 抑制 Aqp5+/+ TG 轴突生长,但 Slit2 NAb 减轻了抑制作用。此外,JunB,一种 Netrin-1 和 Slit2 的 TF,可与其结合并调节其表达。同时,SR11302 逆转了 AQP5 缺乏引起的 Netrin-1 和 Slit2 变化。
AQP5 缺乏导致 LG 神经异常。在 Aqp5-/- 小鼠的 LG 上皮细胞中发现,持续的 JunB 激活是 Netrin-1 抑制和 Slit2 诱导的共同因素。这影响了 LG 中感觉和交感神经纤维的分布。我们的研究结果为预防、逆转和治疗 DED 提供了思路。