Xie Lisheng, Zhou Qiongqiong, Chen Xiaorui, Du Xiaoping, Liu Zhibiao, Fei Bing, Hou Jie, Dai Yanhong, She Wandong
Department of Otolaryngology-Head and Neck Surgery, Nanjing Drum Tower Hospital, Clinical College of Nanjing Medical University, Nanjing 210008, China.
Department of Otolaryngology, Children's Hospital of Nanjing Medical University, Nanjing 210008, China.
Mol Ther Nucleic Acids. 2021 Jan 20;23:1093-1109. doi: 10.1016/j.omtn.2021.01.017. eCollection 2021 Mar 5.
We previously reported that dysregulation of histone deacetylase 2 (Hdac2) was associated with the prognosis of sudden sensorineural hearing loss. However, the underlying molecular mechanisms are poorly understood. In the present study, we developed an acute hearing loss animal model in guinea pigs by infusing lipopolysaccharides (LPS) into the cochlea and measured the expression of Hdac2 in the sensory epithelium. We observed that the level of Hdac2 was significantly decreased in the LPS-infused cochleae. The levels of apoptosis-inhibition genes and Bcl-xl were also decreased in the cochlea and correlated positively with the levels of Hdac2. Caspase3 or TUNEL-positive spiral ganglion neurons, hair cells, and supporting cells were observed in the LPS-infused cochleae. These observations were recapitulated in cell culture experiments. Based on bioinformatics analysis, we found was engaged in the regulation of Hdac2 on Bcl-2. Molecular mechanism experiments displayed that could be regulated by Hdac2 through interacting with transcription factor Sp1. Taken together, these results indicated that the Hdac2/Sp1// regulatory axis mediated apoptosis in the cochlea, providing potential insights into the progression of acute hearing loss. To our knowledge, the study describes a miRNA-related mechanism for Hdac2-mediated regulation in the cochlea for the first time.
我们之前报道过,组蛋白去乙酰化酶2(Hdac2)的失调与突发性感音神经性听力损失的预后相关。然而,其潜在的分子机制仍知之甚少。在本研究中,我们通过向豚鼠耳蜗内注入脂多糖(LPS)建立了急性听力损失动物模型,并测量了感觉上皮中Hdac2的表达。我们观察到,注入LPS的耳蜗中Hdac2水平显著降低。耳蜗中凋亡抑制基因和Bcl-xl的水平也降低,且与Hdac2水平呈正相关。在注入LPS的耳蜗中观察到Caspase3或TUNEL阳性的螺旋神经节神经元、毛细胞和支持细胞。这些观察结果在细胞培养实验中得到了重现。基于生物信息学分析,我们发现参与了Hdac2对Bcl-2的调控。分子机制实验表明,可通过与转录因子Sp1相互作用受Hdac2调控。综上所述,这些结果表明Hdac2/Sp1//调控轴介导了耳蜗中的细胞凋亡,为急性听力损失的进展提供了潜在的见解。据我们所知,该研究首次描述了耳蜗中Hdac2介导调控的一种与miRNA相关的机制。