Liu Huizhan, Pecka Jason L, Zhang Qian, Soukup Garrett A, Beisel Kirk W, He David Z Z
Neuroscience Center, Ningbo University School of Medicine, Ningbo 315211, China, and Department of Biomedical Sciences, Creighton University School of Medicine, Omaha, Nebraska 68178.
Department of Biomedical Sciences, Creighton University School of Medicine, Omaha, Nebraska 68178.
J Neurosci. 2014 Aug 13;34(33):11085-95. doi: 10.1523/JNEUROSCI.1690-14.2014.
Inner hair cells (IHCs) and outer hair cells (OHCs) are the two types of sensory receptor cells that are critical for hearing in the mammalian cochlea. IHCs and OHCs have different morphology and function. The genetic mechanisms that define their morphological and functional specializations are essentially unknown. The transcriptome reflects the genes that are being actively expressed in a cell and holds the key to understanding the molecular mechanisms of the biological properties of the cell. Using DNA microarray, we examined the transcriptome of 2000 individually collected IHCs and OHCs from adult mouse cochleae. We show that 16,647 and 17,711 transcripts are expressed in IHCs and OHCs, respectively. Of those genes, ∼73% are known genes, 22% are uncharacterized sequences, and 5.0% are noncoding RNAs in both populations. A total of 16,117 transcripts are expressed in both populations. Uniquely and differentially expressed genes account for <15% of all genes in either cell type. The top 10 differentially expressed genes include Slc17a8, Dnajc5b, Slc1a3, Atp2a3, Osbpl6, Slc7a14, Bcl2, Bin1, Prkd1, and Map4k4 in IHCs and Slc26a5, C1ql1, Strc, Dnm3, Plbd1, Lbh, Olfm1, Plce1, Tectb, and Ankrd22 in OHCs. We analyzed commonly and differentially expressed genes with the focus on genes related to hair cell specializations in the apical, basolateral, and synaptic membranes. Eighty-three percent of the known deafness-related genes are expressed in hair cells. We also analyzed genes involved in cell-cycle regulation. Our dataset holds an extraordinary trove of information about the molecular mechanisms underlying hair cell morphology, function, pathology, and cell-cycle control.
内毛细胞(IHCs)和外毛细胞(OHCs)是两种对哺乳动物耳蜗听觉至关重要的感觉受体细胞。内毛细胞和外毛细胞具有不同的形态和功能。定义它们形态和功能特化的遗传机制基本上尚不清楚。转录组反映了细胞中正在活跃表达的基因,是理解细胞生物学特性分子机制的关键。我们使用DNA微阵列检测了从成年小鼠耳蜗中单独收集的2000个内毛细胞和外毛细胞的转录组。我们发现分别有16,647和17,711个转录本在内毛细胞和外毛细胞中表达。在这些基因中,两种细胞群体中约73%是已知基因,22%是未表征序列,5.0%是非编码RNA。共有16,117个转录本在两种细胞群体中都有表达。独特表达和差异表达的基因在任何一种细胞类型中都占所有基因的不到15%。内毛细胞中差异表达最高的前10个基因包括Slc17a8、Dnajc5b、Slc1a3、Atp2a3、Osbpl6、Slc7a14、Bcl2、Bin1、Prkd1和Map4k4,外毛细胞中则包括Slc26a5、C1ql1、Strc、Dnm3、Plbd1、Lbh、Olfm1、Plce1、Tectb和Ankrd22。我们分析了共同表达和差异表达的基因,重点关注与顶膜、基底外侧膜和突触膜中毛细胞特化相关的基因。83%的已知耳聋相关基因在毛细胞中表达。我们还分析了参与细胞周期调控的基因。我们的数据集包含了关于毛细胞形态、功能、病理学和细胞周期控制潜在分子机制的大量信息。