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A comparative analysis of rod bipolar cell transcriptomes identifies novel genes implicated in night vision

机译:杆双极细胞转录组的比较分析确定夜视牵连的新基因

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In the mammalian retina, rods and a specialised rod-driven signalling pathway mediate visual responses under scotopic (dim light) conditions. As rods primarily signal to rod bipolar cells (RBCs) under scoptic conditions, disorders that affect rod or RBC function are often associated with impaired night vision. To identify novel genes expressed by RBCs and, therefore, likely to be involved in night vision, we took advantage of the adult Bhlhe23?/? mouse retina (that lacks RBCs) to derive the RBC transcriptome. We found that genes expressed by adult RBCs are mainly involved in synaptic structure and signalling, whereas genes that influence RBC development are also involved in the cell cycle and transcription/translation. By comparing our data with other published retinal and bipolar cell transcriptomes (where we identify RBCs by the presence of Prkca and/or Pcp2 transcripts), we have derived a consensus for the adult RBC transcriptome. These findings ought to facilitate further research into physiological mechanisms underlying mammalian night vision as well as proposing candidate genes for patients with inherited causes of night blindness.
机译:在哺乳动物的视网膜中,视杆和专门的视杆驱动的信号通路在暗视(暗光)条件下介导视觉反应。由于杆在恶劣条件下主要向杆双极细胞(RBC)发出信号,因此影响杆或RBC功能的疾病通常与夜视受损有关。为了鉴定RBCs表达的新基因,因此可能涉及夜视,我们利用了成年的Bhlhe23α/β。小鼠视网膜(缺少RBC)来衍生RBC转录组。我们发现,成年红细胞表达的基因主要参与突触结构和信号传导,而影响红细胞发育的基因也参与细胞周期和转录/翻译。通过将我们的数据与其他已发布的视网膜和双极细胞转录组(我们通过存在Prkca和/或Pcp2转录本来识别RBC)进行比较,我们已经得出了成人RBC转录组的共识。这些发现应有助于进一步研究哺乳动物夜视基础的生理机制,并为患有夜盲遗传病的患者提出候选基因。

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