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Identifying differentially expressed genes in the mammalian retina and the retinal pigment epithelium by suppression subtractive hybridization

机译:通过抑制性消减杂交鉴定哺乳动物视网膜和视网膜色素上皮中的差异表达基因

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Retina and retinal pigment epithelium (RPE) cells are of neuroectodermal origin with highly specialized functions in light perception. Identification and characterization of genes differentially expressed in these cells will greatly aid our understanding of their functional roles in retinal biology. As a source enriched for gene transcripts from the retina/RPE, we generated a human retina and a bovine RPE cDNA library applying the PCR-based technique of suppression subtractive hybridization (SSH). Sequencing of 1,080 retina and 2,350 RPE SSH clones resulted in the identification of 321 and 343 non-redundant human transcripts, respectively. Of these, only 27 genes were in common between the two cDNA libraries. One transcript expressed exclusively in retina and RPE is the novel gene C4orf11 which is comprised of four exons on chromosome 4q21.2. We report the full-length cloning of two isoforms of C4orf11, 919 bp and 857 bp in length, both of which contain four identical open reading frames (ORFs). While ORFs 1 to 3 show no homologies to known proteins or protein domains, ORF4 reveals 50% sequence identity to RPE-spondin, a hypothetical protein on 8q13.3 with unknown function. We demonstrate that both the retina and the RPE SSH cDNA libraries are excellent resources for identifying known and novel genes exclusively or abundantly expressed in the retina/RPE complex. In combination with other approaches such as microarray analysis or serial analysis of gene expression (SAGE), the availability of highly sensitive and specific SSH cDNA libraries will facilitate the comprehensive description of the retina/RPE transcriptome.
机译:视网膜和视网膜色素上皮(RPE)细胞是神经外胚层起源的,在光感知方面具有高度专门化的功能。在这些细胞中差异表达的基因的鉴定和表征将极大地帮助我们了解其在视网膜生物学中的功能。作为富含来自视网膜/ RPE的基因转录物的来源,我们使用基于PCR的抑制消减杂交(SSH)技术生成了人类视网膜和牛RPE cDNA文库。对1,080个视网膜和2,350个RPE SSH克隆进行测序,分别鉴定出321和343个非冗余人类转录物。其中,两个cDNA文库之间只有27个基因是共有的。仅在视网膜和RPE中表达的一个转录物是新基因C4orf11,它由4q21.2号染色体上的四个外显子组成。我们报告全长克隆的C4orf11,919 bp和857 bp的两个同工型,它们都包含四个相同的开放阅读框(ORF)。虽然ORF 1至3与已知蛋白质或蛋白质结构域没有同源性,但ORF4与RPE-spondin(一种功能未知的8q13.3上的假设蛋白质)具有50%的序列同一性。我们证明,视网膜和RPE SSH cDNA文库都是用于识别在视网膜/ RPE复合体中专门或大量表达的已知和新颖基因的优秀资源。与其他方法(如微阵列分析或基因表达的序列分析(SAGE))结合使用时,高度敏感和特定的SSH cDNA文库的可用性将有助于全面描述视网膜/ RPE转录组。

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