Tanackovic Goranka, Rivolta Carlo
Department of Medical Genetics, University of Lausanne, Lausanne, Switzerland.
Ophthalmic Genet. 2009 Jun;30(2):76-83. doi: 10.1080/13816810902744621.
To provide a mechanistic link between mutations in PRPF31, and essential and ubiquitously expressed gene, and retinitis pigmentosa, a disorder restricted to the eye.
We investigated the existence of retina-specific PRPF31 isoforms and the expression of this gene in human retina and other tissues, as well as in cultured human cell lines. PRPF31 transcripts were examined by RT-PCR, quantitative PCR, cloning and sequencing.
Database searching revealed the presence of a retina-specific PRPF31 isoform in mouse. However, this isoform could not be experimentally identified in transcripts from human retina or from a human whole eye. Nevertheless, four different PRPF31 isoforms, that were common to all analyzed tissues and cell lines, were isolated. Three of these harbored the full-length PRPF31 coding sequence, whereas the fourth was very short and probably non-coding. The amount of PRPF31 mRNA was previously found to be lower in patients with mutations in this gene than in healthy individuals, making it likely that retinal cells are more sensitive to variation in PRPF31 expression. However, quantitative PCR experiments revealed that PRPF31 mRNA levels in human retina were comparable to those detected in other tissues.
Our results show that the retina-restricted phenotype caused by PRPF31 mutations cannot be explained by the presence of tissue-specific isoforms, or by differential expression of PRPF31 in the retina. As a consequence, the etiology of PRPF31-associated retinitis pigmentosa likely relies on other, probably more subtle molecular mechanisms.
在PRPF31(一种必需且广泛表达的基因)突变与视网膜色素变性(一种仅限于眼部的疾病)之间建立一种机制联系。
我们研究了视网膜特异性PRPF31亚型的存在情况,以及该基因在人视网膜和其他组织以及培养的人细胞系中的表达。通过逆转录聚合酶链反应(RT-PCR)、定量聚合酶链反应、克隆和测序来检测PRPF31转录本。
数据库搜索显示在小鼠中存在一种视网膜特异性PRPF31亚型。然而,在人视网膜或人全眼的转录本中无法通过实验鉴定出这种亚型。尽管如此,分离出了四种在所有分析的组织和细胞系中都共有的不同PRPF31亚型。其中三种含有全长PRPF31编码序列,而第四种非常短,可能是非编码的。先前发现该基因突变患者的PRPF31 mRNA量低于健康个体,这使得视网膜细胞可能对PRPF31表达的变化更敏感。然而,定量聚合酶链反应实验表明人视网膜中的PRPF31 mRNA水平与在其他组织中检测到的水平相当。
我们的结果表明,PRPF31突变引起的视网膜限制性表型不能通过组织特异性亚型的存在或PRPF31在视网膜中的差异表达来解释。因此,PRPF31相关视网膜色素变性的病因可能依赖于其他可能更微妙的分子机制。