Department of Clinical Studies, University of Pennsylvania, Section of Ophthalmology, School of Veterinary Medicine, 3900 Delancey Street, Philadelphia, PA 19104, USA.
Adv Exp Med Biol. 2012;723:353-63. doi: 10.1007/978-1-4614-0631-0_46.
We developed an expression profiling array to examine pro-apoptotic and pro-survival genes in dog retinal degeneration models. Gene specific canine TaqMan assays were developed and included in a custom real-time quantitative reverse transcription-PCR (qRT-PCR) array. Of the 96 selected genes, 93 belonged to known relevant pro-apoptotic and pro-survival pathways, and/or were positive controls expressed in retina, while 3 were housekeeping genes. Ingenuity Pathway Analysis (IPA) showed that the selected genes belonged to expected biological functions (cell death, cell-mediated immune response, cellular development, function, and maintenance) and pathways (death receptor signaling, apoptosis, TNFR1 signaling, and induction of apoptosis by HIV1). Validation of the profiling array was performed with RNA extracted from cultured MDCK cells in the presence or absence of treatment with 10 μM staurosporin for 5 or 10 hrs. The vast majority of the genes showed positive amplifications, and a number of them also had fold change (FC) differences > +/−3 between control and staurosporin-treated cells. To conclude, we established a profiling array that will be used to identify differentially expressed genes associated with photoreceptor death or survival in canine models of retinal degenerative diseases with mutations in genes that cause human inherited blindness with comparable phenotypes.
我们开发了一种表达谱芯片,用于检测犬视网膜变性模型中的促凋亡和促存活基因。开发了针对特定基因的犬 TaqMan 检测,并将其包含在定制的实时定量逆转录聚合酶链反应 (qRT-PCR) 芯片中。在所选择的 96 个基因中,93 个属于已知的相关促凋亡和促存活途径,和/或在视网膜中表达的阳性对照,而 3 个是管家基因。Ingenuity Pathway Analysis (IPA) 显示,所选基因属于预期的生物学功能(细胞死亡、细胞介导的免疫反应、细胞发育、功能和维持)和途径(死亡受体信号、细胞凋亡、TNF-R1 信号和 HIV1 诱导的细胞凋亡)。使用在存在或不存在 10 μM 星形孢菌素处理的情况下培养的 MDCK 细胞提取的 RNA 对表达谱芯片进行了验证,处理时间为 5 或 10 小时。绝大多数基因显示出阳性扩增,其中一些基因在对照和星形孢菌素处理的细胞之间的倍数变化 (FC) 差异也大于 +/-3。总之,我们建立了一个表达谱芯片,将用于鉴定与犬视网膜变性疾病模型中与感光细胞死亡或存活相关的差异表达基因,这些疾病模型的基因突变与具有相似表型的人类遗传性失明有关。