Department of Anatomy and Cell Biology, University of Florida College of Medicine, Gainesville, Florida 32610, USA.
Invest Ophthalmol Vis Sci. 2013 Jan 23;54(1):697-707. doi: 10.1167/iovs.12-10695.
We investigated the impact of PININ (PNN) and epithelial splicing regulatory protein 1 (ESRP1) on alternative pre-mRNA splicing in the corneal epithelial context.
Isoform-specific RT-PCR assays were performed on wild-type and Pnn knockout mouse cornea. Protein interactions were examined by deconvolution microscopy and co-immunoprecipitation. For genome-wide alternative splicing study, immortalized human corneal epithelial cells (HCET) harboring doxycycline-inducible shRNA against PNN or ESRP1 were created. Total RNA was isolated from four biological replicates of control and knockdown HCET cells, and subjected to hGlue3_0 transcriptome array analysis.
Pnn depletion in developing mouse corneal epithelium led to disrupted alternative splicing of multiple ESRP-regulated epithelial-type exons. In HCET cells, ESRP1 and PNN displayed close localization in and around nuclear speckles, and their physical association in protein complexes was identified. Whole transcriptome array analysis on ESRP1 or PNN knockdown HCET cells revealed clear alterations in transcript profiles and splicing patterns of specific subsets of genes. Separate RT-PCR validation assays confirmed successfully specific changes in exon usage of several representative splice variants, including PAX6(5a), FOXJ3, ARHGEF11, and SLC37A2. Gene ontologic analyses on ESRP1- or PNN-regulated alternative exons suggested their roles in epithelial phenotypes, such as cell morphology and movement.
Our data suggested that ESRP1 and PNN modulate alternative splicing of a specific subset of target genes, but not general splicing events, in HCET cells to maintain or enhance epithelial characteristics.
我们研究了 PININ(PNN)和上皮剪接调节蛋白 1(ESRP1)对角膜上皮中前体 mRNA 剪接的影响。
在野生型和 Pnn 敲除小鼠角膜上进行了异构体特异性 RT-PCR 检测。通过去卷积显微镜和共免疫沉淀检测蛋白相互作用。为了进行全基因组的选择性剪接研究,构建了携带针对 PNN 或 ESRP1 的诱导型短发夹 RNA 的永生化人角膜上皮细胞(HCET)。从对照和敲低 HCET 细胞的四个生物学重复中分离总 RNA,并进行 hGlue3_0 转录组芯片分析。
在发育中的小鼠角膜上皮中 Pnn 耗竭导致多个 ESRP 调节的上皮型外显子的选择性剪接受到破坏。在 HCET 细胞中,ESRP1 和 PNN 在核斑点内和周围显示出紧密的定位,并且鉴定了它们在蛋白质复合物中的物理关联。在 ESRP1 或 PNN 敲低 HCET 细胞上进行全转录组芯片分析显示,特定基因子集的转录谱和剪接模式发生了明显变化。单独的 RT-PCR 验证检测成功证实了几个代表性剪接变体的外显子使用的特定变化,包括 PAX6(5a)、FOXJ3、ARHGEF11 和 SLC37A2。对 ESRP1 或 PNN 调节的选择性外显子的基因本体分析表明,它们在细胞形态和运动等上皮表型中发挥作用。
我们的数据表明,ESRP1 和 PNN 在 HCET 细胞中调节特定靶基因子集的选择性剪接,而不是一般的剪接事件,以维持或增强上皮特征。