Jules Stein Eye Institute, UCLA School of Medicine, 100 Stein Plaza, Los Angeles, CA, 90095, USA.
Brain Research Institute, University of California Los Angeles, Los Angeles, CA, USA.
Mol Genet Genomics. 2018 Aug;293(4):819-830. doi: 10.1007/s00438-018-1423-8. Epub 2018 Feb 8.
Rbpms (RNA-binding protein with multiple splicing) is a member of the RRM (RNA Recognition Motif) family of RNA-binding proteins, which is expressed as multiple alternatively spliced transcripts encoding different protein isoforms. We have shown earlier that Rbpms expression in the retina is restricted to retinal ganglion cells (RGCs), and have characterized this gene as a marker for RGCs. The aim of this study was to identify isoforms representing Rbpms in human retinas and to analyze its transcriptional regulation. We found that Rbpms is expressed as transcription variants 1 and 3 encoding isoforms A and C, respectively. These isoforms are encoded by the same first 6 exons but have different C-terminal ends encoded by exon 8 in variant 1 and exon 7 in variant 3. Computational analysis of the Rbpms 5' untranslated and flanking regions reveals the presence of three CpG islands and four predicted promoter regions (PPRs). The effect of PPR 1 (- 1672/- 1420) and PPR2 (- 330/- 79) on transcriptional activation was minimal, whereas PPR 3 (- 73/+ 177) and PPR4 (+ 274/+ 524) induced the expression by ~ 7 and ninefold compared to control, respectively. The maximum activity, a 30-fold increase above the control level, was obtained from the construct containing both PPRs 3 and 4. Site-directed mutagenesis of several cis-elements within PPR3 and PPR4 including five for Sp1, one for AP1, and two for NF-kB showed that mutation of the first three and especially the first GC box resulted in a threefold downregulation of gene expression. AP1, NF-kB, and two downstream Sp1 sites had no significant effect on expression level. The possible involvement of the GC box 1 at position - 54 in transcriptional regulation of Rbpms was corroborated by EMSA, which showed formation of a DNA-protein complex in the presence of the oligonucleotide corresponding to this Sp1-binding site.
Rbpms(具有多个剪接的 RNA 结合蛋白)是 RNA 结合蛋白的 RRM(RNA 识别基序)家族的成员,它以编码不同蛋白异构体的多种选择性剪接转录本表达。我们之前已经表明,Rbpms 在视网膜中的表达仅限于视网膜神经节细胞(RGCs),并将该基因特征化为 RGCs 的标志物。本研究的目的是鉴定人视网膜中代表 Rbpms 的异构体,并分析其转录调控。我们发现,Rbpms 以转录变体 1 和 3 表达,分别编码异构体 A 和 C。这些异构体由相同的前 6 个外显子编码,但 3' 端的不同,变体 1 由外显子 8 编码,变体 3 由外显子 7 编码。对 Rbpms 5' 非翻译区和侧翼区的计算分析表明存在三个 CpG 岛和四个预测启动子区(PPR)。PPR1(-1672/-1420)和 PPR2(-330/-79)对转录激活的影响最小,而 PPR3(-73/+177)和 PPR4(+274/+524)分别诱导表达增加了约 7 倍和 9 倍与对照相比。来自包含 PPR3 和 PPR4 的构建体的最大活性是对照水平的 30 倍。在 PPR3 和 PPR4 内的几个顺式元件的定点诱变包括 5 个 Sp1、1 个 AP1 和 2 个 NF-kB 表明,前三个尤其是第一个 GC 盒的突变导致基因表达下调了三倍。AP1、NF-kB 和两个下游 Sp1 位点对表达水平没有显著影响。GC 盒 1 在位置-54 处对 Rbpms 转录调控的可能参与得到了 EMSA 的证实,该实验表明在存在对应于该 Sp1 结合位点的寡核苷酸时形成了 DNA-蛋白复合物。