Department of Medicine (Hematology-Oncology Division), Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.
PLoS One. 2013 Oct 18;8(10):e78031. doi: 10.1371/journal.pone.0078031. eCollection 2013.
Alternative pre-mRNA splicing is a prevalent mechanism in mammals that promotes proteomic diversity, including expression of cell-type specific protein isoforms. We characterized a role for RBM38 (RNPC1) in regulation of alternative splicing during late erythroid differentiation. We used an Affymetrix human exon junction (HJAY) splicing microarray to identify a panel of RBM38-regulated alternatively spliced transcripts. Using microarray databases, we noted high RBM38 expression levels in CD71(+) erythroid cells and thus chose to examine RBM38 expression during erythroid differentiation of human hematopoietic stem cells, detecting enhanced RBM38 expression during late erythroid differentiation. In differentiated erythroid cells, we validated a subset of RBM38-regulated splicing events and determined that RBM38 regulates activation of Protein 4.1R (EPB41) exon 16 during late erythroid differentiation. Using Epb41 minigenes, Rbm38 was found to be a robust activator of exon 16 splicing. To further address the mechanism of RBM38-regulated alternative splicing, a novel mammalian protein expression system, followed by SELEX-Seq, was used to identify a GU-rich RBM38 binding motif. Lastly, using a tethering assay, we determined that RBM38 can directly activate splicing when recruited to a downstream intron. Together, our data support the role of RBM38 in regulating alternative splicing during erythroid differentiation.
可变剪接是哺乳动物中一种普遍存在的机制,它促进了蛋白质组的多样性,包括细胞类型特异性蛋白异构体的表达。我们研究了 RBM38(RNPC1)在晚期红细胞分化过程中调节可变剪接的作用。我们使用 Affymetrix 人类外显子连接(HJAY)剪接微阵列来鉴定一组 RBM38 调节的可变剪接转录本。使用微阵列数据库,我们注意到 RBM38 在 CD71(+)红细胞中的表达水平较高,因此选择研究 RBM38 在人类造血干细胞红细胞分化过程中的表达情况,发现 RBM38 在晚期红细胞分化过程中表达增强。在分化的红细胞中,我们验证了一组 RBM38 调节的剪接事件,并确定 RBM38 调节 Protein 4.1R (EPB41) 外显子 16 在晚期红细胞分化中的激活。使用 Epb41 小基因,发现 Rbm38 是外显子 16 剪接的强有力激活子。为了进一步探讨 RBM38 调节可变剪接的机制,我们使用了一种新型哺乳动物蛋白表达系统,随后进行 SELEX-Seq,以鉴定出一个富含 GU 的 RBM38 结合基序。最后,通过连接测定,我们确定 RBM38 可以在被募集到下游内含子时直接激活剪接。总之,我们的数据支持 RBM38 在红细胞分化过程中调节可变剪接的作用。