Myelodysplasia-associated mutations in serine/arginine-rich splicing factor SRSF2 lead to alternative splicing of CDC25C

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology
Lindsey Skrdlant, Jeremy M. Stark, Ren-Jang Lin
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引用次数: 12

Abstract

Serine–arginine rich splicing factor 2 (SRSF2) is a protein known for its role in RNA splicing and genome stability. It has been recently discovered that SRSF2, along with other splicing regulators, is frequently mutated in patients with myelodysplastic syndrome (MDS). The most common MDS mutations in SRSF2 occur at proline 95; the mutant proteins are shown to have different RNA binding preferences, which may contribute to splicing changes detected in mutant cells. However, the influence of these SRSF2 MDS-associated mutations on specific splicing events remains poorly understood.

A tetracycline-inducible TF-1 erythroleukemia cell line was transduced with retroviruses to create cell lines expressing HA-tagged wildtype SRSF2, SRSF2 with proline 95 point mutations found in MDS, or SRSF2 with a deletion of one of the four major domains of the protein. Effects of these mutants on apoptosis and specific alternative splicing events were evaluated. Cells were also treated with DNA damaging drugs for comparison. MDS-related P95 point mutants of SRSF2 were expressed and phosphorylated at similar levels as wildtype SRSF2. However, cells expressing mutant SRSF2 exhibited higher levels of apoptosis than cells expressing wildtype SRSF2. Regarding alternative splicing events, in nearly all examined cases, SRSF2 P95 mutants acted in a similar fashion as the wildtype SRSF2. However, cells expressing SRSF2 P95 mutants had a percent increase in the C5 spliced isoform of cell division cycle 25C (CDC25C). The same alternative splicing of CDC25C was detected by treating cells with DNA damaging drugs, such as cisplatin, camptothecin, and trichostatin A at appropriate dosage. However, unlike DNA damaging drugs, SRSF2 P95 mutants did not activate the Ataxia telangiectasia mutated (ATM) pathway.

SRSF2 P95 mutants lead to alternative splicing of CDC25C in a manner that is not dependent on the DNA damage response.

Abstract Image

骨髓增生异常相关的丝氨酸/精氨酸丰富剪接因子SRSF2突变导致CDC25C的选择性剪接
富含丝氨酸精氨酸的剪接因子2 (SRSF2)是一种已知在RNA剪接和基因组稳定性中起作用的蛋白质。最近发现SRSF2和其他剪接调节因子在骨髓增生异常综合征(MDS)患者中经常发生突变。SRSF2中最常见的MDS突变发生在脯氨酸95;突变蛋白具有不同的RNA结合偏好,这可能有助于在突变细胞中检测到剪接变化。然而,这些SRSF2 mds相关突变对特定剪接事件的影响仍然知之甚少。用逆转录病毒转导四环素诱导的TF-1红白血病细胞系,产生表达ha标记的野生型SRSF2、MDS中脯氨酸95点突变的SRSF2或缺失该蛋白四个主要结构域之一的SRSF2的细胞系。这些突变体对细胞凋亡和特异性选择性剪接事件的影响进行了评估。细胞也被DNA损伤药物处理以进行比较。mds相关的SRSF2 P95点突变体的表达和磷酸化水平与野生型SRSF2相似。然而,表达突变型SRSF2的细胞比表达野生型SRSF2的细胞表现出更高的凋亡水平。关于选择性剪接事件,在几乎所有被检测的病例中,SRSF2 P95突变体的行为方式与野生型SRSF2相似。然而,表达SRSF2 P95突变体的细胞在细胞分裂周期25C (CDC25C)的C5剪接异构体中增加了百分比。用适当剂量的顺铂、喜树碱和曲古霉素A等DNA损伤药物处理细胞,检测到同样的CDC25C选择性剪接。然而,与DNA损伤药物不同,SRSF2 P95突变体不会激活共济失调毛细血管扩张突变(ATM)途径。SRSF2 P95突变体以一种不依赖于DNA损伤反应的方式导致CDC25C的选择性剪接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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