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新发现的旧 SON:RNA 剪接与癌症之间的联系。

New discoveries of old SON: a link between RNA splicing and cancer.

机构信息

Mitchell Cancer Institute, University of South Alabama, Mobile, Alabama, 36604.

出版信息

J Cell Biochem. 2014 Feb;115(2):224-31. doi: 10.1002/jcb.24672.

DOI:10.1002/jcb.24672
PMID:24030980
Abstract

The SON protein is a ubiquitously expressed DNA- and RNA-binding protein primarily localized to nuclear speckles. Although several early studies implicated SON in DNA-binding, tumorigenesis and apoptosis, functional significance of this protein had not been recognized until recent studies discovered SON as a novel RNA splicing co-factor. During constitutive RNA splicing, SON ensures efficient intron removal from the transcripts containing suboptimal splice sites. Importantly, SON-mediated splicing is required for proper processing of selective transcripts related to cell cycle, microtubules, centrosome maintenance, and genome stability. Moreover, SON regulates alternative splicing of RNAs from the genes involved in apoptosis and epigenetic modification. In addition to the role in RNA splicing, SON has an ability to suppress transcriptional activation at certain promoter/enhancer DNA sequences. Considering the multiple SON target genes which are directly involved in cell proliferation, genome stability and chromatin modifications, SON is an emerging player in gene regulation during cancer development and progression. Here, we summarize available information from several early studies on SON, and highlight recent discoveries describing molecular mechanisms of SON-mediated gene regulation. We propose that our future effort on better understanding of diverse SON functions would reveal novel targets for cancer therapy.

摘要

SON 蛋白是一种广泛表达的 DNA 和 RNA 结合蛋白,主要定位于核斑点。尽管早期的几项研究表明 SON 参与 DNA 结合、肿瘤发生和细胞凋亡,但直到最近的研究发现 SON 是一种新型的 RNA 剪接共因子,该蛋白的功能意义才被认识到。在组成性 RNA 剪接过程中,SON 确保从含有非最佳剪接位点的转录本中有效去除内含子。重要的是,SON 介导的剪接对于与细胞周期、微管、中心体维持和基因组稳定性相关的选择性转录本的正确加工是必需的。此外,SON 调节涉及细胞凋亡和表观遗传修饰的基因的 RNA 的可变剪接。除了在 RNA 剪接中的作用外,SON 还具有在某些启动子/增强子 DNA 序列上抑制转录激活的能力。鉴于 SON 的多个靶基因直接参与细胞增殖、基因组稳定性和染色质修饰,SON 是癌症发生和发展过程中基因调控的一个新兴参与者。在这里,我们总结了来自几项早期 SON 研究的现有信息,并强调了最近描述 SON 介导的基因调控的分子机制的发现。我们提出,我们未来在更好地理解 SON 多种功能方面的努力将揭示癌症治疗的新靶点。

相似文献

1
New discoveries of old SON: a link between RNA splicing and cancer.新发现的旧 SON:RNA 剪接与癌症之间的联系。
J Cell Biochem. 2014 Feb;115(2):224-31. doi: 10.1002/jcb.24672.
2
SON controls cell-cycle progression by coordinated regulation of RNA splicing.SON 通过协调调控 RNA 剪接控制细胞周期进程。
Mol Cell. 2011 Apr 22;42(2):185-98. doi: 10.1016/j.molcel.2011.03.014.
3
Accurate splicing of HDAC6 pre-mRNA requires SON.HDAC6前体mRNA的准确剪接需要SON。
Int J Mol Sci. 2015 Mar 13;16(3):5886-99. doi: 10.3390/ijms16035886.
4
NONO and tumorigenesis: More than splicing.NONO 与肿瘤发生:不仅仅是剪接。
J Cell Mol Med. 2020 Apr;24(8):4368-4376. doi: 10.1111/jcmm.15141. Epub 2020 Mar 13.
5
Son maintains accurate splicing for a subset of human pre-mRNAs.儿子维持人类前体 mRNA 亚类的准确剪接。
J Cell Sci. 2011 Dec 15;124(Pt 24):4286-98. doi: 10.1242/jcs.092239. Epub 2011 Dec 22.
6
SON and SRRM2 are essential for nuclear speckle formation.SON 和 SRRM2 对于核斑点的形成是必不可少的。
Elife. 2020 Oct 23;9:e60579. doi: 10.7554/eLife.60579.
7
The role of SON in splicing, development, and disease.SON 在剪接、发育和疾病中的作用。
Wiley Interdiscip Rev RNA. 2014 Sep-Oct;5(5):637-46. doi: 10.1002/wrna.1235. Epub 2014 Apr 30.
8
Son is essential for nuclear speckle organization and cell cycle progression.儿子对于核斑点的组织和细胞周期的进展是必不可少的。
Mol Biol Cell. 2010 Feb 15;21(4):650-63. doi: 10.1091/mbc.e09-02-0126. Epub 2010 Jan 6.
9
SON connects the splicing-regulatory network with pluripotency in human embryonic stem cells.SON 将剪接调控网络与人类胚胎干细胞的多能性联系起来。
Nat Cell Biol. 2013 Oct;15(10):1141-1152. doi: 10.1038/ncb2839. Epub 2013 Sep 8.
10
SON protein regulates GATA-2 through transcriptional control of the microRNA 23a~27a~24-2 cluster.SON 蛋白通过对 microRNA 23a~27a~24-2 簇的转录调控来调节 GATA-2。
J Biol Chem. 2013 Feb 22;288(8):5381-8. doi: 10.1074/jbc.M112.447227. Epub 2013 Jan 14.

引用本文的文献

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A mouse model of Zhu-Tokita-Takenouchi-Kim syndrome reveals indispensable SON functions in organ development and hematopoiesis.Zhu-Tokita-Takenouchi-Kim 综合征的小鼠模型揭示了 SON 在器官发育和造血中的不可或缺功能。
JCI Insight. 2024 Mar 8;9(5):e175053. doi: 10.1172/jci.insight.175053.
2
miR-889-3p Facilitates the Browning Process of White Adipocyte Precursors by Targeting the Gene.miR-889-3p 通过靶向 基因促进白色脂肪前体细胞的棕色化过程。
Int J Mol Sci. 2023 Dec 17;24(24):17580. doi: 10.3390/ijms242417580.
3
A mouse model of ZTTK syndrome reveals indispensable SON functions in organ development and hematopoiesis.
ZTTK综合征的小鼠模型揭示了SON在器官发育和造血过程中不可或缺的功能。
bioRxiv. 2023 Nov 19:2023.11.19.567732. doi: 10.1101/2023.11.19.567732.
4
The Expanding Phenotype of ZTTK Syndrome Due to the Heterozygous Variant of Gene Focusing on Liver Involvement: Patient Report and Literature Review.ZTTK 综合征表型不断扩展,与肝脏受累相关的基因杂合变异:病例报告和文献复习。
Genes (Basel). 2023 Mar 17;14(3):739. doi: 10.3390/genes14030739.
5
SON drives oncogenic RNA splicing in glioblastoma by regulating PTBP1/PTBP2 switching and RBFOX2 activity.SON 通过调控 PTBP1/PTBP2 转换和 RBFOX2 活性来驱动神经胶质瘤中的致癌 RNA 剪接。
Nat Commun. 2021 Sep 21;12(1):5551. doi: 10.1038/s41467-021-25892-x.
6
Establishing the phenotypic spectrum of ZTTK syndrome by analysis of 52 individuals with variants in SON.通过分析 52 名 SON 变异个体,确定 ZTTK 综合征的表型谱。
Eur J Hum Genet. 2022 Mar;30(3):271-281. doi: 10.1038/s41431-021-00960-4. Epub 2021 Sep 15.
7
The SON RNA splicing factor is required for intracellular trafficking structures that promote centriole assembly and ciliogenesis.SON RNA 剪接因子对于促进中心粒组装和纤毛发生的细胞内运输结构是必需的。
Mol Biol Cell. 2021 Oct 1;32(20):ar4. doi: 10.1091/mbc.E21-06-0305. Epub 2021 Aug 18.
8
SON inhibits megakaryocytic differentiation via repressing RUNX1 and the megakaryocytic gene expression program in acute megakaryoblastic leukemia.SON 通过抑制 RUNX1 和巨核细胞基因表达程序抑制急性巨核细胞白血病中的巨核细胞分化。
Cancer Gene Ther. 2021 Sep;28(9):1000-1015. doi: 10.1038/s41417-020-00262-9. Epub 2020 Nov 27.
9
A de novo heterozygous variant in the SON gene is associated with Zhu-Tokita-Takenouchi-Kim syndrome.一个新发现的 SON 基因杂合变异与 Zhu-Tokita-Takenouchi-Kim 综合征相关。
Mol Genet Genomic Med. 2020 Nov;8(11):e1496. doi: 10.1002/mgg3.1496. Epub 2020 Sep 14.
10
Clinical and genetic analysis of ZTTK syndrome caused by SON heterozygous mutation c.394C>T.ZTTK 综合征由 SON 杂合突变 c.394C>T 引起的临床和遗传学分析。
Mol Genet Genomic Med. 2019 Nov;7(11):e953. doi: 10.1002/mgg3.953. Epub 2019 Sep 26.