Department of Integrative Bioscience and Biotechnology, Sejong University, 209 Neungdong-ro, Gwangjin-Gu, Seoul 05006, Republic of Korea.
Int J Mol Sci. 2024 May 8;25(10):5119. doi: 10.3390/ijms25105119.
The additional sex combs-like (ASXL) family, a mammalian homolog of the () of , has been implicated in transcriptional regulation via chromatin modifications. Abnormal expression of ASXL family genes leads to myelodysplastic syndromes and various types of leukemia. De novo mutation of these genes also causes developmental disorders. Genes in this family and their neighbor genes are evolutionary conserved in humans and mice. This review provides a comprehensive summary of epigenetic regulations associated with ASXL family genes. Their expression is commonly regulated by DNA methylation at CpG islands preceding transcription starting sites. Their proteins primarily engage in histone tail modifications through interactions with chromatin regulators (PRC2, TrxG, PR-DUB, SRC1, HP1α, and BET proteins) and with transcription factors, including nuclear hormone receptors (RAR, PPAR, ER, and LXR). Histone modifications associated with these factors include histone H3K9 acetylation and methylation, H3K4 methylation, H3K27 methylation, and H2AK119 deubiquitination. Recently, non-coding RNAs have been identified following mutations in the ASXL1 or ASXL3 gene, along with circular ASXLs and microRNAs that regulate ASXL1 expression. The diverse epigenetic regulations linked to ASXL family genes collectively contribute to tumor suppression and developmental processes. Our understanding of ASXL-regulated epigenetics may provide insights into the development of therapeutic epigenetic drugs.
额外的性梳状(ASXL)家族,一种 的哺乳动物同源物,已被牵连到通过染色质修饰的转录调控中。ASXL 家族基因的异常表达导致骨髓增生异常综合征和各种类型的白血病。这些基因的从头突变也会导致发育障碍。该家族的基因及其相邻基因在人类和小鼠中具有进化保守性。这篇综述全面总结了与 ASXL 家族基因相关的表观遗传调控。它们的表达通常受到转录起始位点前 CpG 岛处的 DNA 甲基化的调控。它们的蛋白主要通过与染色质调节剂(PRC2、TrxG、PR-DUB、SRC1、HP1α 和 BET 蛋白)以及转录因子(核激素受体(RAR、PPAR、ER 和 LXR))相互作用,参与组蛋白尾部修饰。与这些因子相关的组蛋白修饰包括组蛋白 H3K9 乙酰化和甲基化、H3K4 甲基化、H3K27 甲基化和 H2AK119 去泛素化。最近,在 ASXL1 或 ASXL3 基因突变后,以及调节 ASXL1 表达的环状 ASXL 和 microRNAs 也被鉴定出来。与 ASXL 家族基因相关的多样化表观遗传调控共同有助于肿瘤抑制和发育过程。我们对 ASXL 调节的表观遗传学的理解可能为开发治疗性表观遗传药物提供了思路。