Center for Childhood Cancer & Blood Diseases, The Abigail Wexner Research Institute, Nationwide Children's Hospital, Columbus, OH, 43205, USA.
Center for Childhood Cancer & Blood Diseases, The Abigail Wexner Research Institute, Nationwide Children's Hospital, Columbus, OH, 43205, USA; Molecular, Cellular, and Developmental Biology Ph.D. Program, The Ohio State University, Columbus, OH, 43210, USA.
Dev Biol. 2023 Apr;496:1-14. doi: 10.1016/j.ydbio.2023.01.003. Epub 2023 Jan 23.
HES3 is a basic helix-loop-helix transcription factor that regulates neural stem cell renewal during development. HES3 overexpression is predictive of reduced overall survival in patients with fusion-positive rhabdomyosarcoma, a pediatric cancer that resembles immature and undifferentiated skeletal muscle. However, the mechanisms of HES3 cooperation in fusion-positive rhabdomyosarcoma are unclear and are likely related to her3/HES3's role in neurogenesis. To investigate HES3's function during development, we generated a zebrafish CRISPR/Cas9 null mutation of her3, the zebrafish ortholog of HES3. Loss of her3 is not embryonic lethal and adults exhibit expected Mendelian ratios. Embryonic her3 zebrafish mutants exhibit dysregulated neurog1 expression, a her3 target gene, and the mutant her3 fails to bind the neurog1 promoter sequence. Further, her3 mutants are significantly smaller than wildtype and a subset present with lens defects as adults. Transcriptomic analysis of her3 mutant embryos indicates that genes involved in organ development, such as pctp and grinab, are significantly downregulated. Further, differentially expressed genes in her3 null mutant embryos are enriched for Hox and Sox10 motifs. Several cancer-related gene pathways are impacted, including the inhibition of matrix metalloproteinases. Altogether, this new model is a powerful system to study her3/HES3-mediated neural development and its misappropriation in cancer contexts.
HES3 是一种基本的螺旋-环-螺旋转录因子,它在发育过程中调节神经干细胞的更新。HES3 的过表达可预测融合阳性横纹肌肉瘤患者的总生存率降低,融合阳性横纹肌肉瘤是一种儿童癌症,类似于不成熟和未分化的骨骼肌。然而,HES3 在融合阳性横纹肌肉瘤中的合作机制尚不清楚,可能与 her3/HES3 在神经发生中的作用有关。为了研究 HES3 在发育过程中的功能,我们生成了 zebrafish CRISPR/Cas9 缺失突变 her3,这是 HES3 的 zebrafish 同源物。her3 的缺失不是胚胎致死的,并且成年人表现出预期的孟德尔比例。胚胎 her3 斑马鱼突变体表现出神经基因 1(neurog1)表达失调,这是 her3 的一个靶基因,并且突变 her3 不能结合 neurog1 启动子序列。此外,her3 突变体比野生型小得多,一部分成年时存在晶状体缺陷。her3 突变体胚胎的转录组分析表明,参与器官发育的基因,如 pctp 和 grinab,显著下调。此外,her3 缺失突变体胚胎中差异表达的基因富含 Hox 和 Sox10 基序。几个癌症相关基因途径受到影响,包括基质金属蛋白酶的抑制。总的来说,这个新模型是研究 her3/HES3 介导的神经发育及其在癌症背景下的不当应用的强大系统。