KLF7 通过上调神经母细胞分化相关蛋白 AHNAKs 和甘油磷酸二酯酶 GDPD5,通过 GTPase 信号通路促进神经母细胞瘤的分化。

Shupei Qiao, Ying Jia, Li Xie, Wenwen Jing, Yang Xia, Yue Song, Jiahui Zhang, Tianhua Cao, Huilin Song, Lingdi Meng, Lei Shi, Xue Zhang
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引用次数: 0

摘要

神经嵴衍生的交感肾上腺神经母细胞分化受阻导致了神经母细胞瘤的形成,而克服这种分化受阻是治疗高危神经母细胞瘤的明确策略。更好地了解神经母细胞或神经母细胞瘤的分化对于开发新的治疗方法至关重要。有人提出,Krueppel 样因子 7(KLF7)是一种神经母细胞瘤超级增强相关转录因子基因。此外,研究还发现,KLF7 在胚胎发育过程中神经系统发育中的有丝分裂后神经母细胞中非常活跃。然而,KLF7 在神经母细胞或神经母细胞瘤分化过程中的作用尚不清楚。在这里,我们发现 KLF7 的高表达与神经母细胞瘤的良好临床预后之间存在密切联系。KLF7 可独立于视黄酸(RA)途径诱导神经母细胞瘤细胞分化,并与视黄酸合作诱导神经母细胞瘤分化。KLF7通过直接与神经母细胞分化相关蛋白(AHNAK和AHNAK2)和含甘油磷酸二酯酶域蛋白5(GDPD5)的启动子结合并调控其表达,改变了GTP酶活性和多个分化相关基因。此外,我们还观察到,在神经母细胞瘤细胞中沉默 KLF7 会促进肾上腺素能向间质转化,并伴随着增强子介导的基因表达变化。我们的研究结果表明,KLF7 是神经母细胞或神经母细胞瘤分化的诱导因子,具有预后意义和潜在的治疗价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

KLF7 promotes neuroblastoma differentiation through the GTPase signaling pathway by upregulating neuroblast differentiation-associated protein AHNAKs and glycerophosphodiesterase GDPD5

KLF7 promotes neuroblastoma differentiation through the GTPase signaling pathway by upregulating neuroblast differentiation-associated protein AHNAKs and glycerophosphodiesterase GDPD5

The arrest of neural crest-derived sympathoadrenal neuroblast differentiation contributes to neuroblastoma formation, and overriding this blocked differentiation is a clear strategy for treating high-risk neuroblastoma. A better understanding of neuroblast or neuroblastoma differentiation is essential for developing new therapeutic approaches. It has been proposed that Krueppel-like factor 7 (KLF7) is a neuroblastoma super-enhancer-associated transcription factor gene. Moreover, KLF7 was found to be intensely active in postmitotic neuroblasts of the developing nervous system during embryogenesis. However, the role of KLF7 in the differentiation of neuroblast or neuroblastoma is unknown. Here, we find a strong association between high KLF7 expression and favorable clinical outcomes in neuroblastoma. KLF7 induces differentiation of neuroblastoma cells independently of the retinoic acid (RA) pathway and acts cooperatively with RA to induce neuroblastoma differentiation. KLF7 alters the GTPase activity and multiple differentiation-related genes by binding directly to the promoters of neuroblast differentiation-associated protein (AHNAK and AHNAK2) and glycerophosphodiester phosphodiesterase domain-containing protein 5 (GDPD5) and regulating their expression. Furthermore, we also observe that silencing KLF7 in neuroblastoma cells promotes the adrenergic-to-mesenchymal transition accompanied by changes in enhancer-mediated gene expression. Our results reveal that KLF7 is an inducer of neuroblast or neuroblastoma differentiation with prognostic significance and potential therapeutic value.

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