Department of Biomedicine & Health Sciences, Institute for Aging and Metabolic Diseases, College of Medicine, The Catholic University of Korea, Seoul, 06591, South Korea.
Department of Biochemistry, Institute for Aging and Metabolic Diseases, College of Medicine, The Catholic University of Korea, Seoul, 06591, South Korea.
Cell Death Dis. 2022 Dec 5;13(12):1019. doi: 10.1038/s41419-022-05465-6.
RNA binding protein HuD plays essential roles in gene expression by regulating RNA metabolism, and its dysregulation is involved in the pathogenesis of several diseases, including tumors, neurodegenerative diseases, and diabetes. Here, we explored HuD-mediated differential expression of secretory proteins in mouse insulinoma βTC6 cells using a cytokine array. Endostatin and Serpin E1 that play anti-angiogenic roles were identified as differentially expressed proteins by HuD. HuD knockdown increased the expression of α chain of collagen XVIII (Col18a1), a precursor form of endostatin, and Serpin E1 by associating with the 3'-untranslated regions (UTRs) of Col18a1 and Serpin E1 mRNAs. Reporter analysis revealed that HuD knockdown increased the translation of EGFP reporters containing 3'UTRs of Col18a1 and Serpin E1 mRNAs, which suggests the role of HuD as a translational repressor. Co-cultures of βTC6 cells and pancreatic islet endothelial MS1 cells were used to assess the crosstalk between β cells and islet endothelial cells, and the results showed that HuD downregulation in βTC6 cells inhibited the growth and migration of MS1 cells. Ectopic expression of HuD decreased Col18a1 and Serpin E1 expression, while increasing the markers of islet vascular cells in the pancreas of db/db mice. Taken together, these results suggest that HuD has the potential to regulate the crosstalk between β cells and islet endothelial cells by regulating Endostatin and Serpin E1 expression, thereby contributing to the maintenance of homeostasis in the islet microenvironment.
RNA 结合蛋白 HuD 通过调节 RNA 代谢在基因表达中发挥重要作用,其失调与多种疾病的发病机制有关,包括肿瘤、神经退行性疾病和糖尿病。在这里,我们使用细胞因子阵列探索了 HuD 在小鼠胰岛素瘤βTC6 细胞中介导的分泌蛋白的差异表达。发现具有抗血管生成作用的内皮抑素和 Serpin E1 是 HuD 差异表达的蛋白质。HuD 敲低通过与 Col18a1 和 Serpin E1 mRNA 的 3'-非翻译区(UTR)结合,增加了内皮抑素前体形式α链的表达和 Serpin E1。报告基因分析表明,HuD 敲低增加了含有 Col18a1 和 Serpin E1 mRNA 3'UTR 的 EGFP 报告基因的翻译,这表明 HuD 作为翻译抑制剂的作用。βTC6 细胞和胰岛内皮 MS1 细胞的共培养用于评估β细胞和胰岛内皮细胞之间的串扰,结果表明βTC6 细胞中 HuD 的下调抑制了 MS1 细胞的生长和迁移。HuD 的异位表达降低了 Col18a1 和 Serpin E1 的表达,同时增加了 db/db 小鼠胰腺中胰岛血管细胞的标志物。总之,这些结果表明 HuD 有可能通过调节内皮抑素和 Serpin E1 的表达来调节β细胞和胰岛内皮细胞之间的串扰,从而有助于维持胰岛微环境的内稳态。