Stat5b调控斑马鱼肝糖代谢的两性异形

STAT5B REGULATES SEXUAL DIMORPHISM IN HEPATIC GLUCOSE METABOLISM IN ZEBRAFISH

  • 摘要: 为了探究斑马鱼中肝糖代谢是否存在两性异形, 研究通过对野生型斑马鱼进行肝脏形态学观察(透射电子显微镜)、组织学分析、肝糖原含量测定, 发现雄性个体的肝糖原含量显著高于雌性(P<0.01)。在stat5b突变体(stat5b–/–)中进行组织学分析、肝糖原(Liver Glycogen, LG)测定, 结果显示, stat5b–/–雄性个体的肝糖原含量明显低于对照组(P<0.05), 而雌性中无显著差异(P>0.05)。基于此, stat5b基因功能的缺失削弱了肝糖原含量的两性异形。通过转录组分析筛选出差异表达基因并进行KEGG通路富集分析, 发现这些差异表达基因显著富集在糖代谢相关的通路中, 并从中筛选出可能与Stat5b具有互作关系的候选基因糖原合成酶2 (Glycogen Synthase 2, gys2)。转录因子结合位点(Transcription Factor Binding Site, TFBS)预测和双荧光素酶报告基因实验的结果显示, TFBS的预测区域具有转录活性, Stat5b正调控gys2。在stat5b过表达转基因(stat5b-TG)斑马鱼中发现, 雄性个体的肝糖原含量明显高于对照组(P<0.05), 而雌性中并无显著差异(P>0.05)。所以, 过表达stat5b增大了肝糖原含量的两性异形, 这与stat5b突变体的趋势相反。转录因子Stat5b可能通过转录调控gys2来调节肝糖原合成的两性异形, 从而维持鱼类的肝糖原代谢稳态。

     

    Abstract: To explore whether there is sexual dimorphism in hepatic glycogen metabolism in zebrafish (Danio rerio), we investigated it by morphological observation (transmission electron microscope), histological analysis, and liver glycogen (LG) content determination in liver of wild-type (WT), and found that the LG content in male zebrafish was significantly higher than the female (P<0.01). Subsequently, we performed histological analysis and LG determination in WT and stat5b mutant (stat5b–/–) zebrafish. The results showed that the LG content in male stat5b–/– was significantly lower than the control (P<0.05), whereas it was no significant difference in the female stat5b–/– (P>0.05). It indicated that the function deficiency of stat5b reduced the sexual dimorphism in LG content. By RNA-seq analysis, we screened the differentially expressed genes (DEGs) and performed KEGG enrichment analysis with it. The results showed that these DEGs were significantly enriched in glucose metabolism-related pathways, in which gys2 (glycogen synthase 2) as a candidate gene potentially interacted with Stat5b. The experiment of transcription factor binding site (TFBS) prediction and dual-luciferase reporting system indicated that it had transcriptional activity in the predicted TFBS region, which demonstrated that Stat5b positively regulated gys2. Finally, the results showed that the LG level was significantly increased in stat5b overexpressed transgenic (stat5b-TG) male zebrafish (P<0.05), whereas there was no significant difference in female (P>0.05). Contrary to stat5b mutation, overexpression of stat5b increased the sexual dimorphism of LG content. These findings concluded that transcription factor Stat5b possibly regulated sexual dimorphism of LG synthesis through transcriptional control of gys2, thereby maintained liver glycogen metabolism in fish.

     

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