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Starvation actively inhibits splicing of glucose-6-phosphate dehydrogenase mRNA via a bifunctional ESE/ESS element bound by hnRNP K

机译:饥饿通过hnRNP K结合的双功能ESE / ESS元件积极抑制6-葡萄糖磷酸脱氢酶mRNA的剪接

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摘要

Regulated expression of glucose-6-phosphate dehydrogenase (G6PD) is due to changes in the rate of pre-mRNA splicing and not changes in its transcription. Starvation alters pre-mRNA splicing by decreasing the rate of intron removal, leading to intron retention and a decrease in the accumulation of mature mRNA. A regulatory element within exon 12 of G6PD pre-mRNA controls splicing efficiency. Starvation caused an increase in the expression of heterogeneous nuclear ribonucleoprotein (hnRNP) K protein and this increase coincided with the increase in the binding of hnRNP K to the regulatory element and a decrease in the expression of G6PD mRNA. HnRNP K bound to two C-rich motifs forming an ESS within exon 12. Overexpression of hnRNP K decreased the splicing and expression of G6PD mRNA, while siRNA-mediated depletion of hnRNP K caused an increase in the splicing and expression of G6PD mRNA. Binding of hnRNP K to the regulatory element was enhanced in vivo by starvation coinciding with a decrease in G6PD mRNA. HnRNP K binding to the C-rich motifs blocked binding of serine-arginine rich, splicing factor 3 (SRSF3), a splicing enhancer. Thus hnRNP K is a nutrient regulated splicing factor responsible for the inhibition of the splicing of G6PD during starvation.
机译:葡萄糖6磷酸脱氢酶(G6PD)的表达调控是由于前mRNA剪接速率的变化,而不是其转录的变化。饥饿会通过降低内含子去除率来改变前mRNA剪接,从而导致内含子保留并降低成熟mRNA的积累。 G6PD pre-mRNA的第12外显子内的调控元件控制剪接效率。饥饿导致异质核糖核蛋白(hnRNP)K蛋白表达增加,并且该增加与hnRNP K与调节元件的结合增加以及G6PD mRNA表达的减少相吻合。 HnRNP K与两个富含C的基序结合形成外显子12内的ESS。hnRNP K的过表达降低了G6PD mRNA的剪接和表达,而siRNA介导的hnRNP K的耗尽导致G6PD mRNA的剪接和表达增加。在体内,饥饿与G6PD mRNA的减少相一致,从而增强了hnRNP K与调节元件的结合。 HnRNP K绑定到富含C的图案阻止了富含丝氨酸精氨酸的剪接因子3(SRSF3)(剪接增强子)的结合。因此,hnRNP K是营养调节的剪接因子,负责在饥饿期间抑制G6PD的剪接。

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