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Essential role for non-canonical poly(A) polymerase GLD4 in cytoplasmic polyadenylation and carbohydrate metabolism

机译:在细胞质多腺苷酸和碳水化合物代谢中的非规范聚(A)聚合酶GLD4的基本作用

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Regulation of gene expression at the level of cytoplasmic polyadenylation is important for many biological phenomena including cell cycle progression, mitochondrial respiration, and learning and memory. GLD4 is one of the non-canonical poly(A) polymerases that regulates cytoplasmic polyadenylation-induced translation, but its target mRNAs and role in cellular physiology is not well known. To assess the full panoply of mRNAs whose polyadenylation is controlled by GLD4, we performed an unbiased whole genome-wide screen using poy(U) chromatography and thermal elution. We identified hundreds of mRNAs regulated by GLD4, several of which are involved in carbohydrate metabolism includingGLUT1, a major glucose transporter. Depletion of GLD4 not only reduced GLUT1 poly(A) tail length, but also GLUT1 protein. GLD4-mediated translational control of GLUT1 mRNA is dependent of an RNA binding protein, CPEB1, and its binding elements in the 3' UTR. Through regulating GLUT1 level, GLD4 affects glucose uptake into cells and lactate levels. Moreover, GLD4 depletion impairs glucose deprivation induced GLUT1 up-regulation. In addition, we found that GLD4 affects glucose-dependent cellular phenotypes such as migration and invasion in glioblastoma cells. Our observations delineate a novel post-transcriptional regulatory network involving carbohydrate metabolism and glucose homeostasis mediated by GLD4.
机译:细胞质多腺苷酸水平的基因表达的调节对于许多生物现象来说是重要的,包括细胞周期进展,线粒体呼吸和学习和记忆。 GLD4是调节细胞质多腺苷酸化诱导的翻译的非规范聚(A)聚合酶之一,但其靶MRNA和细胞生理中的作用是不公知的。为了评估通过GLD4控制多腺苷酸的MRNA的全胰蛋白酶,我们使用POY(U)色谱法和热洗脱进行了一个无偏的全基因组屏幕。我们确定了数百人MRNA由GLD4调节,其中几个参与包括Glut1,主要葡萄糖转运蛋白的碳水化合物代谢。 GLD4的耗尽不仅减少了Glut1 Poly(A)尾长,而且还有Glut1蛋白。 GLD4介导的Glut1 mRNA的平移控制依赖于3'UTR中的RNA结合蛋白,CPEB1及其结合元素。通过调节Glut1水平,GLD4会影响葡萄糖摄取到细胞和乳酸水平。此外,GLD4耗竭损害葡萄糖剥夺诱导的Glut1上调。此外,我们发现GLD4影响葡萄糖依赖性细胞表型,例如胶质母细胞瘤细胞中的迁移和侵袭。我们的观察结果描绘了一种新的转录后调节网络,涉及由GLD4介导的碳水化合物代谢和葡萄糖稳态。

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