首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Bioengineered miR-328-3p modulates GLUT1-mediated glucose uptake and metabolism to exert synergistic antiproliferative effects with chemotherapeutics
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Bioengineered miR-328-3p modulates GLUT1-mediated glucose uptake and metabolism to exert synergistic antiproliferative effects with chemotherapeutics

机译:生物工程化的miR-328-3p调节GLUT1介导的葡萄糖摄取和代谢从而与化学疗法发挥协同抗增殖作用

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摘要

MicroRNAs (miRNAs or miRs) are small noncoding RNAs derived from genome to control target gene expression. Recently we have developed a novel platform permitting high-yield production of bioengineered miRNA agents (BERA). This study is to produce and utilize novel fully-humanized BERA/miR-328-3p molecule (hBERA/miR-328) to delineate the role of miR-328-3p in controlling nutrient uptake essential for cell metabolism. We first demonstrated successful high-level expression of hBERA/miR-328 in bacteria and purification to high degree of homogeneity (>98%). Biologic miR-328-3p prodrug was selectively processed to miR-328-3p to suppress the growth of highly-proliferative human osteosarcoma (OS) cells. Besides glucose transporter protein type 1, gene symbol solute carrier family 2 member 1 (GLUT1/ ), we identified and verified large neutral amino acid transporter 1, gene symbol solute carrier family 7 member 5 (LAT1/ ) as a direct target for miR-328-3p. While reduction of LAT1 protein levels by miR-328-3p did not alter homeostasis of amino acids within OS cells, suppression of GLUT1 led to a significantly lower glucose uptake and decline in intracellular levels of glucose and glycolytic metabolite lactate. Moreover, combination treatment with hBERA/miR-328 and cisplatin or doxorubicin exerted a strong synergism in the inhibition of OS cell proliferation. These findings support the utility of novel bioengineered RNA molecules and establish an important role of miR-328-3p in the control of nutrient transport and homeostasis behind cancer metabolism.
机译:MicroRNA(miRNA或miRs)是衍生自基因组以控制靶基因表达的小型非编码RNA。最近,我们开发了一种新型平台,可高产量生产生物工程化的miRNA试剂(BERA)。这项研究的目的是生产和利用新型的完全人源化的BERA / miR-328-3p分子(hBERA / miR-328)来描述miR-328-3p在控制细胞代谢必需的养分吸收中的作用。我们首先展示了hBERA / miR-328在细菌中的成功高水平表达,并纯化至高度均一(> 98%)。将生物学的miR-328-3p前药选择性加工为miR-328-3p,以抑制高度增殖的人骨肉瘤(OS)细胞的生长。除了1型葡萄糖转运蛋白蛋白,基因符号溶质载体家族2成员1(GLUT1 /),我们还鉴定并验证了大型中性氨基酸转运蛋白1,基因符号溶质载体家族7成员5(LAT1 /)是miR-的直接靶标。 328-3页。尽管miR-328-3p降低LAT1蛋白水平不会改变OS细胞内氨基酸的体内稳态,但是GLUT1的抑制会导致葡萄糖摄取显着降低,以及葡萄糖和糖酵解代谢产物乳酸的细胞内水平下降。此外,hBERA / miR-328与顺铂或阿霉素的联合治疗在抑制OS细胞增殖方面发挥了强大的协同作用。这些发现支持了新型生物工程RNA分子的实用性,并在癌症代谢背后的营养物转运和体内稳态控制中确立了miR-328-3p的重要作用。

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