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人工微 RNA 对人 ABCG2 多药转运蛋白的转录后调控。

Posttranscriptional Regulation of the Human ABCG2 Multidrug Transporter Protein by Artificial Mirtrons.

机构信息

Institute of Enzymology, ELKH Research Centre for Natural Sciences, H-1117 Budapest, Hungary.

出版信息

Genes (Basel). 2021 Jul 13;12(7):1068. doi: 10.3390/genes12071068.

Abstract

ABCG2 is a membrane transporter protein that has been associated with multidrug resistance phenotype and tumor development. Additionally, it is expressed in various stem cells, providing cellular protection against endobiotics and xenobiotics. In this study, we designed artificial mirtrons to regulate ABCG2 expression posttranscriptionally. Applying EGFP as a host gene, we could achieve efficient silencing not only in luciferase reporter systems but also at the ABCG2 protein level. Moreover, we observed important new sequential-functional features of the designed mirtrons. Mismatch at the first position of the mirtron-derived small RNA resulted in better silencing than full complementarity, while the investigated middle and 3' mismatches did not enhance silencing. These latter small RNAs operated most probably via non-seed specific translational inhibition in luciferase assays. Additionally, we found that a mismatch in the first position has not, but a second mismatch in the third position has abolished target mRNA decay. Besides, one nucleotide mismatch in the seed region did not impair efficient silencing at the protein level, providing the possibility to silence targets carrying single nucleotide polymorphisms or mutations. Taken together, we believe that apart from establishing an efficient ABCG2 silencing system, our designing pipeline and results on sequential-functional features are beneficial for developing artificial mirtrons for other targets.

摘要

ABCG2 是一种膜转运蛋白,与多药耐药表型和肿瘤发展有关。此外,它在各种干细胞中表达,为内源性和外源性物质提供细胞保护。在这项研究中,我们设计了人工 mirtrons 来对 ABCG2 表达进行转录后调控。以 EGFP 作为宿主基因,我们不仅可以在荧光素酶报告系统中,而且可以在 ABCG2 蛋白水平上实现高效沉默。此外,我们观察到设计的 mirtrons 的重要新顺序功能特征。在 mirtron 衍生的小 RNA 的第一个位置发生错配会导致比完全互补更好的沉默,而中间和 3' 错配则不会增强沉默。这些小 RNA 在后一种情况下可能主要通过非种子特异性翻译抑制在荧光素酶测定中起作用。此外,我们发现第一个位置的错配不会,但第三个位置的第二个错配会导致靶 mRNA 降解。此外,在种子区域有一个核苷酸错配不会损害蛋白质水平的有效沉默,从而为沉默携带单核苷酸多态性或突变的靶标提供了可能性。总之,我们相信,除了建立一个有效的 ABCG2 沉默系统外,我们在顺序功能特征上的设计流程和结果对于开发针对其他靶标的人工 mirtrons 也是有益的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3e1/8307164/22495411394f/genes-12-01068-g001.jpg

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