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首页> 外文期刊>Journal of cellular and molecular medicine. >Expression of PTEN‐long mediated by CRISPR/Cas9 can repress U87 cell proliferation
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Expression of PTEN‐long mediated by CRISPR/Cas9 can repress U87 cell proliferation

机译:CRISPR / Cas9介导的PTEN-long表达可抑制U87细胞增殖

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摘要

Abstract PTEN is a tumour suppressor that is frequently mutated in a variety of cancers. Hence, PTEN has significant potential as a therapeutic molecule. PTEN-long is an alternative translation variant, with an additional 173 amino acids added to the N-terminal of the canonical PTEN when CUG of the mRNA is utilized as the start codon. PTEN-long is secreted into serum and can re-enter cells throughout the body. One of the major barriers for gene therapy is to efficiently and specifically deliver DNA or RNA material to target cells. As an alternative approach, if a therapeutic protein can be directly delivered to target cell of interest, it should theoretically function well within the cells, particularly for genes that are deficiently expressed in?vivo . Most therapeutic proteins are incapable of efficiently permeating the cell membrane. In this study, we have employed CRISPR/Cas9 gene editing tool combined with single-stranded template to edit CTG of PTEN-long to ATG in the genome. Two guide RNAs close to CTG site were found to have similar efficiency in driving PTEN-long expression. Furthermore, we detected PTEN-long expression in transfected whole-cell lysate and in concentrated culture media in Western blot. Interestingly, the culture media of PTEN-long expression can reduce Akt phosphorylation level and repress U87 cell proliferation compared to wild-type U87 or control media. Taken together, PTEN-long driven by CRISPR/Cas9 imports and exports cells and represses nearby cell proliferation, indicating the PTEN-long generated by CRISPR/Cas9 has potential to be an alternative strategy for PTEN gene therapy.
机译:摘要PTEN是一种肿瘤抑制因子,在多种癌症中经常发生突变。因此,PTEN作为治疗分子具有巨大的潜力。 PTEN-long是一种可选的翻译变体,当将mRNA的CUG用作起始密码子时,在规范PTEN的N末端添加了173个氨基酸。 PTEN-long分泌到血清中,并可以重新进入全身细胞。基因治疗的主要障碍之一是将DNA或RNA材料有效且特异性地递送至靶细胞。作为一种替代方法,如果治疗性蛋白质可以直接递送至目标靶细胞,则理论上应该在细胞内发挥良好的功能,尤其是对于体内表达不足的基因。大多数治疗性蛋白质无法有效渗透细胞膜。在这项研究中,我们采用了CRISPR / Cas9基因编辑工具结合单链模板来编辑PTEN长至ATG的CTG。发现靠近CTG位点的两个引导RNA在驱动PTEN长表达中具有相似的效率。此外,我们在Western blot中检测到转染的全细胞裂解液和浓缩培养基中的PTEN长表达。有趣的是,与野生型U87或对照培养基相比,PTEN长表达的培养基可以降低Akt磷酸化水平并抑制U87细胞增殖。综上所述,由CRISPR / Cas9驱动的PTEN长序列可进出口细胞并抑制附近的细胞增殖,这表明由CRISPR / Cas9生成的PTEN长序列有可能成为PTEN基因治疗的替代策略。

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