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首页> 外文期刊>Chinese Journal of Contemporary Neurology and Neurosurgery >Research of PTEN mutation in glioma stem/progenitor cells
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Research of PTEN mutation in glioma stem/progenitor cells

机译:脑胶质瘤干/祖细胞中PTEN突变的研究

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Objective More and more attention has been given to the presumption that glioma stem cells (GSCs) originate from neural stem cells (NSCs) with gene mutation, however, there is no enough evidence by now. This paper aims to get evidence of this area. Methods Glioma stem/progenitor cells (GSPCs) and neural stem/progenitor cells (NSPCs) were cultivated in vitro, and were identified before the following studies. Total RNA was isolated and then reverse?transcribed into cDNA, with primers specific to phosphatase and tensin homolog deleted onchromosome ten (PTEN), high?fidelity Taq polymerase was used for the polymerase chain reaction (PCR) to avoid the incorporation of pseudomutation. After amplification, 10 μl of the reaction mixture was electrophoresed through 1.5% agarose gel, and the rest of the reaction mixture was used for sequencing in both directions. The procedures for the isolation of total RNA to PCR and sequencing were repeated twice, and the sequencing results of both DNA and PTEN peptide chain were analysed with DNAssist 1.0 software and compared to the sequence of wild?type Homo Sapiens PTEN in GenBank. Results No mutation happened in the PTEN of NSPCs, but there were many base mutations in the mRNA of PTEN of GSPCs compared with the wild?type Homo Sapiens PTEN. Though most of these mutations were same sense mutation, still several mutations were not, including the normal DNA bases of PTEN bases 22 to 42 "ATCGTTAGCAGAAACAAAAGG" in first exon mutated into "CTACGATTGATTTGCATCTTT", base 712 "T" in exon 7 mutated into "C", and base 1192 "A" in exon 9 mutated into "T". Accordingly, for the amino acids (AA) sequence in the peptide chain of PTEN, the mutation included AA from the 8th to the 14th (from "IVSRNKR" to "LRLICIF"), the 238th AA (from "F" to "L"), and the 398th AA (from "T" to "S"). These mutated regions were involved in membrane interaction, particularly the combination with phosphatidylinositol 4, 5?biphosphate (PIP2) and maintaining the protein stability of PTEN. Therefore, these mutations not only lead to the rapid degradation of PTEN, but also hinder the cellular function of PTEN to down?regulate phosphoinostide 3?kinase (PI3K) signaling. Conclusion The mutation of PTEN occurs even in the early stage of malignant transformation, which is probably an initiating agent for the tumorigenesis of gliomas. DOI:10.3969/j.issn.1672-6731.2010.06.014.
机译:目的胶质瘤干细胞(GSCs)起源于具有基因突变的神经干细胞(NSCs)的推测受到越来越多的关注,但是,目前尚无足够的证据。本文旨在获得这一领域的证据。方法体外培养神经胶质瘤干/祖细胞(GSPC)和神经干/祖细胞(NSPC),并在进行以下研究之前进行鉴定。分离总RNA,然后反转录为cDNA,用10号染色体(PTEN)上缺失的磷酸酶和张力蛋白同源物特异性引物,将高保真Taq聚合酶用于聚合酶链反应(PCR),以避免掺入假突变。扩增后,将10μl反应混合物通过1.5%琼脂糖凝胶电泳,并将其余反应混合物用于两个方向的测序。重复两次将总RNA分离以进行PCR和测序的程序,并使用DNAssist 1.0软件分析DNA和PTEN肽链的测序结果,并与GenBank中野生型智人PTEN的序列进行比较。结果与野生型智人PTEN相比,NSPCs的PTEN中没有发生突变,但GSPCs的PTEN的mRNA中有许多碱基突变。尽管这些突变大多数都是同义突变,但仍然没有几个突变,包括第一个外显子的PTEN 22至42个“ ATCGTTAGCAGAAACAAAAGG”的正常DNA碱基突变为“ CTACGATTGATTTGCATCTTT”,第7个外显子的712个“ T”突变为“ C”,外显子9中的碱基1192“ A”突变为“ T”。因此,对于PTEN肽链中的氨基酸(AA)序列,突变包括第8至14位的AA(从“ IVSRNKR”至“ LRLICIF”),第238位的AA(从“ F”至“ L”) )和第398个AA(从“ T”到“ S”)。这些突变区参与膜相互作用,特别是与磷脂酰肌醇4、5′-二磷酸酯(PIP2)结合并维持PTEN的蛋白质稳定性。因此,这些突变不仅导致PTEN的快速降解,而且还阻碍PTEN的细胞功能下调磷酸肌醇3β激酶(PI3K)信号传导。结论PTEN突变甚至发生在恶性转化的早期,可能是胶质瘤发生的起因。 DOI:10.3969 / j.issn.1672-6731.2010.06.014。

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