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Human endogenous retrovirus K (HML-2) RNA and protein expression is a marker for human embryonic and induced pluripotent stem cells

机译:人内源性逆转录病毒K(HML-2)RNA和蛋白表达是人胚胎干细胞和诱导性多能干细胞的标志物

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Background Malignant human embryonal carcinoma cells (ECCs) rely on similar transcriptional networks as non-malignant embryonic stem cells (ESCs) to control selfrenewal, maintain pluripotency, and inhibit differentiation. Because re-activation of silenced HERV-K(HML-2) loci is a hallmark of ECCs, we asked if this HERV group was also reactivated in ESCs and induced pluripotent stem cells (iPSCs). Findings Using RT-PCR and Western Blot, we demonstrate HERV-K(HML-2) RNA and protein expression in undifferentiated human ESCs and iPSCs. Induction of differentiation by embryoid body formation resulted in rapid silencing of HERV-K(HML-2) provirus expression. Sequencing analysis of a conserved region of the gag gene showed that proviral expression in ESCs and iPSCs represents at least 11 of the 66 nearly full length HERV-K(HML-2) loci, with slightly varying patterns in individual cell lines. These proviruses are human specific integrations and harbor promoter competent long terminal repeats (LTR5hs subgroup). We observed high mRNA levels of the NP9 and Gag encoding proviruses K101(22q11.21) in all and K10(5q33.3) in most of the ECC, ESC, and iPSC lines tested, while K37(11q23.3) mRNA was detected only in ESCs and iPSCs. In addition, we detected expression of proviral mRNA encoding the RNA export adaptor Rec in all cell lines studied. Proviral mRNA originating from the K108(7p22.1) locus, which inter alia codes for functional Rec and Env proteins, was only reactivated in malignant ECC lines, not in benign ESCs or iPSCs. Conclusions HERV-K(HML-2) RNA and protein expression is a marker for pluripotent human stem cells. Initiation of differentiation results in rapid down-regulation. Further studies are needed to explore a putative functional role of HERV-K(HML-2) RNA and proteins in pluripotent stem cells.
机译:背景恶性人类胚胎癌细胞(ECC)依赖与非恶性胚胎干细胞(ESC)类似的转录网络来控制自我更新,维持多能性并抑制分化。由于沉默的HERV-K(HML-2)基因座的重新激活是ECC的标志,因此我们询问该HERV组是否也在ESC和诱导的多能干细胞(iPSC)中也被重新激活。使用RT-PCR和Western Blot的发现,我们证明了未分化的人类ESC和iPSC中的HERV-K(HML-2)RNA和蛋白质表达。胚状体形成诱导分化导致HERV-K(HML-2)前病毒表达快速沉默。对gag基因保守区的测序分析表明,ESC和iPSC中的前病毒表达代表了66个几乎全长的HERV-K(HML-2)基因座中的至少11个,在单个细胞系中的模式略有不同。这些原病毒是人类特异性整合体,具有长末端重复序列(LTR5hs亚组)的启动子能力。我们观察到在所有测试的ECC,ESC和iPSC品系中,所有编码NP9和Gag的前病毒K101(22q11.21)和K10(5q33.3)的mRNA水平都很高,而检测到K37(11q23.3)mRNA仅在ESC和iPSC中。此外,我们在所有研究的细胞系中检测到编码RNA出口衔接子Rec的原病毒mRNA的表达。起源于K108(7p22.1)基因座的原病毒mRNA仅在功能强大的Rec和Env蛋白上编码,仅在恶性ECC系中激活,而在良性ESC或iPSC中未激活。结论HERV-K(HML-2)RNA和蛋白表达是人多能干细胞的标志物。分化的开始导致快速下调。需要进一步的研究来探索在多能干细胞中HERV-K(HML-2)RNA和蛋白质的假定功能作用。

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