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首页> 外文期刊>Molecular medicine. >Human Parthenogenetic Embryonic Stem Cell–Derived Neural Stem Cells Express HLA-G and Show Unique Resistance to NK Cell–Mediated Killing
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Human Parthenogenetic Embryonic Stem Cell–Derived Neural Stem Cells Express HLA-G and Show Unique Resistance to NK Cell–Mediated Killing

机译:人类孤雌生殖胚胎干细胞衍生的神经干细胞表达HLA-G,并显示出对NK细胞介导的杀伤力的独特抵抗力

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Parent-of-origin imprints have been implicated in the regulation of neural differentiation and brain development. Previously we have shown that, despite the lack of a paternal genome, human parthenogenetic (PG) embryonic stem cells (hESCs) can form proliferating neural stem cells (NSCs) that are capable of differentiation into physiologically functional neurons while maintaining allele-specific expression of imprinted genes. Since biparental (“normal”) hESC–derived NSCs (N NSCs) are targeted by immune cells, we characterized the immunogenicity of PG NSCs. Flow cytometry and immunocytochemistry revealed that both N NSCs and PG NSCs exhibited surface expression of human leukocyte antigen (HLA) class I but not HLA-DR molecules. Functional analyses using an in vitro mixed lymphocyte reaction assay resulted in less proliferation of peripheral blood mononuclear cells (PBMC) with PG compared with N NSCs. In addition, natural killer (NK) cells cytolyzed PG less than N NSCs. At a molecular level, expression analyses of immune regulatory factors revealed higher HLA-G levels in PG compared with N NSCs. In line with this finding, MIR152, which represses HLA-G expression, is less transcribed in PG compared with N cells. Blockage of HLA-G receptors ILT2 and KIR2DL4 on natural killer cell leukemia (NKL) cells increased cytolysis of PG NSCs. Together this indicates that PG NSCs have unique immunological properties due to elevated HLA-G expression.
机译:原产地的印记与神经分化和大脑发育的调节有关。先前我们已经证明,尽管缺少父本基因组,人类孤雌生殖(PG)胚胎干细胞(hESC)仍会形成增殖性神经干细胞(NSC),能够分化为生理功能神经元,同时保持等位基因特异性表达。印迹基因。由于双亲(“正常”)hESC衍生的NSC(N NSC)被免疫细胞靶向,因此我们表征了PG NSC的免疫原性。流式细胞仪和免疫细胞化学分析显示,N NSC和PG NSC均显示人类白细胞抗原(HLA)I类的表面表达,但未显示HLA-DR分子的表面表达。与N NSC相比,使用体外混合淋巴细胞反应测定的功能分析导致含PG的外周血单核细胞(PBMC)增殖较少。此外,自然杀伤(NK)细胞比N NSC裂解的PG少。在分子水平上,免疫调节因子的表达分析显示,与N NSC相比,PG中的HLA-G水平更高。符合这一发现,与H细胞相比,抑制HLA-G表达的MIR152在PG中的转录较少。天然杀伤细胞白血病(NKL)细胞上HLA-G受体ILT2和KIR2DL4的阻滞增加了PG NSC的细胞溶解。在一起,这表明PG NSC由于HLA-G表达升高而具有独特的免疫学特性。

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