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Dysregulated miR-155 and miR-125b Are Related to Impaired B-cell Responses in Down Syndrome

机译:miR-155和miR-125b失调与唐氏综合症中的B细胞反应受损有关

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摘要

Children with Down Syndrome (DS) suffer from immune deficiency with a severe reduction in switched memory B cells (MBCs) and poor response to vaccination. Chromosome 21 (HSA21) encodes two microRNAs (miRs), miR-125b, and miR-155, that regulate B-cell responses. We studied B- and T- cell subpopulations in tonsils of DS and age-matched healthy donors (HD) and found that the germinal center (GC) reaction was impaired in DS. GC size, numbers of GC B cells and Follicular Helper T cells (TFH) expressing BCL6 cells were severely reduced. The expression of miR-155 and miR-125b was increased in tonsillar memory B cells and miR-125b was also higher than expected in plasma cells (PCs). Activation-induced cytidine deaminase (AID) protein, a miR-155 target, was significantly reduced in MBCs of DS patients. Increased expression of miR-155 was also observed in vitro. MiR-155 was significantly overexpressed in PBMCs activated with CpG, whereas miR-125b was constitutively higher than normal. The increase of miR-155 and its functional consequences were blocked by antagomiRs in vitro. Our data show that the expression of HSA21-encoded miR-155 and miR-125b is altered in B cells of DS individuals both in vivo and in vitro. Because of HSA21-encoded miRs may play a role also in DS-associated dementia and leukemia, our study suggests that antagomiRs may represent pharmacological tools useful for the treatment of DS.
机译:唐氏综合症(DS)儿童患有免疫缺陷,开关记忆B细胞(MBC)大量减少,对疫苗的反应较差。 21号染色体(HSA21)编码两个microRNA(miRs),miR-125b和miR-155,它们调节B细胞反应。我们研究了DS扁桃体和年龄匹配的健康供体(HD)的B细胞和T细胞亚群,发现DS的生发中心(GC)反应受损。 GC大小,GC B细胞和表达FCL的BCL6细胞的数目均大大减少。扁桃体记忆B细胞中miR-155和miR-125b的表达增加,miR-125b也高于浆细胞(PC)的预期。在DS患者的MBC中,激活诱导的胞苷脱氨酶(AID)蛋白(一种miR-155靶标)显着降低。在体外也观察到miR-155的表达增加。在用CpG激活的PBMC中,MiR-155明显过表达,而miR-125b的组成型高于正常水平。体外antagomiRs阻止了miR-155的增加及其功能后果。我们的数据表明,体内和体外DS个体的B细胞中均编码了HSA21编码的miR-155和miR-125b。由于HSA21编码的miRs也可能在DS相关的痴呆和白血病中起作用,因此我们的研究表明antagomiRs可能代表可用于治疗DS的药理学工具。

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