首页> 外文期刊>Molecular & cellular proteomics: MCP >Proteomic cornerstones of hematopoietic stem cell differentiation: Distinct signatures of multipotent progenitors and myeloid committed cells
【24h】

Proteomic cornerstones of hematopoietic stem cell differentiation: Distinct signatures of multipotent progenitors and myeloid committed cells

机译:造血干细胞分化的蛋白质组学基石:多能祖细胞和骨髓定型细胞的独特标志

获取原文
获取原文并翻译 | 示例
           

摘要

Regenerative tissues such as the skin epidermis, the intestinal mucosa or the hematopoietic system are organized in a hierarchical manner with stem cells building the top of this hierarchy. Somatic stem cells harbor the highest self-renewal activity and generate a series of multipotent progenitors which differentiate into lineage committed progenitors and subsequently mature cells. In this report, we applied an in-depth quantitative proteomic approach to analyze and compare the full proteomes of ex vivo isolated and FACS-sorted populations highly enriched for either multipotent hematopoietic stem/progenitor cells (HSPCs, LinnegSca-1+c-Kit+) or myeloid committed precursors (LinnegSca-1-c-Kit+). By employing stable isotope dimethyl labeling and high-resolution mass spectrometry, more than 5000 proteins were quantified. From biological triplicate experiments subjected to rigorous statistical evaluation, 893 proteins were found differentially expressed between multipotent and myeloid committed cells. The differential protein content in these cell populations points to a distinct structural organization of the cytoskeleton including remodeling activity. In addition, we found a marked difference in the expression of metabolic enzymes, including a clear shift of specific protein isoforms of the glycolytic pathway. Proteins involved in translation showed a collective higher expression in myeloid progenitors, indicating an increased translational activity. Strikingly, the data uncover a unique signature related to immune defense mechanisms, centering on the RIG-I and type-1 interferon response systems, which are installed in multipotent progenitors but not evident in myeloid committed cells. This suggests that specific, and so far unrecognized, mechanisms protect these immature cells before they mature. In conclusion, this study indicates that the transition of hematopoietic stem/progenitors toward myeloid commitment is accompanied by a profound change in processing of cellular resources, adding novel insights into the molecular mechanisms at the interface between multipotency and lineage commitment.
机译:诸如皮肤表皮,肠粘膜或造血系统之类的再生组织以分级的方式组织,而干细胞则位于该分级的顶部。体细胞干细胞具有最高的自我更新活性,并产生一系列多能祖细胞,这些祖细胞可分化为谱系定型祖细胞,并随后分化为成熟细胞。在本报告中,我们采用了深入的定量蛋白质组学方法来分析和比较离体分离的和FACS分选群体的全蛋白质组,这些群体高度浓缩了多能造血干/祖细胞(HSPC,LinnegSca-1 + c-Kit +)或髓样定型前体(LinnegSca-1-c-Kit +)。通过使用稳定的同位素二甲基标记和高分辨率质谱,定量了5000多种蛋白质。从经过严格统计评估的一式三份生物学实验中,发现893种蛋白质在多能细胞和髓样定殖细胞之间差异表达。这些细胞群中蛋白质含量的差异表明细胞骨架具有独特的结构组织,包括重塑活性。此外,我们发现了代谢酶表达的显着差异,包括糖酵解途径中特定蛋白质同工型的明显变化。参与翻译的蛋白质在髓样祖细胞中显示出集体较高的表达,表明翻译活性增加。令人惊讶的是,数据揭示了与免疫防御机制相关的独特特征,以RIG-I和Type-1干扰素反应系统为中心,这些系统安装在多能祖细胞中,但在髓样细胞中并不明显。这表明,迄今为止尚未被认识到的特定机制可以保护这些未成熟的细胞成熟。总之,这项研究表明,造血干/祖细胞向髓样定型的转变伴随着细胞资源加工的深刻变化,为多能性和谱系定型之间的界面分子机制增添了新见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号