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多物种 RNA 断层扫描揭示了胚胎主动脉中造血干细胞生成的调节因子。

Multispecies RNA tomography reveals regulators of hematopoietic stem cell birth in the embryonic aorta.

机构信息

Hubrecht Institute-Royal Netherlands Academy of Arts and Sciences (KNAW), University Medical Center Utrecht, Utrecht, The Netherlands.

Institute for Cardiovascular Organogenesis and Regeneration, Faculty of Medicine, Cells-in-Motion Cluster of Excellence, University of Münster, Münster, Germany.

出版信息

Blood. 2020 Aug 13;136(7):831-844. doi: 10.1182/blood.2019004446.

Abstract

The defined location of a stem cell within a niche regulates its fate, behavior, and molecular identity via a complex extrinsic regulation that is far from being fully elucidated. To explore the molecular characteristics and key components of the aortic microenvironment, where the first hematopoietic stem cells are generated during development, we performed genome-wide RNA tomography sequencing on zebrafish, chicken, mouse, and human embryos. The resulting anterior-posterior and dorsal-ventral transcriptional maps provided a powerful resource for exploring genes and regulatory pathways active in the aortic microenvironment. By performing interspecies comparative RNA sequencing analyses and functional assays, we explored the complexity of the aortic microenvironment landscape and the fine-tuning of various factors interacting to control hematopoietic stem cell generation, both in time and space in vivo, including the ligand-receptor couple ADM-RAMP2 and SVEP1. Understanding the regulatory function of the local environment will pave the way for improved stem cell production in vitro and clinical cell therapy.

摘要

龛内干细胞的明确位置通过一种复杂的外在调节来调节其命运、行为和分子特征,而这种调节远未被完全阐明。为了探索发育过程中第一个造血干细胞产生的主动脉微环境的分子特征和关键成分,我们对斑马鱼、鸡、鼠和人胚胎进行了全基因组 RNA 断层扫描测序。由此产生的前后和背腹转录图谱为探索在主动脉微环境中活跃的基因和调控途径提供了强大的资源。通过进行种间比较 RNA 测序分析和功能测定,我们探索了主动脉微环境景观的复杂性以及各种因素的精细调节,这些因素相互作用以控制造血干细胞的生成,包括配体-受体对 ADM-RAMP2 和 SVEP1,无论是在体内还是在时间和空间上。了解局部环境的调节功能将为体外提高干细胞产量和临床细胞治疗铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fb8/7515669/9217d6acb743/bloodBLD2019004446absf1.jpg

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