Rowe R Grant, Wang Leo D, Coma Silvia, Han Areum, Mathieu Ronald, Pearson Daniel S, Ross Samantha, Sousa Patricia, Nguyen Phi T, Rodriguez Antony, Wagers Amy J, Daley George Q
Stem Cell Transplantation Program, Stem Cell Program, Division of Pediatric Hematology/Oncology, Boston Children's Hospital and Dana-Farber Cancer Institute, Boston, MA 02215.
Stem Cell Transplantation Program, Stem Cell Program, Division of Pediatric Hematology/Oncology, Boston Children's Hospital and Dana-Farber Cancer Institute, Boston, MA 02215 Harvard Stem Cell Institute, Cambridge, MA 02138 Joslin Diabetes Center, Boston, MA 02215.
J Exp Med. 2016 Jul 25;213(8):1497-512. doi: 10.1084/jem.20151912. Epub 2016 Jul 11.
For appropriate development, tissue and organ system morphogenesis and maturation must occur in synchrony with the overall developmental requirements of the host. Mistiming of such developmental events often results in disease. The hematopoietic system matures from the fetal state, characterized by robust erythrocytic output that supports prenatal growth in the hypoxic intrauterine environment, to the postnatal state wherein granulocytes predominate to provide innate immunity. Regulation of the developmental timing of these myeloerythroid states is not well understood. In this study, we find that expression of the heterochronic factor Lin28b decreases in common myeloid progenitors during hematopoietic maturation to adulthood in mice. This decrease in Lin28b coincides with accumulation of mature let-7 microRNAs, whose biogenesis is regulated by Lin28 proteins. We find that inhibition of let-7 in the adult hematopoietic system recapitulates fetal erythroid-dominant hematopoiesis. Conversely, deletion of Lin28b or ectopic activation of let-7 microRNAs in the fetal state induces a shift toward adult-like myeloid-dominant output. Furthermore, we identify Hmga2 as an effector of this genetic switch. These studies provide the first detailed analysis of the roles of endogenous Lin28b and let-7 in the timing of hematopoietic states during development.
为实现正常发育,组织和器官系统的形态发生与成熟必须与宿主的整体发育需求同步进行。此类发育事件的时间安排不当往往会导致疾病。造血系统从胎儿状态成熟,其特征是强大的红细胞生成以支持低氧子宫内环境中的产前生长,发展到产后状态,此时粒细胞占主导地位以提供先天免疫。这些髓系红细胞状态发育时间的调控机制尚不清楚。在本研究中,我们发现异时性因子Lin28b在小鼠造血成熟至成年期的常见髓系祖细胞中的表达降低。Lin28b的这种降低与成熟的let-7微小RNA积累相一致,其生物合成受Lin28蛋白调控。我们发现,在成年造血系统中抑制let-7可重现胎儿红细胞占主导的造血过程。相反,在胎儿状态下删除Lin28b或异位激活let-7微小RNA会诱导向成年样髓系占主导的输出转变。此外,我们确定Hmga2是这种基因开关的效应器。这些研究首次详细分析了内源性Lin28b和let-7在发育过程中造血状态时间调控中的作用。