Shrestha Amit, Carraro Gianni, El Agha Elie, Mukhametshina Regina, Chao Cho-Ming, Rizvanov Albert, Barreto Guillermo, Bellusci Saverio
German Center for Lung Research, Excellence Cluster Cardio-Pulmonary System, Universities of Giessen and Marburg Lung Center, Giessen, Hessen, Germany.
Lung and Regenerative Medicine Institutes, Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, California.
PLoS One. 2015 Sep 1;10(9):e0136913. doi: 10.1371/journal.pone.0136913. eCollection 2015.
microRNA-142 (miR-142) is an important regulator of many biological processes and associated signaling pathways during embryonic development, homeostasis and disease. The miR-142 hairpin gives rise to the "guide strand" miR-142-3p and the sister "passenger" strand miR-142-5p. miR-142-3p has been shown to play critical, non-redundant functions in the development of the hematopoietic lineage. We have recently reported that miR-142-3p is critical for the control of Wnt signaling in the mesenchyme of the developing lung. miR-142-5p has been proposed to control adaptive growth in cardiomyocytes postnatally and its increase is associated with extensive apoptosis and cardiac dysfunction in a murine heart failure model. Using homologous recombination, we now report the generation and validation of miR-142-null mice. miR-142-null mice show a significant decrease in th expression levels of both the 3p and 5p isoforms. The expression of Bzrap1, a gene immediately flanking miR-142 is not altered while the expression of a long non-coding RNA embedded within the miR-142 gene is decreased. miR-142-null newborn pups appear normal and are normally represented indicating absence of embryonic lethality. At embryonic day 18.5, miR-142-null lungs display increased Wnt signaling associated with the up-regulation of Apc and p300, two previously reported targets of miR-142-3p and -5p, respectively. Adult miR-142-null animals display impaired hematopoietic lineage formation identical to previously reported miR-142 gene trap knockdown mice. We report, for the first time, the homologous recombination-based miR-142-null mice that will be useful for the scientific community working on the diverse biological functions of miR-142.
微小RNA-142(miR-142)是胚胎发育、体内稳态和疾病过程中许多生物学过程及相关信号通路的重要调节因子。miR-142发夹结构产生“引导链”miR-142-3p和其姐妹“乘客链”miR-142-5p。已表明miR-142-3p在造血谱系发育中发挥关键的、非冗余的功能。我们最近报道miR-142-3p对发育中肺间充质中Wnt信号的控制至关重要。有人提出miR-142-5p在出生后控制心肌细胞的适应性生长,并且在小鼠心力衰竭模型中其增加与广泛的细胞凋亡和心脏功能障碍相关。利用同源重组,我们现在报道了miR-142基因敲除小鼠的产生和验证。miR-142基因敲除小鼠中3p和5p异构体的表达水平均显著降低。紧邻miR-142的基因Bzrap1的表达未改变,而miR-142基因内嵌入的一个长链非编码RNA的表达降低。miR-142基因敲除的新生幼崽外观正常且数量正常,表明没有胚胎致死性。在胚胎第18.5天,miR-142基因敲除的肺显示Wnt信号增加,这与之前报道的分别为miR-142-3p和-5p的两个靶标Apc和p300的上调相关。成年miR-142基因敲除动物表现出造血谱系形成受损,与之前报道的miR-142基因陷阱敲低小鼠相同。我们首次报道了基于同源重组的miR-142基因敲除小鼠,这将对研究miR-142多种生物学功能的科学界有用。