Nakagawa Naoki, Xin Cuiyan, Roach Allie M, Naiman Natalie, Shankland Stuart J, Ligresti Giovanni, Ren Shuyu, Szak Suzanne, Gomez Ivan G, Duffield Jeremy S
Division of Nephrology, Departments of Medicine and Pathology, University of Washington, Seattle, Washington, USA.
1] Division of Nephrology, Departments of Medicine and Pathology, University of Washington, Seattle, Washington, USA [2] Research and Development, Biogen Idec, Cambridge, Massachusetts, USA.
Kidney Int. 2015 Jun;87(6):1125-40. doi: 10.1038/ki.2014.406. Epub 2015 Feb 4.
MicroRNAs, activated by the enzyme Dicer1, control post-transcriptional gene expression. Dicer1 has important roles in the epithelium during nephrogenesis, but its function in stromal cells during kidney development is unknown. To study this, we inactivated Dicer1 in renal stromal cells. This resulted in hypoplastic kidneys, abnormal differentiation of the nephron tubule and vasculature, and perinatal mortality. In mutant kidneys, genes involved in stromal cell migration and activation were suppressed as were those involved in epithelial and endothelial differentiation and maturation. Consistently, polarity of the proximal tubule was incorrect, distal tubule differentiation was diminished, and elongation of Henle's loop attenuated resulting in lack of inner medulla and papilla in stroma-specific Dicer1 mutants. Glomerular maturation and capillary loop formation were abnormal, whereas peritubular capillaries, with enhanced branching and increased diameter, formed later. In Dicer1-null renal stromal cells, expression of factors associated with migration, proliferation, and morphogenic functions including α-smooth muscle actin, integrin-α8, -β1, and the WNT pathway transcriptional regulator LEF1 were reduced. Dicer1 mutation in stroma led to loss of expression of distinct microRNAs. Of these, miR-214, -199a-5p, and -199a-3p regulate stromal cell functions ex vivo, including WNT pathway activation, migration, and proliferation. Thus, Dicer1 activity in the renal stromal compartment regulates critical stromal cell functions that, in turn, regulate differentiation of the nephron and vasculature during nephrogenesis.
由酶Dicer1激活的微小RNA控制转录后基因表达。Dicer1在肾发生过程中在上皮细胞中发挥重要作用,但其在肾脏发育过程中在基质细胞中的功能尚不清楚。为了研究这一点,我们在肾基质细胞中使Dicer1失活。这导致肾脏发育不全、肾单位小管和脉管系统异常分化以及围产期死亡。在突变肾脏中,参与基质细胞迁移和激活的基因以及参与上皮和内皮分化与成熟的基因均受到抑制。一致地,近端小管的极性不正确,远端小管分化减弱,亨氏袢伸长减弱,导致基质特异性Dicer1突变体中缺乏内髓和乳头。肾小球成熟和毛细血管袢形成异常,而周细胞毛细血管分支增加、直径增大,形成较晚。在Dicer1缺失的肾基质细胞中,与迁移、增殖和形态发生功能相关的因子表达降低,包括α-平滑肌肌动蛋白、整合素-α8、-β1以及WNT途径转录调节因子LEF1。基质中的Dicer1突变导致不同微小RNA的表达缺失。其中,miR-214、-199a-5p和-199a-3p在体外调节基质细胞功能,包括WNT途径激活、迁移和增殖。因此,肾基质区室中的Dicer1活性调节关键的基质细胞功能,进而在肾发生过程中调节肾单位和脉管系统的分化。