Constantin Lena, Wainwright Brandon J
Institute for Molecular Bioscience, The University of Queensland, 306 Carmody Road, St Lucia, Queensland, 4072, Australia.
Cerebellum. 2015 Dec;14(6):688-98. doi: 10.1007/s12311-015-0672-x.
MicroRNAs (miRNAs) are important regulators of cerebellar function and homeostasis. Their deregulation results in cerebellar neuronal degeneration and spinocerebellar ataxia type 1 and contributes to medulloblastoma. Canonical miRNA processing involves Dicer, which cleaves precursor miRNAs into mature double-stranded RNA duplexes. In order to address the role of miRNAs in cerebellar granule cell precursor development, loxP-flanked exons of Dicer1 were conditionally inactivated using the granule cell precursor-specific Atoh1-Cre recombinase. A reduction of 87% in Dicer1 transcript was achieved in this conditional Dicer knockdown model. Although knockdown resulted in normal survival, mice had disruptions to the cortical layering of the anterior cerebellum, which resulted from the premature differentiation of granule cell precursors in this region during neonatal development. This defect manifested as a thinner external granular layer with ectopic mature granule cells, and a depleted internal granular layer. We found that expression of the activator components of the Hedgehog-Patched pathway, the Gli family of transcription factors, was perturbed in conditional Dicer knockdown mice. We propose that loss of Gli2 mRNA mediated the anterior-restricted defect in conditional Dicer knockdown mice and, as proof of principle, were able to show that miR-106b positively regulated Gli2 mRNA expression. These findings confirm the importance of miRNAs as positive mediators of Hedgehog-Patched signalling during granule cell precursor development.
微小RNA(miRNA)是小脑功能和内环境稳定的重要调节因子。它们的失调会导致小脑神经元变性和1型脊髓小脑共济失调,并促使髓母细胞瘤的发生。经典的miRNA加工过程涉及Dicer,它将前体miRNA切割成成熟的双链RNA双链体。为了研究miRNA在小脑颗粒细胞前体发育中的作用,利用颗粒细胞前体特异性的Atoh1-Cre重组酶对Dicer1的loxP侧翼外显子进行条件性失活。在这个条件性Dicer敲低模型中,Dicer1转录本减少了87%。虽然敲低导致正常存活,但小鼠前小脑的皮质分层出现破坏,这是由于该区域颗粒细胞前体在新生发育期间过早分化所致。这种缺陷表现为外部颗粒层变薄,伴有异位成熟颗粒细胞,以及内部颗粒层减少。我们发现,在条件性Dicer敲低小鼠中,Hedgehog-Patched信号通路的激活成分、Gli转录因子家族的表达受到干扰。我们提出,Gli2 mRNA的缺失介导了条件性Dicer敲低小鼠中前部受限的缺陷,并且作为原理证明,我们能够表明miR-106b正向调节Gli2 mRNA的表达。这些发现证实了miRNA作为颗粒细胞前体发育过程中Hedgehog-Patched信号的正向介导因子的重要性。