Andl Thomas, Murchison Elizabeth P, Liu Fei, Zhang Yuhang, Yunta-Gonzalez Monica, Tobias John W, Andl Claudia D, Seykora John T, Hannon Gregory J, Millar Sarah E
Departments of Dermatology and Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.
Curr Biol. 2006 May 23;16(10):1041-9. doi: 10.1016/j.cub.2006.04.005. Epub 2006 May 11.
The discovery that microRNAs (miRNAs) play important roles in regulating gene expression via posttranscriptional repression has revealed a previously unsuspected mechanism controlling development and progenitor-cell function (reviewed in ); however, little is known of miRNA functions in mammalian organogenesis. Processing of miRNAs and their assembly into the RNA-induced silencing (RISC) complex requires the essential multifunctional enzyme Dicer . We found that Dicer mRNA and multiple miRNAs are expressed in mouse skin, suggesting roles in skin- and hair-follicle biology. In newborn mice carrying an epidermal-specific Dicer deletion, hair follicles were stunted and hypoproliferative. Hair-shaft and inner-root-sheath differentiation was initiated, but the mutant hair follicles were misoriented and expression of the key signaling molecules Shh and Notch1 was lost by postnatal day 7. At this stage, hair-follicle dermal papillae were observed to evaginate, forming highly unusual structures within the basal epidermis. Normal hair shafts were not produced in the Dicer mutant, and the follicles lacked stem cell markers and degenerated. In contrast to decreased follicular proliferation, the epidermis became hyperproliferative. These results reveal critical roles for Dicer in the skin and implicate miRNAs in key aspects of epidermal and hair-follicle development and function.
微小核糖核酸(miRNA)通过转录后抑制作用在调节基因表达中发挥重要作用,这一发现揭示了一种此前未被怀疑的控制发育和祖细胞功能的机制(相关综述见 );然而,对于miRNA在哺乳动物器官发生中的功能却知之甚少。miRNA的加工及其组装到RNA诱导沉默复合体(RISC)中需要必需的多功能酶Dicer 。我们发现Dicer信使核糖核酸(mRNA)和多种miRNA在小鼠皮肤中表达,提示其在皮肤和毛囊生物学中发挥作用。在携带表皮特异性Dicer缺失的新生小鼠中,毛囊发育不良且增殖不足。毛干和内根鞘的分化开始启动,但突变的毛囊方向异常,关键信号分子音猬因子(Shh)和Notch1的表达在出生后第7天就消失了。在此阶段,观察到毛囊真皮乳头外翻,在基底表皮内形成非常异常的结构。Dicer突变体中未产生正常的毛干,毛囊缺乏干细胞标志物并发生退化。与毛囊增殖减少相反,表皮出现过度增殖。这些结果揭示了Dicer在皮肤中的关键作用,并表明miRNA参与了表皮和毛囊发育及功能的关键环节。