Ivey Kathryn N, Srivastava Deepak
Gladstone Institute of Cardiovascular Disease and Departments of Pediatrics, Biochemistry and Biophysics, University of California, San Francisco, San Francisco, California 94158.
Cold Spring Harb Perspect Biol. 2015 Jul 1;7(7):a008144. doi: 10.1101/cshperspect.a008144.
The field of miRNA biology is relatively young, but its impact on our understanding of the regulation of a wide array of cell functions is far-reaching. The importance of miRNAs in development has become nearly ubiquitous, with miRNAs contributing to development of most cells and organs. Although miRNAs are clearly interwoven into known regulatory networks that control cell development, the specific modalities by which they intersect are often quite distinct and cleverly achieved. The frequently emerging theme of feed-back and feed-forward loops to either counterbalance or reinforce the gene programs that they influence is a common thread. Many of these examples of miRNAs as developmental regulators are presently found in organs with different miRNAs and targets, whereas novel, unexpected themes emerge in the context of mouse development as we learn more about this rapidly developing area of biology.
微小RNA(miRNA)生物学领域相对年轻,但其对我们理解多种细胞功能调控的影响却极为深远。miRNA在发育过程中的重要性几乎无处不在,它们参与了大多数细胞和器官的发育。尽管miRNA显然已融入控制细胞发育的已知调控网络,但它们相互交叉的具体方式往往截然不同且巧妙实现。反馈和前馈环以平衡或强化它们所影响的基因程序这一频繁出现的主题是一个共同特点。目前,许多作为发育调节因子的miRNA实例存在于具有不同miRNA和靶标的器官中,而随着我们对这一快速发展的生物学领域了解得更多,在小鼠发育过程中出现了新的、意想不到的主题。