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果蝇 microRNAs 263a/b 通过保护新生感觉器官免受细胞凋亡,在发育过程中赋予其稳健性。

Drosophila microRNAs 263a/b confer robustness during development by protecting nascent sense organs from apoptosis.

机构信息

Temasek Life Sciences Laboratory, National University of Singapore, Singapore.

出版信息

PLoS Biol. 2010 Jun 15;8(6):e1000396. doi: 10.1371/journal.pbio.1000396.

Abstract

miR-263a/b are members of a conserved family of microRNAs that are expressed in peripheral sense organs across the animal kingdom. Here we present evidence that miR-263a and miR-263b play a role in protecting Drosophila mechanosensory bristles from apoptosis by down-regulating the pro-apoptotic gene head involution defective. Both microRNAs are expressed in the bristle progenitors, and despite a difference in their seed sequence, they share this key common target. In miR-263a and miR-263b deletion mutants, loss of bristles appears to be sporadic, suggesting that the role of the microRNAs may be to ensure robustness of the patterning process by promoting survival of these functionally specified cells. In the context of the retina, this mechanism ensures that the interommatidial bristles are protected during the developmentally programmed wave of cell death that prunes excess cells in order to refine the pattern of the pupal retina.

摘要

miR-263a/b 是在动物王国的外周感觉器官中表达的保守 miRNA 家族的成员。在这里,我们提供的证据表明,miR-263a 和 miR-263b 通过下调促凋亡基因 head involution defective 来保护果蝇机械感觉刚毛免于细胞凋亡。这两个 microRNA 都在刚毛祖细胞中表达,尽管它们的种子序列不同,但它们具有这个关键的共同靶标。在 miR-263a 和 miR-263b 缺失突变体中,刚毛的缺失似乎是散在的,这表明 microRNA 的作用可能是通过促进这些功能特化细胞的存活来确保模式形成过程的稳健性。在视网膜的情况下,这种机制确保了在细胞死亡的发育编程波中保护细胞间刚毛,以去除多余的细胞,从而细化蛹视网膜的模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c1e/2885982/49844c3b3bea/pbio.1000396.g001.jpg

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