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秀丽隐杆线虫 sym-1 是类 hunchback-1 发育时间转录因子的下游靶标。

C. elegans sym-1 is a downstream target of the hunchback-like-1 developmental timing transcription factor.

机构信息

Initiative for the Promotion of Young Scientists' Independent Research, Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.

出版信息

Cell Cycle. 2009 Dec 15;8(24):4147-54. doi: 10.4161/cc.8.24.10292. Epub 2009 Dec 9.

Abstract

In the nematode Caenorhabditis elegans, the let-7 microRNA (miRNA) and its family members control the timing of key developmental events in part by directly regulating expression of hunchback-like-1 (hbl-1). C. elegans hbl-1 mutants display multiple developmental timing deficiencies, including cell cycle defects during larval development. While hbl-1 is predicted to encode a transcriptional regulator, downstream targets of HBL-1 have not been fully elucidated. Here we report using microarray analysis to uncover genes downstream of HBL-1. We established a transgenic strain that overexpresses hbl-1 under the control of a heat shock promoter. Heat shock-induced hbl-1 overexpression led to retarded hypodermal structures at the adult stage, opposite to the effect seen in loss of function (lf) hbl-1 mutants. The microarray screen identified numerous potential genes that are upregulated or downregulated by HBL-1, including sym-1, which encodes a leucine-rich repeat protein with a signal sequence. We found an increase in sym-1 transcription in the heat shock-induced hbl-1 overexpression strain, while loss of hbl-1 function caused a decrease in sym-1 expression levels. Furthermore, we found that sym-1(lf) modified the hypodermal abnormalities in hbl-1 mutants. Given that SYM-1 is a protein secreted from hypodermal cells to the surrounding cuticle, we propose that the adult-specific cuticular structures may be under the temporal control of HBL-1 through regulation of sym-1 transcription.

摘要

在秀丽隐杆线虫中,let-7 微 RNA(miRNA)及其家族成员通过直接调控 hunchback-like-1(hbl-1)的表达来控制关键发育事件的时间。线虫 hbl-1 突变体表现出多种发育时间缺陷,包括幼虫发育过程中的细胞周期缺陷。虽然 hbl-1 被预测编码一个转录调节因子,但 HBL-1 的下游靶标尚未完全阐明。在这里,我们使用微阵列分析来揭示 HBL-1 的下游基因。我们建立了一个转基因株系,该株系在热休克启动子的控制下过表达 hbl-1。热休克诱导的 hbl-1 过表达导致成虫期的真皮结构发育迟缓,与功能丧失(lf)hbl-1 突变体的效应相反。微阵列筛选鉴定了许多潜在的基因,这些基因受 HBL-1 的上调或下调调控,包括 sym-1,它编码一个具有信号序列的富含亮氨酸重复蛋白。我们发现热休克诱导的 hbl-1 过表达株系中 sym-1 转录增加,而 hbl-1 功能丧失导致 sym-1 表达水平降低。此外,我们发现 sym-1(lf) 修饰了 hbl-1 突变体中的真皮异常。鉴于 SYM-1 是一种从真皮细胞分泌到周围表皮的蛋白质,我们提出,成年期特有的表皮结构可能通过调节 sym-1 转录受到 HBL-1 的时间控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac2/2895549/2aea6ca33293/nihms-211881-f0001.jpg

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