首页> 外文期刊>Molecular and Cellular Biology >The Caenorhabditis elegans Heterochronic Regulator LIN-14 Is a Novel Transcription Factor That Controls the Developmental Timing of Transcription from the Insulin/Insulin-Like Growth Factor Gene ins-33 by Direct DNA Binding
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The Caenorhabditis elegans Heterochronic Regulator LIN-14 Is a Novel Transcription Factor That Controls the Developmental Timing of Transcription from the Insulin/Insulin-Like Growth Factor Gene ins-33 by Direct DNA Binding

机译:秀丽隐杆线虫异时调节因子LIN-14是一种新型转录因子,通过直接DNA结合来控制胰岛素/类胰岛素生长因子基因ins-33转录的发育时间。

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A temporal gradient of the novel nuclear protein LIN-14 specifies the timing and sequence of stage-specific developmental events in Caenorhabditis elegans. The profound effects of lin-14 mutations on worm development suggest that LIN-14 directly or indirectly regulates stage-specific gene expression. We show that LIN-14 can associate with chromatin in vivo and has in vitro DNA binding activity. A bacterially expressed C-terminal domain of LIN-14 was used to select DNA sequences that contain a putative consensus binding site from a pool of randomized double-stranded oligonucleotides. To identify candidates for genes directly regulated by lin-14, we employed DNA microarray hybridization to compare the mRNA abundance of C. elegans genes in wild-type animals to that in mutants with reduced or elevated lin-14 activity. Five of the candidate LIN-14 target genes identified by microarrays, including the insulin/insulin-like growth factor family gene ins-33, contain putative LIN-14 consensus sites in their upstream DNA sequences. Genetic analysis indicates that the developmental regulation of ins-33 mRNA involves the stage-specific repression of ins-33 transcription by LIN-14 via sequence-specific DNA binding. These results reinforce the conclusion that lin-14 encodes a novel class of transcription factor.
机译:新型核蛋白LIN-14的时间梯度确定了秀丽隐杆线虫阶段特定发育事件的时间和顺序。 lin-14 突变对蠕虫发育的深远影响表明,LIN-14直接或间接调节阶段特异性基因表达。我们显示LIN-14可以在体内与染色质缔合,并具有体外DNA结合活性。细菌表达的LIN-14 C末端结构域用于从随机双链寡核苷酸库中选择包含推定共有结合位点的DNA序列。为了鉴定直接受 lin-14 调控的基因的候选基因,我们使用DNA微阵列杂交技术比较了 C的mRNA丰度。野生动物中的线虫基因 lin-14 活性降低或升高。通过微阵列鉴定的候选LIN-14靶基因中有五个,包括胰岛素/胰岛素样生长因子家族基因 ins-33 ,在其上游DNA序列中包含推定的LIN-14共有位点。遗传分析表明 ins-33 mRNA的发育调控涉及LIN-14通过序列特异性DNA结合对 ins-33 转录的阶段特异性抑制。这些结果强化了 lin-14 编码一类新型转录因子的结论。

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