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首页> 外文期刊>Journal of Molecular Biology >USF IN THE LYTECHINUS SEA URCHIN EMBRYO MAY ACT AS A TRANSCRIPTIONAL REPRESSOR IN NON-ABORAL ECTODERM CELLS FOR THE CELL LINEAGE-SPECIFIC EXPRESSION OF THE LPS1 GENES
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USF IN THE LYTECHINUS SEA URCHIN EMBRYO MAY ACT AS A TRANSCRIPTIONAL REPRESSOR IN NON-ABORAL ECTODERM CELLS FOR THE CELL LINEAGE-SPECIFIC EXPRESSION OF THE LPS1 GENES

机译:溶菌性海藻蛋白胚中的USF可能作为非抑制性表皮细胞中的转录抑制子,用于LPS1基因的细胞谱系特异性表达

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Expression of the aboral ectoderm-specific LpS1 gene in Lytechinus was used to study lineage-specific transcriptional regulation during sea urchin development. Band shift assays using anti-USF antibody showed that a USF-like protein bound the USF core sequence 5'-CACGTG-3' in the promoter of the LpS1 gene. DNA constructs consisting of a wild-type LpS1 promoter and the same LpS1 promoter with a mutated USF binding site fused to the bacterial chloramphenicol acetyltransferase reporter gene were tested. The mutation in the USF binding site caused an increase in chloramphenicol acetyltransferse activity. We selected a clone that encodes USF, LvUSF, from a gastrula-stage cDNA library representing Lytechinus variegatus. Transactivation experiments, in which LvUSF RNA or a DNA construct consisting of the LvUSF cDNA clone fused to the Lytechinus pictus metallothionein promoter coinjected with the wild type or mutated LpS1 promoter-chloramphenicol acetyltransferase gene construct, showed that chloramphenicol acetyltransferase activity from the wild-type construct was repressed, while the construct mutated at the USF binding site was active. The same wild-type and mutated LpS1 promoter DNA fragments ligated to the green fluorescent protein reporter gene were used to examine spatial expression. The reporter gene constructs containing the mutated USF binding site were expressed inappropriately in all cell types including the gut and oral ectoderm in gastrula and larva stage embryos, while the wild-type constructs were expressed primarily in the aboral ectoderm. USF was expressed in all cells of the early embryo and in all tissues except the aboral ectoderm in later embryos. The data are consistent with a model depicting Lytechinus USF, as a temporal and spatial regulator by repressing LpS1 gene transcription in non-aboral ectoderm cells. (C) 1996 Academic Press Limited [References: 32]
机译:Lytechinus中的外胚层外胚层特异性LpS1基因的表达用于研究海胆发育过程中的谱系特异性转录调控。使用抗USF抗体进行的带移分析表明,USF样蛋白与LpS1基因启动子中的USF核心序列5'-CACGTG-3'结合。测试了由野生型LpS1启动子和具有与细菌氯霉素乙酰转移酶报告基因基因融合的突变USF结合位点的相同LpS1启动子组成的DNA构建体。 USF结合位点的突变导致氯霉素乙酰转移酶活性增加。我们从代表百日草的下腹阶段cDNA文库中选择了一个编码USF LvUSF的克隆。转激活实验,其中LvUSF RNA或由LvUSF cDNA克隆融合至Lytechinus pictus金属硫蛋白启动子的DNA构建体与野生型或突变的LpS1启动子-氯霉素乙酰转移酶基因构建体共同注入,表明野生型构建体的氯霉素乙酰基转移酶活性在USF结合位点发生突变的构建体处于活跃状态时,其被抑制。连接到绿色荧光蛋白报道基因的相同的野生型和突变的LpS1启动子DNA片段用于检查空间表达。含有突变的USF结合位点的报告基因构建体在包括胃和幼虫期胚胎在内的所有细胞类型(包括肠道和口腔外胚层)中均不适当表达,而野生型构建体主要在腺外胚层中表达。 USF在早期胚胎的所有细胞和所有组织中均表达,除了后期胚胎中的外胚层外。数据与描绘Lytechinus USF的模型一致,该模型通过抑制非口腔外胚层细胞中的LpS1基因转录来作为时空调节剂。 (C)1996 Academic Press Limited [参考:32]

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