首页> 美国卫生研究院文献>Molecular and Cellular Biology >Transduction of calcium stress through interaction of the human transcription factor CBF with the proximal CCAAT regulatory element of the grp78/BiP promoter.
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Transduction of calcium stress through interaction of the human transcription factor CBF with the proximal CCAAT regulatory element of the grp78/BiP promoter.

机译:通过人类转录因子CBF与grp78 / BiP启动子的近端CCAAT调节元件的相互作用来传导钙应激。

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摘要

Mammalian GRP78/BiP is a stress-inducible 78-kDa endoplasmic reticulum (ER) protein with molecular chaperone and calcium-binding properties. The transactivation of grp78 by the calcium ionophore A23187 provides a model system with which to study the signal transduction that allows mammalian cells to sense calcium depletion in intracellular stores and activate transcription of specific genes. Linker-scanning mutation analysis of the grp78 promoter reveals that the single most important regulatory element is C1, which contains a CCAAT motif most proximal to the TATA sequence. The C1 element is crucial for mediating the stimulatory effects by the upstream regulatory elements under normal and stress conditions. In this report, we establish that the heteromeric CCAAT-binding factor CBF is the major component of the C1-binding factor (C1F) in human cells. A GGAGG motif flanking the CCAAT sequence also contributes to high-affinity C1F/CBF binding. We show here that the binding of C1F in vitro is sensitive to the concentration of calcium ions. At high calcium ion concentrations, the C1F-binding activity is lower because of a higher dissociation rate. This binding characteristic correlates with the induction of grp78 transcription in response to the depletion of intracellular calcium stores. The strikingly similar behavior of C1F from nuclear extracts of control and -treated cells further suggests that C1F itself does not undergo any major inherent changes after calium depletion stress. Rather, its binding property could be modulated by the immediate calcium ionic environment in stressed and nonstressed cells. On the basis of the in vitro and in vivo site occupancies of C1F and other stress-inducible changes of upstream regulatory complexes, we present a model to explain how C1F and other upstream factors can synergistically activate grp78 transcription in calcium-depleted cells.
机译:哺乳动物GRP78 / BiP是一种应力诱导型78 kDa内质网(ER)蛋白,具有分子伴侣和钙结合特性。钙离子载体A23187对grp78的反式激活提供了一个模型系统,可用于研究信号转导,该信号转导使哺乳动物细胞能够感知细胞内储存物中的钙消耗并激活特定基因的转录。对grp78启动子的接头扫描突变分析表明,最重要的单个调节元件是C1,其包含最接近TATA序列的CCAAT基序。 C1元素对于在正常和压力条件下通过上游调节因子介导刺激作用至关重要。在本报告中,我们确定异源CCAAT结合因子CBF是人类细胞中C1结合因子(C1F)的主要成分。位于CCAAT序列两侧的GGAGG基序也有助于高亲和力C1F / CBF结合。我们在这里显示C1F的体外结合对钙离子的浓度敏感。在高钙离子浓度下,由于较高的解离速率,C1F结合活性较低。该结合特征与响应于细胞内钙存储的消耗而诱导的grp78转录相关。来自对照和处理过的细胞核提取物的C1F惊人相似的行为进一步表明,C1F本身在钙耗竭胁迫后不会发生任何重大的内在变化。而是,其结合性质可以通过在应激和非应激细胞中的直接钙离子环境来调节。基于C1F的体外和体内位点占用以及上游调节复合物的其他应激诱导变化,我们提出了一个模型来解释C1F和其他上游因子如何协同激活缺钙的细胞中的grp78转录。

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