首页> 美国卫生研究院文献>Biochemical Journal >Expression of the calcium-binding proteins MRP8 and MRP14 in monocytes is regulated by a calcium-induced suppressor mechanism.
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Expression of the calcium-binding proteins MRP8 and MRP14 in monocytes is regulated by a calcium-induced suppressor mechanism.

机译:钙结合蛋白MRP8和MRP14在单核细胞中的表达受钙诱导的抑制机制调节。

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摘要

MRP8 and MRP14 are two calcium-binding proteins of the S-100 family the expression of which is restricted to distinct stages of monocytic differentiation. Heteromeric MRP8/MRP14 complexes have been shown to represent their biologically active forms. However, it is not as yet clear whether biochemical modification of complexes, or regulation on the transcriptional level, are responsible for the control of MRP8/MRP14 expression. Employing Western-blot analysis and metabolic labelling we have demonstrated that patterns and metabolism of MRP8/MRP14 complexes do not change during up- or down-regulation of MRP8/MRP14. By Northern-blot analysis it was shown that MRP8/MRP14 are regulated at the transcriptional level rather than by biochemical modification of the complexes. Elevation of intracellular calcium levels by A23187, as well as by thapsigargin, was found to lead to specific down-regulation of MRP8/MRP14 mRNA which is in contrast with data reported for inflammatory factors such as interleukin-1 or tumour necrosis factor alpha. Concomitant application of actinomycin D and calcium ionophore indicated that this suppressive effect is mediated by decreased synthesis rather than increased degradation of MRP8/MRP14 mRNA. Finally, we demonstrated that calcium-mediated down-regulation of MRP8-MRP14 can be antagonized by cycloheximide, suggesting that a calcium-induced repressor protein is responsible for suppression of MRP8-MRP14 at the transcriptional level. Our data indicate that the function of MRP8-MRP14 is restricted to events associated with early stages of myelomonocytic activation.
机译:MRP8和MRP14是S-100家族的两个钙结合蛋白,其表达仅限于单核细胞分化的不同阶段。异源MRP8 / MRP14复合物已显示出其生物活性形式。但是,目前尚不清楚复合物的生化修饰或转录水平的调控是否负责MRP8 / MRP14表达的控制。使用Western印迹分析和代谢标记,我们已经证明MRP8 / MRP14复合物的模式和代谢在MRP8 / MRP14上调或下调期间不会改变。通过Northern-blot分析表明,MRP8 / MRP14在转录水平而不是通过对复合物的生化修饰来调控。发现A23187和毒胡萝卜素引起的细胞内钙水平升高会导致MRP8 / MRP14 mRNA的特异性下调,这与炎症因子(如白介素-1或肿瘤坏死因子α)报道的数据相反。放线菌素D和钙离子载体的同时应用表明这种抑制作用是由合成减少而不是MRP8 / MRP14 mRNA降解增加所介导的。最后,我们证明了环己酰亚胺可拮抗钙介导的MRP8-MRP14的下调,提示钙诱导的阻遏蛋白在转录水平上可抑制MRP8-MRP14。我们的数据表明,MRP8-MRP14的功能仅限于与骨髓单核细胞活化早期有关的事件。

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