首页> 外文期刊>Journal of Cell Science >Binding of 14-3-3 beta but not 14-3-3 sigma controls the cytoplasmic localization of CDC25B: binding site preferences of 14-3-3 subtypes and the subcellular localization of CDC25B
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Binding of 14-3-3 beta but not 14-3-3 sigma controls the cytoplasmic localization of CDC25B: binding site preferences of 14-3-3 subtypes and the subcellular localization of CDC25B

机译:结合14-3-3 beta但不结合14-3-3σ控制CDC25B的细胞质定位:14-3-3亚型的结合位点偏好和CDC25B的亚细胞定位

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The dual specificity phosphatase CDC25B positively controls the G2-M transition by activating CDK1/cyclin B. The binding of 14-3-3 to CDC25B has been shown to regulate the subcellular redistribution of CDC25B from the nucleus to the cytoplasm and may be correlated with the G2 checkpoint. We used a FLAG-tagged version of CDC25B to study the differences among the binding sites for the 14-3-3 subtypes, 14-3-3beta, 14-3-3epsilon and 14-3-3sigma, and the relationship between subtype binding and the subcellular localization of CDC25B. All three subtypes were found to bind to CDC25B. Site-directed mutagenesis studies revealed that 14-3-3beta bound exclusively near serine-309 of CDC25B1, which is within a potential consensus motif for 14-3-3 binding. By contrast, 14-3-3sigma bound preferentially to a site around serine-216, and the presence of serine-137 and -309 enhanced the binding. In addition to these binding-site differences, we found that the binding of 14-3-3beta drove CDC25B to the cytoplasm and that mutation of serine-309 to alanine completely abolished the cytoplasmic localization of CDC25B. However, co-expression of 14-3-3sigma and CDC25B did not affect the subcellular localization of CDC25B. Furthermore, serine-309 of CDC25B was sufficient to produce its cytoplasmic distribution with co-expression of 14-3-3beta, even when other putative 14-3-3 binding sites were mutated. 14-3-3e resembled 14-3-3beta with regard to its binding to CDC25B and the control of CDC25B subcellular localization. The results of the present study indicate that two 14-3-3 subtypes can control the subcellular localization of CDC25B by binding to a specific site and that 14-3-3sigma has effects on CDC25B other than the control of its subcellular localization.
机译:双重特异性磷酸酶CDC25B通过激活CDK1 / cyclin B来积极控制G2-M的转变。14-3-3与CDC25B的结合已显示出可调节CDC25B从细胞核到细胞质的亚细胞再分布,并且可能与G2检查点。我们使用带有FLAG标签的CDC25B版本研究了14-3-3亚型,14-3-3beta,14-3-3epsilon和14-3-3sigma的结合位点之间的差异,以及亚型结合之间的关系和CDC25B的亚细胞定位。发现所有三种亚型都结合CDC25B。定点诱变研究显示14-3-3β仅在CDC25B1的丝氨酸309附近结合,这在14-3-3结合的潜在共有基序内。相反,14-3-3sigma优先结合到丝氨酸216周围的位点,丝氨酸137和-309的存在增强了结合。除了这些结合位点差异外,我们发现14-3-3β的结合将CDC25B驱动到细胞质,而丝氨酸309向丙氨酸的突变完全消除了CDC25B的细胞质定位。但是,14-3-3sigma和CDC25B的共表达不影响CDC25B的亚细胞定位。此外,即使其他假定的14-3-3结合位点发生突变,CDC25B的丝氨酸309也足以产生其与14-3-3β共表达的胞质分布。 14-3-3e在结合CDC25B和控制CDC25B亚细胞定位方面类似于14-3-3beta。本研究的结果表明,两个14-3-3亚型可以通过与特定位点结合来控制CDC25B的亚细胞定位,并且14-3-3sigma除对CDC25B的亚细胞定位控制外,还对CDC25B具有影响。

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