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首页> 外文期刊>BMC Developmental Biology >Phosphoproteome analysis during larval development and metamorphosis in the spionid polychaete Pseudopolydora vexillosa
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Phosphoproteome analysis during larval development and metamorphosis in the spionid polychaete Pseudopolydora vexillosa

机译:脊突类多毛P类拟幼体发育和变态过程中的磷酸化蛋白质组分析

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Background The metamorphosis of the spionid polychaete Pseudopolydora vexillosa includes spontaneous settlement onto soft-bottom habitats and morphogenesis that can be completed in a very short time. A previous study on the total changes to the proteome during the various developmental stages of P. vexillosa suggested that little or no de novo protein synthesis occurs during metamorphosis. In this study, we used multicolor fluorescence detection of proteins in 2-D gels for differential analysis of proteins and phosphoproteins to reveal the dynamics of post-translational modification proteins in this species. A combination of affinity chromatography, 2D-PAGE, and mass spectrometry was used to identify the phosphoproteins in pre-competent larvae, competent larvae, and newly metamorphosed juveniles. Results We reproducibly detected 210, 492, and 172 phosphoproteins in pre-competent larvae, competent larvae, and newly metamorphosed juveniles, respectively. The highest percentage of phosphorylation was observed during the competent larval stage. About 64 stage-specific phosphoprotein spots were detected in the competent stage, and 32 phosphoproteins were found to be significantly differentially expressed in the three stages. We identified 38 phosphoproteins, 10 of which were differentially expressed during metamorphosis. These phosphoproteins belonged to six categories of biological processes: (1) development, (2) cell differentiation and integrity, (3) transcription and translation, (4) metabolism, (5) protein-protein interaction and proteolysis, and (6) receptors and enzymes. Conclusion This is the first study to report changes in phosphoprotein expression patterns during the metamorphosis of the marine polychaete P. vexillosa. The higher degree of phosphorylation during the process of attaining competence to settle and metamorphose may be due to fast morphological transitions regulated by various mechanisms. Our data are consistent with previous studies showing a high percentage of phosphorylation during competency in the barnacle Balanus amphitrite and the bryozoan Bugula neritina. The identified phosphoproteins may play an important role during metamorphosis, and further studies on the location and functions of important proteins during metamorphosis are warranted.
机译:背景脊突类多毛动物假单胞菌(Pseudopolydora vexillosa)的变态包括在软底生境上的自发沉降和可以在很短时间内完成的形态发生。先前关于埃塞俄比亚假单胞菌各个发育阶段蛋白质组总变化的研究表明,在变态过程中很少或没有从头合成蛋白质。在这项研究中,我们使用2-D凝胶中蛋白质的多色荧光检测技术对蛋白质和磷蛋白进行差异分析,以揭示该物种中翻译后修饰蛋白的动力学。亲和色谱,2D-PAGE和质谱的组合用于鉴定前能幼体,能幼体和新变态幼体中的磷蛋白。结果我们可重现地分别检测了前幼虫,幼虫和新变态幼虫中的210、492和172个磷蛋白。在感受态幼虫阶段观察到最高的磷酸化百分比。在感受态阶段中检测到约64个阶段特异性磷蛋白斑点,并且发现在这三个阶段中32种磷蛋白显着差异表达。我们鉴定出38种磷蛋白,其中10种在变态过程中差异表达。这些磷蛋白属于六类生物过程:(1)发育,(2)细胞分化和完整性,(3)转录和翻译,(4)代谢,(5)蛋白质-蛋白质相互作用和蛋白水解以及(6)受体和酶。结论这是第一个报告在海洋多毛小山羊藻变态过程中磷蛋白表达模式变化的研究。在达到沉降和变态能力的过程中,较高的磷酸化程度可能是由于各种机制调节的快速形态转变所致。我们的数据与先前的研究一致,该研究表明藤壶Balanus amphitrite和bryozoan Bugula neritina的竞争能力中磷酸化的百分比很高。鉴定出的磷蛋白可能在变态过程中起重要作用,因此有必要进一步研究重要蛋白在变态过程中的位置和功能。

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