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利用酵母蛋白质组微阵列对肺孢子菌蛋白激酶 PcCbk1 和 PcSte20 进行底物分析,为肺孢子菌信号生物学提供了一种新方法。

Substrate analysis of the Pneumocystis carinii protein kinases PcCbk1 and PcSte20 using yeast proteome microarrays provides a novel method for Pneumocystis signalling biology.

机构信息

Thoracic Diseases Research Unit, Department of Medicine and Biochemistry, 8-24 Stabile, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Yeast. 2011 Oct;28(10):707-19. doi: 10.1002/yea.1900. Epub 2011 Sep 8.

Abstract

Pneumocystis carinii (Pc) undergoes morphological transitions between cysts and trophic forms. We have previously described two Pc serine/threonine kinases, termed PcCbk1 and PcSte20, with PcSte20 belonging to a family of kinases involved in yeast mating, while PcCbk1 is a member of a group of protein kinases involved in regulation of cell cycle, shape, and proliferation. As Pc remains genetically intractable, knowledge on specific substrates phosphorylated by these kinases remains limited. Utilizing the phylogenetic relatedness of Pc to Saccharomyces cerevisiae, we interrogated a yeast proteome microarray containing >4000 purified protein based peptides, leading to the identification of 18 potential PcCbk1 and 15 PcSte20 substrates (Z-score > 3.0). A number of these potential protein substrates are involved in bud site selection, polarized growth, and response to mating α factor and pseudohyphal and invasive growth. Full-length open reading frames suggested by the PcCbk1 and PcSte20 protoarrays were amplified and expressed. These five proteins were used as substrates for PcCbk1 or PcSte20, with each being highly phosphorylated by the respective kinase. Finally, to demonstrate the utility of this method to identify novel PcCbk1 and PcSte20 substrates, we analysed DNA sequence data from the partially complete Pc genome database and detected partial sequence information of potential PcCbk1 kinase substrates PcPxl1 and PcInt1. We additionally identified the potential PcSte20 kinase substrate PcBdf2. Full-length Pc substrates were cloned and expressed in yeast, and shown to be phosphorylated by the respective Pc kinases. In conclusion, the yeast protein microarray represents a novel crossover technique for identifying unique potential Pc kinase substrates.

摘要

卡氏肺孢子虫(Pc)在囊肿和营养体形式之间发生形态转变。我们之前描述了两种 Pc 丝氨酸/苏氨酸激酶,称为 PcCbk1 和 PcSte20,其中 PcSte20 属于参与酵母交配的激酶家族,而 PcCbk1 是参与细胞周期、形态和增殖调节的蛋白激酶群的成员。由于 Pc 在遗传上仍然难以处理,因此这些激酶磷酸化的特定底物的知识仍然有限。利用 Pc 与酿酒酵母的系统发育关系,我们研究了包含>4000 种基于纯蛋白肽的酵母蛋白质组微阵列,从而鉴定出 18 种潜在的 PcCbk1 和 15 种 PcSte20 底物(Z 分数>3.0)。这些潜在的蛋白质底物中有许多涉及芽位点选择、极化生长以及对交配α因子和假菌丝及侵袭性生长的反应。由 PcCbk1 和 PcSte20 原微阵列提示的全长开放阅读框被扩增和表达。这五个蛋白质被用作 PcCbk1 或 PcSte20 的底物,每个蛋白质都被相应的激酶高度磷酸化。最后,为了证明这种方法用于鉴定新型 PcCbk1 和 PcSte20 底物的有效性,我们分析了部分完整的 Pc 基因组数据库中的 DNA 序列数据,并检测到潜在的 PcCbk1 激酶底物 PcPxl1 和 PcInt1 的部分序列信息。我们还鉴定了潜在的 PcSte20 激酶底物 PcBdf2。全长 Pc 底物在酵母中被克隆和表达,并显示被相应的 Pc 激酶磷酸化。总之,酵母蛋白质微阵列代表了一种用于鉴定独特潜在 Pc 激酶底物的新型交叉技术。

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