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Systematic Deletion Analysis of Fission Yeast Protein Kinases

机译:裂变酵母蛋白激酶的系统删除分析

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Eukaryotic protein kinases are key molecules mediating signal transduction that play a pivotal role in the regulation of various biological processes, including cell cycle progression, cellular morphogenesis, development, and cellular response to environmental changes. A total of 106 eukaryotic protein kinase catalytic-domain-containing proteins have been found in the entire fission yeast genome, 44% (or 64%) of which possess orthologues (or nearest homologues) in humans, based on sequence similarity within catalytic domains. Systematic deletion analysis of all putative protein kinase-encoding genes have revealed that 17 out of 106 were essential for viability, including three previously uncharacterized putative protein kinases. Although the remaining 89 protein kinase mutants were able to form colonies under optimal growth conditions, 46% of the mutants exhibited hypersensitivity to at least 1 of the 17 different stress factors tested. Phenotypic assessment of these mutants allowed us to arrange kinases into functional groups. Based on the results of this assay, we propose also the existence of four major signaling pathways that are involved in the response to 17 stresses tested. Microarray analysis demonstrated a significant correlation between the expression signature and growth phenotype of kinase mutants tested. Our complete microarray data sets are available at http://giscompute.gis.a-star.edu.sg/~gisljh/kinome.
机译:真核蛋白激酶是介导信号转导的关键分子,在各种生物学过程的调控中起着关键作用,包括细胞周期进程,细胞形态发生,发育以及细胞对环境变化的反应。在整个裂变酵母基因组中共发现了106种含真核蛋白激酶催化结构域的蛋白质,基于催化域内的序列相似性,其中44%(或64%)的人类具有直向同源物(或最接近的同源物)。对所有推定的蛋白激酶编码基因的系统缺失分析表明,在106种中,有17种是生存力所必需的,其中包括3种以前未表征的推定蛋白激酶。尽管其余的89个蛋白激酶突变体能够在最佳生长条件下形成菌落,但46%的突变体对所测试的17种不同应激因素中的至少1种表现出超敏性。这些突变体的表型评估使我们能够将激酶分为功能组。基于此测定的结果,我们还提出了存在四个主要信号通路,这些通路涉及对17种压力的反应。微阵列分析表明表达签名和测试的激酶突变体的生长表型之间的显着相关性。我们完整的微阵列数据集可在http://giscompute.gis.a-star.edu.sg/~gisljh/kinome获得。

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