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Comparative analysis of the Spirulina platensis subcellular proteome in response to low- and high-temperature stresses: uncovering cross-talk of signaling components

机译:螺旋藻亚细胞蛋白质组响应低温和高温胁迫的比较分析:发现信号成分的串扰

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摘要

The present study focused on comparative proteome analyses of low- and high-temperature stresses and potential protein-protein interaction networks, constructed by using a bioinformatics approach, in response to both stress conditions.The data revealed two important points: first, the results indicate that low-temperature stress is tightly linked with oxidative stress as well as photosynthesis; however, no specific mechanism is revealed in the case of the high-temperature stress response. Second, temperature stress was revealed to be linked with nitrogen and ammonia assimilation. Moreover, the data also highlighted the cross-talk of signaling pathways. Some of the detected signaling proteins, e.g., Hik14, Hik26 and Hik28, have potential interactions with differentially expressed proteins identified in both temperature stress conditions. Some differentially expressed proteins found in the Spirulina protein-protein interaction network were also examined for their physical interactions by a yeast two hybrid system (Y2H). The Y2H results obtained in this study suggests that the potential PPI network gives quite reliable potential interactions for Spirulina. Therefore, the bioinformatics approach employed in this study helps in the analysis of phenomena where proteome analyses of knockout mutants have not been carried out to directly examine for specificity or cross-talk of signaling components.
机译:本研究着重于通过低温和高温胁迫的蛋白质组分析以及通过生物信息学方法构建的,针对两种胁迫条件的潜在蛋白质-蛋白质相互作用网络。数据揭示了两个重要的观点:首先,结果表明低温胁迫与氧化胁迫以及光合作用紧密相关;然而,在高温应力响应的情况下,没有揭示具体的机理。第二,揭示了温度应力与氮和氨的吸收有关。此外,数据还突出了信号通路的串扰。一些检测到的信号蛋白,例如Hik14,Hik26和Hik28,与在两种温度胁迫条件下鉴定出的差异表达蛋白都有潜在的相互作用。螺旋藻蛋白质-蛋白质相互作用网络中发现的一些差异表达的蛋白质也通过酵母2杂交系统(Y2H)检查了它们的物理相互作用。在这项研究中获得的Y2H结果表明,潜在的PPI网络为螺旋藻提供了非常可靠的潜在相互作用。因此,本研究中使用的生物信息学方法有助于分析现象,在这些现象中,尚未进行基因组突变体的蛋白质组分析以直接检查信号传导成分的特异性或串扰。

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