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首页> 外文期刊>PLoS One >Efficacy of signal peptide predictors in identifying signal peptides in the experimental secretome of Picrophilous torridus , a thermoacidophilic archaeon
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Efficacy of signal peptide predictors in identifying signal peptides in the experimental secretome of Picrophilous torridus , a thermoacidophilic archaeon

机译:信号肽预测因子在菌丝托里达斯实验沉淀中鉴定信号肽的疗效,热酸痛

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摘要

Secretory proteins are important for microbial adaptation and survival in a particular environment. Till date, experimental secretomes have been reported for a few archaea. In this study, we have identified the experimental secretome of Picrophilous torridus and evaluated the efficacy of various signal peptide predictors (SPPs) in identifying signal peptides (SPs) in its experimental secretome. Liquid chromatography mass spectrometric (LC MS) analysis was performed for three independent P . torridus secretome samples and only those proteins which were common in the three experiments were selected for further analysis. Thus, 30 proteins were finally included in this study. Of these, 10 proteins were identified as hypothetical/uncharacterized proteins. Gene Ontology, KEGG and STRING analyses revealed that majority of the sercreted proteins and/or their interacting partners were involved in different metabolic pathways. Also, a few proteins like malate dehydrogenase ( {"type":"entrez-protein","attrs":{"text":"Q6L0C3","term_id":"51316148","term_text":"Q6L0C3"}} Q6L0C3 ) were multi-functional involved in different metabolic pathways like carbon metabolism, microbial metabolism in diverse environments, biosynthesis of antibiotics, etc. Multi-functionality of the secreted proteins reflects an important aspect of thermoacidophilic adaptation of P . torridus which has the smallest genome (1.5 Mbp) among nonparasitic aerobic microbes. SPPs like, PRED-SIGNAL, SignalP 5.0, PRED-TAT and LipoP 1.0 identified SPs in only a few secreted proteins. This suggests that either these SPPs were insufficient, or N-terminal SPs were absent in majority of the secreted proteins, or there might be alternative mechanisms of protein translocation in P . torridus .
机译:分泌蛋白对特定环境中的微生物适应和存活是重要的。迄今为止,据报道了少数古代古典的实验探索。在该研究中,我们鉴定了CoRrophilous Torriidus的实验沉淀,并评估了各种信号肽预测器(SPP)在其实验沉淀中鉴定信号肽(SPS)的疗效。液相色谱质谱(LC MS)分析用于三个独立的p。选择渗透肠样品和仅在三个实验中常见的蛋白质进行进一步分析。因此,在本研究中最终包括30个蛋白质。其中,将10个蛋白质被鉴定为假设/非特征蛋白质。基因本体,Kegg和String分析显示大多数血清蛋白和/或其互动伴侣参与了不同的代谢途径。此外,一些丙酸酯脱氢酶等蛋白质({“型”:“entrez-incotfer”,“attrs”:{“text”:“q6l0c3”,“term_id”:“51316148”,“term_text”:“Q6L0C3”}} Q6L0C3)是多功能涉及不同代谢途径,如碳代谢,多种环境中的微生物代谢,抗生素的生物合成等。分泌蛋白质的多官能度反映了P的热酸化适应的重要方面。在非嗜酸性有氧微生物中具有最小的基因组(1.5Mbp)的猪肉。 SPPS等,PRED信号,信号分5.0,PRED-TAT和LIPOP 1.0仅在几个分泌的蛋白质中识别SPS。这表明这些SPP不足,或者在大多数分泌蛋白中没有N-末端SP,或者可能存在p中蛋白质易位的替代机制。托里达斯。

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