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嗜盐栖热袍菌的蛋白质组学分析揭示了盐度介导的应激反应蛋白PspA的调控。

Proteomic analysis of Haloferax volcanii reveals salinity-mediated regulation of the stress response protein PspA.

作者信息

Bidle Kelly A, Kirkland P Aaron, Nannen Jennifer L, Maupin-Furlow Julie A

机构信息

Department of Biology, Rider University, Lawrenceville, NJ, USA.

Department of Microbiology and Cell Science, University of Florida, Gainesville, FL, USA.

出版信息

Microbiology (Reading). 2008 May;154(Pt 5):1436-1443. doi: 10.1099/mic.0.2007/015586-0.

Abstract

A proteomic survey of the halophilic archaeon Haloferax volcanii was performed by comparative two-dimensional gel electrophoresis in order to determine the molecular effects of salt stress on the organism. Cells were grown under optimal (2.1 M) and high (3.5 M) NaCl conditions. From this analysis, over 44 protein spots responsive to these conditions were detected. These spots were excised, digested in-gel with trypsin, subjected to QSTAR tandem mass spectrometry (LC/MS/MS) analysis, and identified by comparing the MS/MS-derived peptide sequence to that deduced from the H. volcanii genome. Approximately 40 % of the proteins detected (18 in total) displayed differential abundance based on the detection of at least two peptide fragments per protein and overall MOWSE scores of >or=75 per protein. All of these identified proteins were either uniquely present or 2.3- to 26-fold higher in abundance under one condition compared to the other. The majority of proteins identified in this study were preferentially displayed under optimal salinity and primarily involved in translation, transport and metabolism. However, one protein of interest whose transcript levels were confirmed in these studies to be upregulated under high salt conditions was identified as a homologue of the phage shock protein PspA. The pspA gene belongs to the psp stress-responsive regulon commonly found among Gram-negative bacteria where its transcription is stimulated by a wide variety of stressors, including heat shock, osmotic shock and prolonged stationary-phase incubation. Homologues of PspA are also found among the genomes of cyanobacteria, higher plants and other Archaea, suggesting that this protein may retain some aspects of functional conservation across the three domains of life. Given its integral role in sensing a variety of membrane stressors in bacteria, these results suggest that PspA may play an important role in hypersaline adaptation in H. volcanii.

摘要

为了确定盐胁迫对嗜盐古菌沃氏嗜盐菌的分子影响,通过比较二维凝胶电泳对其进行了蛋白质组学研究。细胞在最佳(2.1 M)和高(3.5 M)NaCl条件下生长。通过该分析,检测到超过44个对这些条件有反应的蛋白质斑点。这些斑点被切除,用胰蛋白酶进行胶内消化,进行QSTAR串联质谱(LC/MS/MS)分析,并通过将MS/MS衍生的肽序列与从沃氏嗜盐菌基因组推导的序列进行比较来鉴定。基于每个蛋白质至少检测到两个肽片段以及每个蛋白质的总体MOWSE分数≥75,检测到的蛋白质中约40%(总共18个)显示出丰度差异。所有这些鉴定出的蛋白质在一种条件下要么是独特存在的,要么其丰度比另一种条件下高2.3至26倍。在本研究中鉴定出的大多数蛋白质在最佳盐度下优先显示,并且主要参与翻译、运输和代谢。然而,在这些研究中其转录水平在高盐条件下被证实上调的一种感兴趣的蛋白质被鉴定为噬菌体休克蛋白PspA的同源物。pspA基因属于革兰氏阴性细菌中常见的psp应激反应调节子,在革兰氏阴性细菌中其转录受到多种应激源的刺激,包括热休克、渗透压休克和长时间的稳定期培养。在蓝细菌、高等植物和其他古菌的基因组中也发现了PspA的同源物,这表明该蛋白质可能在生命的三个域中保留了一些功能保守的方面。鉴于其在细菌中感知多种膜应激源的不可或缺的作用,这些结果表明PspA可能在沃氏嗜盐菌的高盐适应中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1ae/2459321/0d18daf933d1/nihms52403f1.jpg

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