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集胞藻PCC 6803质膜盐胁迫诱导变化的蛋白质组学筛选

Proteomic screening of salt-stress-induced changes in plasma membranes of Synechocystis sp. strain PCC 6803.

作者信息

Huang Fang, Fulda Sabine, Hagemann Martin, Norling Birgitta

机构信息

Department of Biochemistry and Biophysics, Arrhenius Laboratories for Natural Sciences, Stockholm University, Stockholm, Sweden.

出版信息

Proteomics. 2006 Feb;6(3):910-20. doi: 10.1002/pmic.200500114.

Abstract

The plasma membrane of a cyanobacterial cell is crucial as barrier against the outer medium. It is also an energy-transducing membrane as well as essential for biogenesis of cyanobacterial photosystems and the endo-membrane system. Previously we have identified 57 different proteins in the plasma membrane of control cells from Synechocystis sp. strain PCC6803. In the present work, proteomic screening of salt-stress proteins in the plasma membrane resulted in identification of 109 proteins corresponding to 66 different gene products. Differential and quantitative analyses of 2-DE profiles of plasma membranes isolated from both control and salt-acclimated cells revealed that twenty proteins were enhanced/induced and five reduced during salt stress. More than half of the enhanced/induced proteins were periplasmic binding proteins of ABC-transporters or hypothetical proteins. Proteins that exhibited the highest enhancement during salt stress include FutA1 (Slr1295) and Vipp1 (Sll0617), which have been suggested to be involved in protection of photosystem II under iron deficiency and in thylakoid membrane formation, respectively. Other salt-stress proteins were regulatory proteins such as PII protein, LrtA, and a protein that belongs to CheY subfamily. The physiological significance of the identified salt-stress proteins in the plasma membrane is discussed integrating our current knowledge on cyanobacterial stress physiology.

摘要

蓝藻细胞的质膜作为抵御外部介质的屏障至关重要。它也是一种能量转换膜,对于蓝藻光系统和内膜系统的生物合成也必不可少。此前我们已在集胞藻PCC6803对照细胞的质膜中鉴定出57种不同的蛋白质。在本研究中,对质膜中盐胁迫蛋白进行蛋白质组学筛选,结果鉴定出109种蛋白质,对应66种不同的基因产物。对从对照细胞和盐适应细胞中分离出的质膜进行双向电泳图谱的差异和定量分析显示,在盐胁迫期间,有20种蛋白质增加/被诱导,5种蛋白质减少。超过一半的增加/被诱导蛋白质是ABC转运蛋白的周质结合蛋白或假定蛋白。在盐胁迫期间表现出最高增加量的蛋白质包括FutA1(Slr1295)和Vipp1(Sll0617),它们分别被认为在缺铁条件下参与保护光系统II和类囊体膜形成。其他盐胁迫蛋白是调节蛋白,如PII蛋白、LrtA和属于CheY亚家族的一种蛋白。结合我们目前对蓝藻胁迫生理学的了解,讨论了质膜中已鉴定的盐胁迫蛋白的生理意义。

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