Key Laboratory of Photobiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.
J Proteome Res. 2012 Jan 1;11(1):502-14. doi: 10.1021/pr200811s. Epub 2011 Nov 16.
Cyanobacteria are the only prokaryotes possessing plasma, thylakoid, and outer membranes. The plasma membrane of a cyanobacterial cell is essential for the biogenesis of cyanobacterial photosystems and serves as a barrier against environmental stress. We previously identified dozens of salt-responsive proteins in the plasma membrane of Synechocystis sp. PCC 6803. Five histidine kinases (Hiks) including Hik33 were also proposed to be involved in the perception of salt stress in Synechocystis. In this study, we analyzed proteomic profiles of the plasma membrane from a hik33-knockout mutant (ΔHik33) under normal and salt-stress conditions. Using 2D-DIGE followed by mass spectrometry analysis, we identified 26 differentially expressed proteins in ΔHik33 mutant cells. Major changes, due to the Hik33 mutation, included the substrate-binding proteins of ABC transporters, such as GgtB and FutA1, regulatory proteins including MorR and Rre13, as well as several hypothetical proteins. Under salt-stress conditions, the Hik33 mutation reduced levels of 7 additional proteins, such as NrtA, nitrate/sulfonate/bicarbonate-binding protein and LexA, and enhanced levels of 9 additional proteins including SphX. These observations suggest a substantial rearrangement in the plasma membrane proteome of Synechocystis due to the loss of hik33. Furthermore, a comprehensive molecular network was revealed in ΔHik33 mutant coping with salt stress.
蓝藻是唯一具有质膜、类囊体膜和外膜的原核生物。蓝藻细胞的质膜对于蓝藻光合系统的生物发生至关重要,并且作为抵御环境胁迫的屏障。我们之前在集胞藻 PCC 6803 的质膜中鉴定了数十种对盐响应的蛋白质。还提出了包括 Hik33 在内的五个组氨酸激酶(Hiks)参与了集胞藻对盐胁迫的感知。在这项研究中,我们分析了正常和盐胁迫条件下 hik33 敲除突变体(ΔHik33)质膜的蛋白质组图谱。通过 2D-DIGE 结合质谱分析,我们在ΔHik33 突变细胞中鉴定出 26 个差异表达的蛋白质。由于 Hik33 突变,主要的变化包括 ABC 转运体的底物结合蛋白,如 GgtB 和 FutA1,调节蛋白,如 MorR 和 Rre13,以及几个假定蛋白。在盐胁迫条件下,Hik33 突变降低了 7 种额外蛋白质的水平,如 NrtA、硝酸盐/亚硫酸盐/碳酸氢盐结合蛋白和 LexA,并增加了 9 种额外蛋白质的水平,如 SphX。这些观察结果表明,由于 hik33 的缺失,集胞藻的质膜蛋白质组发生了实质性的重排。此外,还揭示了 ΔHik33 突变体在应对盐胁迫时的综合分子网络。