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利用比较蛋白质组学确定大肠杆菌伴侣蛋白SecB的作用。

Defining the role of the Escherichia coli chaperone SecB using comparative proteomics.

作者信息

Baars Louise, Ytterberg A Jimmy, Drew David, Wagner Samuel, Thilo Claudia, van Wijk Klaas Jan, de Gier Jan-Willem

机构信息

Department of Biochemistry and Biophysics, Arrhenius Laboratories, Stockholm University SE-106 91 Stockholm, Sweden.

出版信息

J Biol Chem. 2006 Apr 14;281(15):10024-34. doi: 10.1074/jbc.M509929200. Epub 2005 Dec 13.

Abstract

To improve understanding and identify novel substrates of the cytoplasmic chaperone SecB in Escherichia coli, we analyzed a secB null mutant using comparative proteomics. The secB null mutation did not affect cell growth but caused significant differences at the proteome level. In the absence of SecB, dynamic protein aggregates containing predominantly secretory proteins accumulated in the cytoplasm. Unprocessed secretory proteins were detected in radiolabeled whole cell lysates. Furthermore, the assembly of a large fraction of the outer membrane proteome was slowed down, whereas its steady state composition was hardly affected. In response to aggregation and delayed sorting of secretory proteins, cytoplasmic chaperones DnaK, GroEL/ES, ClpB, IbpA/B, and HslU were up-regulated severalfold, most likely to stabilize secretory proteins during their delayed translocation and/or rescue aggregated secretory proteins. The SecB/A dependence of 12 secretory proteins affected by the secB null mutation (DegP, FhuA, FkpA, OmpT, OmpX, OppA, TolB, TolC, YbgF, YcgK, YgiW, and YncE) was confirmed by "classical" pulse-labeling experiments. Our study more than triples the number of known SecB-dependent secretory proteins and shows that the primary role of SecB is to facilitate the targeting of secretory proteins to the Sec-translocase.

摘要

为了增进对大肠杆菌胞质伴侣蛋白SecB的理解并鉴定其新底物,我们利用比较蛋白质组学分析了secB基因敲除突变体。secB基因敲除突变不影响细胞生长,但在蛋白质组水平上造成了显著差异。在缺乏SecB的情况下,主要包含分泌蛋白的动态蛋白质聚集体在细胞质中积累。在放射性标记的全细胞裂解物中检测到未加工的分泌蛋白。此外,大部分外膜蛋白质组的组装速度减慢,而其稳态组成几乎未受影响。作为对分泌蛋白聚集和分选延迟的响应,胞质伴侣蛋白DnaK、GroEL/ES、ClpB、IbpA/B和HslU上调了几倍,很可能是为了在分泌蛋白延迟转运期间稳定它们和/或拯救聚集的分泌蛋白。通过“经典”脉冲标记实验证实了12种受secB基因敲除突变影响的分泌蛋白(DegP、FhuA、FkpA、OmpT、OmpX、OppA、TolB、TolC,YbgF、YcgK、YgiW和YncE)对SecB/A的依赖性。我们的研究使已知的SecB依赖性分泌蛋白数量增加了两倍多,并表明SecB的主要作用是促进分泌蛋白靶向Sec转位酶。

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