Scotti P A, Valent Q A, Manting E H, Urbanus M L, Driessen A J, Oudega B, Luirink J
Department of Microbiology, Institute of Molecular Biological Sciences, Biocentrum Amsterdam, De Boelelaan 1087, 1081 HV Amsterdam, The Netherlands.
J Biol Chem. 1999 Oct 15;274(42):29883-8. doi: 10.1074/jbc.274.42.29883.
In Escherichia coli, signal recognition particle (SRP)-dependent targeting of inner membrane proteins has been described. In vitro cross-linking studies have demonstrated that short nascent chains exposing a highly hydrophobic targeting signal interact with the SRP. This SRP, assisted by its receptor, FtsY, mediates the transfer to a common translocation site in the inner membrane that contains SecA, SecG, and SecY. Here we describe a further in vitro reconstitution of SRP-mediated membrane insertion in which purified ribosome-nascent chain-SRP complexes are targeted to the purified SecYEG complex contained in proteoliposomes in a process that requires the SRP-receptor FtsY and GTP. We found that in this system SecA and ATP are dispensable for both the transfer of the nascent inner membrane protein FtsQ to SecY and its stable membrane insertion. Release of the SRP from nascent FtsQ also occurred in the absence of SecYEG complex indicating a functional interaction of FtsY with lipids. These data suggest that SRP/FtsY and SecB/SecA constitute distinct targeting routes.
在大肠杆菌中,已描述了信号识别颗粒(SRP)依赖性内膜蛋白的靶向作用。体外交联研究表明,暴露高度疏水靶向信号的短新生链与SRP相互作用。这种SRP在其受体FtsY的协助下,介导转移至内膜中包含SecA、SecG和SecY的共同易位位点。在此,我们描述了SRP介导的膜插入的进一步体外重建,其中纯化的核糖体 - 新生链 - SRP复合物靶向脂质体中包含的纯化SecYEG复合物,该过程需要SRP受体FtsY和GTP。我们发现,在该系统中,SecA和ATP对于新生内膜蛋白FtsQ向SecY的转移及其稳定的膜插入均非必需。在没有SecYEG复合物的情况下,SRP也会从新生的FtsQ上释放,这表明FtsY与脂质之间存在功能相互作用。这些数据表明,SRP/FtsY和SecB/SecA构成了不同的靶向途径。