Derouiche R, Bénédetti H, Lazzaroni J C, Lazdunski C, Lloubès R
Laboratoire d'Ingénierie et de Dynamique des Systèmes Membranaires, CNRS, Marseille, France.
J Biol Chem. 1995 May 12;270(19):11078-84. doi: 10.1074/jbc.270.19.11078.
The TolA, TolB, TolQ, and TolR proteins are involved in maintaining the integrity of the Escherichia coli outer membrane and in the import of group A colicins and filamentous phage DNA. TolA, TolQ, and TolR are localized in the inner membrane while TolB is periplasmic, although a small amount of membrane-associated TolB is always found. In vivo cross-linking experiments with formaldehyde were performed in order to determine the proteins interacting with TolA. In wild-type strains, two specific complexes of 65 and 71 kDa, comprising TolA, were identified. These complexes were absent in a tolQ strain, while only the 65-kDa complex was absent in a tolR strain. When the tol strains were transformed with plasmids encoding TolR or TolQ, the specific complexes were restored. Moreover, immunoprecipitation experiments with the antiserum directed against TolA indicated that TolQ and TolR were co-immunoprecipitated with TolA after cross-linking. These data demonstrate that TolA interacts directly with TolR and TolQ. Two truncated TolA proteins devoid of either the C-terminal or the central domains of the protein were subjected to in vivo cross-linking. Since these two TolA derivatives still formed specific complexes with TolR derivatives still formed specific complexes with TolR and TolQ, we concluded that the TolA N-terminal domain interacted with these proteins.
TolA、TolB、TolQ和TolR蛋白参与维持大肠杆菌外膜的完整性以及A群大肠杆菌素和丝状噬菌体DNA的导入。TolA、TolQ和TolR定位于内膜,而TolB位于周质,不过总能发现少量与膜相关的TolB。为了确定与TolA相互作用的蛋白,进行了甲醛体内交联实验。在野生型菌株中,鉴定出了两种由TolA组成的分别为65 kDa和71 kDa的特异性复合物。在tolQ菌株中不存在这些复合物,而在tolR菌株中仅65 kDa的复合物不存在。当用编码TolR或TolQ的质粒转化tol菌株时,特异性复合物得以恢复。此外,用针对TolA的抗血清进行的免疫沉淀实验表明,交联后TolQ和TolR与TolA共免疫沉淀。这些数据证明TolA直接与TolR和TolQ相互作用。对两种缺失该蛋白C末端或中央结构域的截短TolA蛋白进行了体内交联。由于这两种TolA衍生物仍与TolR衍生物形成特异性复合物,仍与TolR和TolQ形成特异性复合物,我们得出结论,TolA的N末端结构域与这些蛋白相互作用。