Ureta Alejandro R, Endres Robert G, Wingreen Ned S, Silhavy Thomas J
Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.
J Bacteriol. 2007 Jan;189(2):446-54. doi: 10.1128/JB.01103-06. Epub 2006 Oct 27.
Outer membrane beta-barrel proteins in gram-negative bacteria, such as Escherichia coli, must be translocated from their site of synthesis in the cytoplasm to the periplasm and finally delivered to the outer membrane. At least a dozen proteins located in the cytoplasm, the periplasm, and both the inner and outer membranes are required to catalyze this complex assembly process. At normal growth temperatures and conditions the transport and assembly processes are so fast that assembly intermediates cannot be detected. Using cells grown at a low temperature to slow the assembly process and pulse-chase analysis with immunodetection methods, we followed newly synthesized LamB molecules during their transit through the cell envelope. The quality and reproducibility of the data allowed us to calculate rate constants for three different subassembly reactions. This kinetic analysis revealed that secB and secD mutants exhibit nearly identical defects in precursor translocation from the cytoplasm. However, subsequent subassembly reaction rates provided no clear evidence for an additional role for SecD in LamB assembly. Moreover, we found that surA mutants are qualitatively indistinguishable from yfgL mutants, suggesting that the products of both of these genes share a common function in the assembly process, most likely the delivery of LamB to the YaeT assembly complex in the outer membrane.
革兰氏阴性菌(如大肠杆菌)中的外膜β桶蛋白必须从其在细胞质中的合成位点转运至周质,最终递送至外膜。催化这一复杂组装过程至少需要位于细胞质、周质以及内膜和外膜中的十二种蛋白质。在正常生长温度和条件下,转运和组装过程非常迅速,以至于无法检测到组装中间体。利用在低温下生长的细胞来减缓组装过程,并采用免疫检测方法进行脉冲追踪分析,我们追踪了新合成的LamB分子在穿过细胞包膜过程中的情况。数据的质量和可重复性使我们能够计算三种不同亚组装反应的速率常数。这种动力学分析表明,secB和secD突变体在将前体从细胞质转运方面表现出几乎相同的缺陷。然而,随后的亚组装反应速率并未提供明确证据表明SecD在LamB组装中具有额外作用。此外,我们发现surA突变体与yfgL突变体在质量上无法区分,这表明这两个基因的产物在组装过程中具有共同功能,很可能是将LamB递送至外膜中的YaeT组装复合体。