Kim J, Lee Y, Kim C, Park C
Department of Life Science, Korea Advanced Institute of Science and Technology, Yuseong-Ku, Daejun.
J Bacteriol. 1992 Aug;174(16):5219-27. doi: 10.1128/jb.174.16.5219-5227.1992.
Ribose-binding protein (RBP) is an exported protein of Escherichia coli that functions in the periplasm. The export of RBP involves the secretion machinery of the cell, consisting of a cytoplasmic protein, SecA, and the integral membrane translocation complex, including SecE and SecY. SecB protein, a chaperone known to mediate the export of some periplasmic and outer membrane proteins, was previously reported not to be involved in RBP translocation even though small amounts of in vitro complexes between SecB and RBP have been detected. In our investigation, it was shown that a dependence on SecB could be demonstrated under conditions in which export was compromised. Species of RBP which carry two mutations, one in the leader that blocks export and a second in the mature protein which partially suppresses the export defect, were shown to be affected by SecB for efficient translocation. Five different changes which suppress the effect of the signal sequence mutation -17LP are all located in the N domain of the tertiary structure of RBP. All species of RBP show similar interaction with SecB. Furthermore, a leaky mutation, -14AE, generated by site-specific mutagenesis causes reduced export in the absence of SecB. These results indicate that SecB can interact with RBP during secretion, although it is not absolutely required under normal circumstances.
核糖结合蛋白(RBP)是大肠杆菌的一种输出蛋白,在周质中发挥作用。RBP的输出涉及细胞的分泌机制,该机制由一种细胞质蛋白SecA和包括SecE和SecY的整合膜转运复合体组成。SecB蛋白是一种已知可介导一些周质和外膜蛋白输出的伴侣蛋白,尽管已检测到SecB与RBP之间存在少量体外复合物,但先前报道其不参与RBP的转运。在我们的研究中,结果表明在输出受损的条件下可以证明对SecB的依赖性。携带两个突变的RBP种类,一个在阻止输出的前导序列中,另一个在部分抑制输出缺陷的成熟蛋白中,结果显示SecB会影响其有效转运。抑制信号序列突变-17LP效应的五种不同变化均位于RBP三级结构的N结构域中。所有种类的RBP与SecB都表现出相似的相互作用。此外,通过定点诱变产生的渗漏突变-14AE在没有SecB的情况下会导致输出减少。这些结果表明,SecB在分泌过程中可以与RBP相互作用,尽管在正常情况下它并非绝对必需。