首页> 美国卫生研究院文献>Journal of Bacteriology >SecB-independent export of Escherichia coli ribose-binding protein (RBP): some comparisons with export of maltose-binding protein (MBP) and studies with RBP-MBP hybrid proteins.
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SecB-independent export of Escherichia coli ribose-binding protein (RBP): some comparisons with export of maltose-binding protein (MBP) and studies with RBP-MBP hybrid proteins.

机译:不依赖SecB的大肠杆菌核糖结合蛋白(RBP)的出口:与麦芽糖结合蛋白(MBP)的出口的一些比较以及对RBP-MBP杂合蛋白的研究。

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摘要

The efficient export of the Escherichia coli maltose-binding protein (MBP) is known to be SecB dependent, whereas ribose-binding protein (RBP) export is SecB independent. When the MBP and RBP signal peptides were exchanged precisely at the signal peptidase processing sites, the resultant RBP-MBP and MBP-RBP hybrid proteins both were efficiently exported in SecB+ cells. However, only MBP-RBP was efficiently exported in SecB- cells; RBP-MBP exhibited a significant export defect, a finding that was consistent with previous proposals that SecB specifically interacts with the mature moiety of precursor MBP to promote export. The relatively slow, totally posttranslational export mode exhibited by certain mutant RBP and MBP-RBP species in SecB+ cells was not affected by the loss of SecB. In contrast, MBP and RBP-MBP species with similarly altered signal peptides were totally export defective in SecB- cells. Both export-defective MBP and RBP-MBP interfered with SecB-mediated protein export by depleting cells of functional SecB. In contrast, neither export-defective RBP nor MBP-RBP elicited such an interference effect. These and other data indicated that SecB is unable to interact with precursor RBP or that any interaction between these two proteins is considerably weaker than that of SecB with precursor MBP. In addition, no correlation could be established between a SecB requirement for export and PrlA-mediated suppression of signal peptide export defects. Finally, previous studies have established that wild-type MBP export can be accomplished cotranslationally, whereas wild-type RBP export is strictly a posttranslational process. In this study, cotranslational export was not detected for either MBP-RBP or RBP-MBP. This indicates that the export mode exhibited by a given precursor protein (cotranslational versus posttranslational) is determined by properties of both the signal peptide and the mature moiety.
机译:已知大肠杆菌麦芽糖结合蛋白(MBP)的有效出口是SecB依赖性的,而核糖结合蛋白(RBP)的出口则不依赖SecB。当MBP和RBP信号肽在信号肽酶加工位点精确交换时,所得的RBP-MBP和MBP-RBP杂合蛋白都有效地输出到SecB +细胞中。但是,只有MBP-RBP有效地输出到SecB细胞中。 RBP-MBP表现出严重的出口缺陷,这一发现与以前的提议一致,即SecB与前体MBP的成熟部分特异性相互作用以促进出口。 SecB +细胞中某些突变的RBP和MBP-RBP物种表现出的相对较慢的完全翻译后输出模式不受SecB丢失的影响。相反,具有类似改变的信号肽的MBP和RBP-MBP物质在SecB细胞中完全输出缺陷。出口缺陷型MBP和RBP-MBP都通过消耗功能性SecB的细胞来干扰SecB介导的蛋白质出口。相反,没有出口缺陷的RBP和MBP-RBP都不会引起这种干扰作用。这些和其他数据表明,SecB无法与前体RBP相互作用,或者这两种蛋白之间的任何相互作用都比具有前体MBP的SecB弱得多。此外,在出口的SecB要求与PrlA介导的信号肽出口缺陷抑制之间无法建立相关性。最后,先前的研究已经确定野生型MBP出口可以共翻译完成,而野生型RBP出口严格是翻译后过程。在这项研究中,未检测到MBP-RBP或RBP-MBP的共翻译输出。这表明由信号肽和成熟部分的特性决定了给定的前体蛋白表现出的输出模式(共翻译还是翻译后)。

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