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麦芽糖结合蛋白(MBP)信号肽亲水片段的改变,这会影响MBP的输出或翻译。

Alterations in the hydrophilic segment of the maltose-binding protein (MBP) signal peptide that affect either export or translation of MBP.

作者信息

Puziss J W, Harvey R J, Bassford P J

机构信息

Department of Microbiology and Immunology, School of Medicine, University of North Carolina, Chapel Hill 27514.

出版信息

J Bacteriol. 1992 Oct;174(20):6488-97. doi: 10.1128/jb.174.20.6488-6497.1992.

Abstract

Mutations that reduce the net positive charge within the hydrophilic segments of the signal peptides of several prokaryotic exported proteins can result in a reduction in the rate of protein export, as well as a reduction in protein synthesis (M. N. Hall, J. Gabay, and M. Shwartz, EMBO J. 2:15-19, 1983; S. Inouye, X. Soberon, T. Franceschini, K. Nakamura, K. Itakura, and M. Inouye, Proc. Natl. Acad. Sci. USA 79:3438-3441, 1982; J. W. Puziss, J. D. Fikes, and P. J. Bassford, Jr., J. Bacteriol. 171:2302-2311, 1989). This result has been interpreted as evidence that the hydrophilic segment is part of a mechanism that obligatorily couples translation to protein export. We have investigated the role of the hydrophilic segment of the Escherichia coli maltose-binding protein (MBP) signal peptide in the export and synthesis of MBP. Deletion of the entire hydrophilic segment from the MBP signal peptide resulted in a defect in MBP export, as well as a dramatic reduction in total MBP synthesis. Suppressor mutations that lie upstream of the malE coding region were isolated. These mutations do not affect MBP export but instead were shown to partially restore MBP synthesis by increasing the efficiency of MBP translational initiation. In addition, analysis of a series of substitution mutations in the second codon of certain malE alleles demonstrated that MBP export and synthesis can be independently affected by mutations in the hydrophilic segment. Finally, analysis of alterations in the hydrophilic segment of the ribose-binding protein signal peptide fused to the mature moiety of the MBP has revealed that the role of the hydrophilic segment in the export process can be functionally separated from any role in translation. Taken together, these results strongly suggest that the hydrophilic segment of the MBP signal peptide is not involved in a mechanism that couples MBP translation to export and argue against the presence of a mechanism that obligatorily couples translation to protein export in Escherichia coli.

摘要

几种原核生物输出蛋白信号肽亲水段内净正电荷减少的突变,可导致蛋白质输出速率降低以及蛋白质合成减少(M. N. 霍尔、J. 加贝和M. 施瓦茨,《欧洲分子生物学组织杂志》2:15 - 19,1983;S. 井上、X. 索贝龙、T. 弗朗切斯基尼、K. 中村、K. 板仓和M. 井上,《美国国家科学院院刊》79:3438 - 3441,1982;J. W. 普齐斯、J. D. 菲克斯和P. J. 巴斯福德, Jr.,《细菌学杂志》171:2302 - 2311,1989)。这一结果被解释为亲水段是将翻译与蛋白质输出强制偶联机制的一部分的证据。我们研究了大肠杆菌麦芽糖结合蛋白(MBP)信号肽亲水段在MBP输出和合成中的作用。从MBP信号肽中删除整个亲水段导致MBP输出缺陷,以及总MBP合成显著减少。分离出位于malE编码区域上游的抑制突变。这些突变不影响MBP输出,但通过提高MBP翻译起始效率显示可部分恢复MBP合成。此外,对某些malE等位基因第二个密码子的一系列取代突变分析表明,MBP输出和合成可独立受亲水段突变影响。最后,对与MBP成熟部分融合的核糖结合蛋白信号肽亲水段变化的分析表明,亲水段在输出过程中的作用可在功能上与翻译中的任何作用分离。综上所述,这些结果强烈表明MBP信号肽的亲水段不参与将MBP翻译与输出偶联的机制,并反对大肠杆菌中存在将翻译与蛋白质输出强制偶联的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49d4/207610/9a641e075a1d/jbacter00086-0182-a.jpg

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