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λΔS遗传背景下异源孔蛋白的功能分析

Functional analysis of heterologous holin proteins in a lambdaDeltaS genetic background.

作者信息

Vukov N, Scherer S, Hibbert E, Loessner M J

机构信息

Institut für Mikrobiologie, Forschungszentrum für Milch und Lebensmittel, Weihenstephan, Technische Universität München, Weihenstephaner Berg 3, D-85350, Freising, Germany.

出版信息

FEMS Microbiol Lett. 2000 Mar 15;184(2):179-86. doi: 10.1111/j.1574-6968.2000.tb09011.x.

Abstract

Holins are small hydrophobic proteins causing non-specific membrane lesions at the end of bacteriophage multiplication, to promote access of the murein hydrolase to their substrate. We have established a lambdaDeltaS genetic system, which enables functional expression of holins from various phages in an isogenic phage lambda background, and allows qualitative evaluation of their ability to support lysis of Escherichia coli cells. Synthesis of Holins is under control of native lambda transcription and translation initiation signals, and the temperature-sensitive CIts857 repressor. A number of different holins were tested in this study. The opposing action of phage lambda S105 and S107 holin variants in lysis timing could be confirmed, whereas we found evidence for a functionally non-homologous dual translational start motif in the Listeria phage Hol500 holin, i.e., the Hol500-96 polypeptide starting at Met-1 revealed a more distinct lytic activity as compared to the shorter product Hol500-93. The largest holin known, HolTW from a Staphylococcus aureus phage, revealed an early lysis phenotype in the lambdaDeltaSthf background, which conferred a plaque forming defect due to premature lysis. Mutant analysis revealed that an altered C-terminus and/or a V52L substitution were sufficient to delay lysis and enable plaque formation. These results suggest that the extensively charged HolTW C-terminus may be important in regulation of lysis timing. The gene 17.5 product of E. coli phage T7 was found to support sudden, saltatory cell lysis in the lambdaDeltaSthf background, which clearly confirms its holin character. In conclusion, lambdaDeltaSthf offers a useful genetic tool for studying the structure-function relationship of the extremely heterogeneous group of holin protein orthologs.

摘要

穿孔素是一类小的疏水蛋白,在噬菌体增殖末期引起非特异性膜损伤,以促进胞壁质水解酶接近其底物。我们建立了一个λΔS遗传系统,该系统能够在同基因噬菌体λ背景下功能性表达来自各种噬菌体的穿孔素,并允许对其支持大肠杆菌细胞裂解的能力进行定性评估。穿孔素的合成受天然λ转录和翻译起始信号以及温度敏感型CIts857阻遏物的控制。本研究中测试了多种不同的穿孔素。可以证实噬菌体λ S105和S107穿孔素变体在裂解时间上的相反作用,而我们发现李斯特菌噬菌体Hol500穿孔素中存在功能上非同源的双重翻译起始基序的证据,即从Met-1开始的Hol500-96多肽与较短的产物Hol500-93相比,具有更明显的裂解活性。已知最大的穿孔素,来自金黄色葡萄球菌噬菌体的HolTW,在λΔSthf背景下表现出早期裂解表型,由于过早裂解导致噬菌斑形成缺陷。突变分析表明,C末端改变和/或V52L取代足以延迟裂解并使噬菌斑形成。这些结果表明,带大量电荷的HolTW C末端可能在裂解时间的调节中起重要作用。发现大肠杆菌噬菌体T7的基因17.5产物在λΔSthf背景下支持突然的、跳跃式的细胞裂解,这清楚地证实了其穿孔素特性。总之,λΔSthf为研究极其异质的穿孔素蛋白直系同源物组的结构-功能关系提供了一个有用的遗传工具。

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