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嗜热栖热放线菌噬菌体vB_Tsc2631的高度耐热性Ts2631内溶素催化位点的生化特性及验证

Biochemical Characterization and Validation of a Catalytic Site of a Highly Thermostable Ts2631 Endolysin from the Thermus scotoductus Phage vB_Tsc2631.

作者信息

Plotka Magdalena, Kaczorowska Anna-Karina, Morzywolek Agnieszka, Makowska Joanna, Kozlowski Lukasz P, Thorisdottir Audur, Skírnisdottir Sigurlaug, Hjörleifsdottir Sigridur, Fridjonsson Olafur H, Hreggvidsson Gudmundur O, Kristjansson Jakob K, Dabrowski Slawomir, Bujnicki Janusz M, Kaczorowski Tadeusz

机构信息

Department of Microbiology, University of Gdansk, Gdansk, Poland.

Collection of Plasmids and Microorganisms, University of Gdansk, Gdansk, Poland.

出版信息

PLoS One. 2015 Sep 16;10(9):e0137374. doi: 10.1371/journal.pone.0137374. eCollection 2015.

Abstract

Phage vB_Tsc2631 infects the extremophilic bacterium Thermus scotoductus MAT2631 and uses the Ts2631 endolysin for the release of its progeny. The Ts2631 endolysin is the first endolysin from thermophilic bacteriophage with an experimentally validated catalytic site. In silico analysis and computational modelling of the Ts2631 endolysin structure revealed a conserved Zn2+ binding site (His30, Tyr58, His131 and Cys139) similar to Zn2+ binding site of eukaryotic peptidoglycan recognition proteins (PGRPs). We have shown that the Ts2631 endolysin lytic activity is dependent on divalent metal ions (Zn2+ and Ca2+). The Ts2631 endolysin substitution variants H30N, Y58F, H131N and C139S dramatically lost their antimicrobial activity, providing evidence for the role of the aforementioned residues in the lytic activity of the enzyme. The enzyme has proven to be not only thermoresistant, retaining 64.8% of its initial activity after 2 h at 95°C, but also highly thermodynamically stable (Tm = 99.82°C, ΔHcal = 4.58 × 10(4) cal mol(-1)). Substitutions of histidine residues (H30N and H131N) and a cysteine residue (C139S) resulted in variants aggregating at temperatures ≥75°C, indicating a significant role of these residues in enzyme thermostability. The substrate spectrum of the Ts2631 endolysin included extremophiles of the genus Thermus but also Gram-negative mesophiles, such as Escherichia coli, Salmonella panama, Pseudomonas fluorescens and Serratia marcescens. The broad substrate spectrum and high thermostability of this endolysin makes it a good candidate for use as an antimicrobial agent to combat Gram-negative pathogens.

摘要

噬菌体vB_Tsc2631感染嗜热细菌嗜热栖热菌MAT2631,并利用Ts2631内溶素释放其后代。Ts2631内溶素是来自嗜热噬菌体的首个具有经实验验证的催化位点的内溶素。对Ts2631内溶素结构的计算机分析和计算建模揭示了一个保守的Zn2+结合位点(His30、Tyr58、His131和Cys139),类似于真核肽聚糖识别蛋白(PGRPs)的Zn2+结合位点。我们已经表明,Ts2631内溶素的裂解活性依赖于二价金属离子(Zn2+和Ca2+)。Ts2631内溶素替代变体H30N、Y58F、H131N和C139S显著丧失了它们的抗菌活性,为上述残基在该酶裂解活性中的作用提供了证据。该酶已被证明不仅耐热,在95°C下2小时后仍保留其初始活性的64.8%,而且具有高度的热力学稳定性(Tm = 99.82°C,ΔHcal = 4.58 × 10(4) cal mol(-1))。组氨酸残基(H30N和H131N)和半胱氨酸残基(C139S)的替代导致变体在≥75°C的温度下聚集,表明这些残基在酶的热稳定性中起重要作用。Ts2631内溶素的底物谱包括嗜热栖热菌属的嗜热菌,也包括革兰氏阴性嗜温菌,如大肠杆菌、巴拿马沙门氏菌、荧光假单胞菌和粘质沙雷氏菌。这种内溶素广泛的底物谱和高热稳定性使其成为对抗革兰氏阴性病原体的抗菌剂的良好候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3d2/4573324/020eeef795bf/pone.0137374.g001.jpg

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