Biochemistry and Biotechnology Group, Department of Biology, Biochemistry and Natural Sciences, Universitat Jaume I, 12071, Castellón de la Plana, Spain.
College of Science, Mathematics and Technology, Wenzhou-Kean University, Wenzhou, 325060, Zhejiang, China.
Sci Rep. 2023 Nov 20;13(1):20336. doi: 10.1038/s41598-023-47236-z.
The rise in antibiotic-resistant bacteria caused by the excessive use of antibiotics has led to the urgent exploration of alternative antimicrobial solutions. Among these alternatives, antimicrobial proteins, and peptides (Apps) have garnered attention due to their wide-ranging antimicrobial effects. This study focuses on evaluating the antimicrobial properties of Solanum lycopersicum heme-binding protein 2 (SlHBP2), an apoplastic protein extracted from tomato plants treated with 1-Methyl tryptophan (1-MT), against Pseudomonas syringae pv. tomato DC3000 (Pst). Computational studies indicate that SlHBP2 is annotated as a SOUL heme-binding family protein. Remarkably, recombinant SlHBP2 demonstrated significant efficacy in inhibiting the growth of Pst within a concentration range of 3-25 μg/mL. Moreover, SlHBP2 exhibited potent antimicrobial effects against other microorganisms, including Xanthomonas vesicatoria (Xv), Clavibacter michiganensis subsp. michiganensis (Cmm), and Botrytis cinerea. To understand the mechanism of action employed by SlHBP2 against Pst, various techniques such as microscopy and fluorescence assays were employed. The results revealed that SlHBP2 disrupts the bacterial cell wall and causes leakage of intracellular contents. To summarize, the findings suggest that SlHBP2 has significant antimicrobial properties, making it a potential antimicrobial agent against a wide range of pathogens. Although further studies are warranted to explore the full potential of SlHBP2 and its suitability in various applications.
抗生素的过度使用导致了抗生素耐药菌的上升,这促使人们迫切地探索替代抗菌解决方案。在这些替代品中,抗菌蛋白和肽(Apps)因其广泛的抗菌作用而受到关注。本研究专注于评估从经 1-甲基色氨酸(1-MT)处理的番茄植物中提取的质外体蛋白 Solanum lycopersicum 血红素结合蛋白 2(SlHBP2)对丁香假单胞菌 pv.番茄 DC3000(Pst)的抗菌特性。计算研究表明,SlHBP2被注释为 SOUL 血红素结合家族蛋白。值得注意的是,重组 SlHBP2 在 3-25μg/mL 的浓度范围内对 Pst 的生长具有显著的抑制效果。此外,SlHBP2 对其他微生物,如 Xanthomonas vesicatoria(Xv)、Clavibacter michiganensis subsp. michiganensis(Cmm)和 Botrytis cinerea,也表现出强大的抗菌作用。为了了解 SlHBP2 对 Pst 作用的机制,采用了显微镜和荧光分析等各种技术。结果表明,SlHBP2 破坏了细菌细胞壁并导致细胞内容物泄漏。总之,研究结果表明 SlHBP2 具有显著的抗菌特性,使其成为一种对抗多种病原体的潜在抗菌剂。尽管需要进一步的研究来探索 SlHBP2 的全部潜力及其在各种应用中的适用性。