Comparison of the Proteome of Staphylococcus aureus Planktonic Culture and 3-Day Biofilm Reveals Potential Role of Key Proteins in Biofilm

Hygiene Pub Date : 2024-07-03 DOI:10.3390/hygiene4030020
Md. Arifur Rahman, A. Amirkhani, Durdana Chowdhury, Karen Vickery, Honghua Hu
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Abstract

Staphylococcus aureus and coagulase-negative staphylococci account for about 80% of infections associated with medical devices and are associated with increased virulence due to their ability to form biofilm. In this study, we aimed to construct a comprehensive reference map followed by significant pathway analysis in the proteome of S. aureus biofilm grown for 3 days compared with 24 h of planktonic culture using a high-resolution Tandem Mass Tag (TMT)-based MS. We identified proteins associated with secondary metabolites, ABC transporters, biosynthesis of amino acids, and response to stress, and amino sugar and nucleotide sugar metabolism were significantly upregulated in 3-day biofilm. In contrast, proteins associated with virulence factors, microbial metabolism in diverse environments, secondary metabolites, translation, and energy metabolism were significantly downregulated. GO functional annotation indicated that more proteins are involved in metabolic processes, catalytic activity, and binding in biofilm, respectively. Among the significantly dysregulated proteins, hyaluronidase (hysA) in conjunction with chitinase may play a significant role in the elimination and/or prevention of biofilm development. This study advances the understanding of the S. aureus subproteome, identifying potential pathways significant to biofilm biology. The insights gained may aid in developing new therapeutic strategies, including antibiofilm agents, for treating biofilm-related infections associated with implantable medical devices.
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金黄色葡萄球菌浮游培养物和 3 天生物膜蛋白质组的比较揭示了关键蛋白质在生物膜中的潜在作用
金黄色葡萄球菌和凝固酶阴性葡萄球菌约占与医疗器械相关感染的 80%,由于它们能够形成生物膜,因此毒力增强。在这项研究中,我们旨在构建一个全面的参考图谱,然后使用基于高分辨率串联质量标签(TMT)的质谱仪,对生长 3 天的金黄色葡萄球菌生物膜与生长 24 小时的浮游生物培养物的蛋白质组进行重要的通路分析。我们发现了与次生代谢产物、ABC 转运体、氨基酸的生物合成和应激反应有关的蛋白质,其中氨基糖和核苷酸糖代谢在 3 天生物膜中显著上调。相反,与毒力因子、微生物在不同环境中的新陈代谢、次生代谢产物、翻译和能量代谢相关的蛋白质则明显下调。GO 功能注释表明,生物膜中参与代谢过程、催化活性和结合的蛋白质较多。在明显失调的蛋白质中,透明质酸酶(hysA)与几丁质酶可能在消除和/或预防生物膜发展中发挥重要作用。这项研究增进了对金黄色葡萄球菌亚蛋白质组的了解,确定了对生物膜生物学具有重要意义的潜在通路。所获得的见解可能有助于开发新的治疗策略,包括抗生物膜制剂,以治疗与植入式医疗器械相关的生物膜相关感染。
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