Gyeonggi Science High School for the Gifted, Suwon, Gyeonggi, Republic of Korea.
PLoS One. 2024 May 31;19(5):e0304331. doi: 10.1371/journal.pone.0304331. eCollection 2024.
Quorum sensing can induce density-dependent gene expressions that cause various problems. For quorum-sensing inhibition, fundamental solutions such as gene manipulation are required, and acyl-homoserine lactone synthase (AHL synthase), which synthesizes the universal quorum-sensing signal of gram-negative bacteria, can be used as a target. In this study, researchers synthesized His-tagged AHL synthase and its deletion mutant that lacks the active site and compared their biochemical characteristics. His-YpeI, the 6x His-tagged AHL synthase of Serratia fonticola, and His-ΔYpeI, its deletion mutant, were designed, and their property conservation were examined using in silico projection tools. For in vitro synthesis of enzymes, the His-YpeI CFPS template was synthesized by in vitro gene synthesis, and the His-ΔYpeI CFPS template was obtained by deletion PCR. CFPS was performed and the products were purified with the 6x His-tag. The enzymes' properties were compared using an enzymatic assay. The bioinformatic analysis confirmed the conservation of biochemical properties between 6x His-tagged and untagged enzymes, including helix-turn-helix interactions, hydropathy profiles, and tertiary structure between His-YpeI and YpeI and between His-ΔYpeI and ΔYpeI. His-YpeI and His-ΔYpeI synthesized by CFPS were found to have the expected molecular weights and demonstrated distinct differences in enzyme activity. The analyzed enzymatic constants supported a significant decrease in substrate affinity and reaction rate as a result of YpeI's enzyme active site deletion. This result showed that CFPS could be used for in vitro protein synthesis, and quorum sensing could be inhibited at the enzymatic level due to the enzyme active site's deletion mutation.
群体感应会诱导密度依赖性基因表达,从而导致各种问题。为了抑制群体感应,需要采用基因操作等根本措施,酰基高丝氨酸内酯合酶(AHL 合酶)可以作为靶标,它可以合成革兰氏阴性菌的通用群体感应信号。在这项研究中,研究人员合成了带有 His 标签的 AHL 合酶及其缺乏活性位点的缺失突变体,并比较了它们的生化特性。设计了带有 His 标签的 Serratia fonticola AHL 合酶及其缺失突变体 His-ΔYpeI,并使用计算机模拟工具检查了它们的特性保守性。为了进行体外酶合成,通过体外基因合成合成了 His-YpeI CFPS 模板,并通过缺失 PCR 获得了 His-ΔYpeI CFPS 模板。进行了 CFPS,并使用 6x His 标签纯化产物。通过酶促测定比较了酶的特性。生物信息学分析证实了带有 His 标签和不带标签的酶之间生化特性的保守性,包括螺旋-转角-螺旋相互作用、疏水性图谱以及 His-YpeI 和 YpeI 之间以及 His-ΔYpeI 和 ΔYpeI 之间的三级结构。通过 CFPS 合成的 His-YpeI 和 His-ΔYpeI 被发现具有预期的分子量,并在酶活性方面表现出明显的差异。分析的酶常数支持由于 YpeI 的酶活性位点缺失而导致底物亲和力和反应速率显着降低的结果。该结果表明 CFPS 可用于体外蛋白质合成,并且由于酶活性位点的缺失突变,可以在酶水平上抑制群体感应。