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理解调控蛋白机制在 III 类 Ocins 异源表达中的必要性。

Understanding the Necessity of Regulatory Protein Machinery in Heterologous Expression of Class-III Type of Ocins.

机构信息

Department of Microbiology and Fermentation Technology, CSIR-CFTRI, Mysore, India.

, Mysore, India.

出版信息

Protein J. 2023 Aug;42(4):239-252. doi: 10.1007/s10930-023-10106-8. Epub 2023 Mar 28.

Abstract

To date, there have been no or just a few reports of successful cloning and expression to create biologically active ocins or bacteriocins. Cloning, expression, and production of class I ocins are problematic because of their structural arrangements, coordinated functions, size, and posttranslational modifications. Mass synthesis of these molecules is necessary for commercialization and to restrict the excessive use of conventional antibiotics, which encourages the development of antibiotic-resistant bacteria. In the case of class III ocins, there are no reports of obtaining biological active proteins to date. Being able to obtain biologically active proteins requires an understanding of mechanistic features due to their expanding importance and broad spectrum of activity. As a result, we intend to clone and express the class III type. The class I types that are devoid of posttranslational modifications were transformed into class III through fusion. Therefore, this construct resembles a class III type ocin. With the exception of Zoocin, expression of the proteins was found to be physiologically ineffective after cloning. But, few cell morphological changes such as elongation, aggregation, and the formation of terminal hyphae were observed. However, it was discovered that the target indicator had been altered to Vibrio spp. in a few. All the three ocins were subjected to in-silico structure prediction/analysis. Finally, we confirm the existence of unidentified additional intrinsic factors for successful expression to obtain biologically active protein.

摘要

迄今为止,成功克隆和表达以产生具有生物活性的ocin 或细菌素的报道很少或几乎没有。由于结构排列、协调功能、大小和翻译后修饰,I 类ocin 的克隆、表达和生产存在问题。这些分子的大规模合成对于商业化和限制常规抗生素的过度使用是必要的,因为常规抗生素的过度使用会鼓励抗生素耐药菌的发展。就 III 类ocin 而言,目前还没有获得具有生物活性的蛋白质的报道。由于其重要性不断扩大和广谱活性,要获得具有生物活性的蛋白质就需要了解其机制特征。因此,我们打算克隆和表达 III 类。通过融合,将缺乏翻译后修饰的 I 类类型转化为 III 类。因此,这种构建体类似于 III 类ocin。除了 Zoocin 之外,克隆后发现这些蛋白质的表达在生理上是无效的。但是,观察到了一些细胞形态变化,如伸长、聚集和末端菌丝的形成。然而,发现少数情况下目标指示物已改变为弧菌属。所有三种ocin 都进行了计算机结构预测/分析。最后,我们确认存在未识别的其他内在因素,以确保成功表达获得具有生物活性的蛋白质。

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