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光激活分子纯化(LAMP)重组蛋白。

Light-Activated Molecular Purification (LAMP) of Recombinant Proteins.

机构信息

Chemical Engineering, IIT Gandhinagar, Gujarat 382355, India.

Biological Sciences and Engineering, IIT Gandhinagar, Gandhinagar 382355, India.

出版信息

Bioconjug Chem. 2024 Sep 18;35(9):1343-1351. doi: 10.1021/acs.bioconjchem.4c00284. Epub 2024 Sep 2.

Abstract

The production of recombinant proteins has become a focal point in biotechnology, with potential applications in catalysis, therapeutics, and diagnostics. Before their application, these proteins undergo cumbersome downstream processing, including multiple resin-based chromatography steps (ion exchange or affinity-based) to isolate the protein of interest from host cell proteins, which are more abundant. These methods often involve (1) nonspecific binding of host cell proteins onto the resin, (2) a trial and error approach in determining elution conditions for the protein of interest, and (3) complex functionalization of the resin. These processes are also further supplemented with additional processing steps including buffer exchange through dialysis or desalting. Despite the prevalence and need for proteins, challenges persist in optimizing elution conditions and minimizing downstream processing steps, which contribute to the overall cost, impeding their translation into the market. To address these challenges, there has been a growing interest in stimuli-responsive purification systems, which allow for precise control and modulation of the purification process for protein recovery by altering their properties or behavior in response to specific external conditions, such as heat, light, or chemicals. We have developed a light-activated molecular purification (LAMP) system, a stimuli-responsive chromatography technique where the purification of recombinant proteins is triggered by light. We employed a photocleavable protein (PhoCl1) that binds specifically to Ni-NTA resin through a hexa-histidine tag at its N-terminus. We harnessed the ability of PhoCl1 to undergo photocleavage into two fragments for the development of LAMP. To demonstrate LAMP, the protein of interest (POI) is genetically fused to the C-terminus of PhoCl1. The exposure to 405 nm light (1.5 mW cm for 12 h) results in the release of POI into the supernatant. We showcased the potential of LAMP by purifying highly charged green fluorescent proteins and an enzyme, riboflavin kinase. Our custom-built violet light LED setup achieved more than 50% light-induced photocleavage of the fusion constructs, resulting in the release of more than 30% of the POI into the supernatant, with the remainder retained within the resin. All the proteins purified using LAMP were more than 90% pure. Moreover, the comparison of the riboflavin kinase purified through LAMP and the traditional chromatography (Ni-NTA affinity method) revealed no significant changes in the activity levels. These highlight the broad potential of LAMP in providing a facile, yet robust stimuli-responsive protein purification technique, which leverages the potential of light to purify the proteins and overcome the limitations of current conventional chromatography systems.

摘要

重组蛋白的生产已经成为生物技术的一个焦点,具有在催化、治疗和诊断方面的潜在应用。在应用之前,这些蛋白质需要经过繁琐的下游处理,包括多次基于树脂的色谱步骤(离子交换或亲和),以从宿主细胞蛋白中分离出感兴趣的蛋白质,而宿主细胞蛋白的丰度更高。这些方法通常涉及:(1)宿主细胞蛋白非特异性地结合到树脂上,(2)通过反复试验来确定感兴趣的蛋白质的洗脱条件,以及(3)树脂的复杂功能化。这些过程还需要通过透析或脱盐等方法进行缓冲液交换等额外的处理步骤。尽管蛋白质的普遍性和需求很高,但在优化洗脱条件和最小化下游处理步骤方面仍然存在挑战,这些步骤会增加整体成本,阻碍它们推向市场。为了解决这些挑战,人们对刺激响应性纯化系统产生了越来越大的兴趣,这些系统允许通过改变其性质或行为来精确控制和调节蛋白质回收的纯化过程,以响应特定的外部条件,如热、光或化学物质。我们开发了一种光激活分子纯化(LAMP)系统,这是一种刺激响应性色谱技术,其中通过光触发重组蛋白的纯化。我们使用了一种光可裂解蛋白(PhoCl1),它通过其 N 端的六组氨酸标签特异性地结合到 Ni-NTA 树脂上。我们利用 PhoCl1 能够进行光裂解成两个片段的能力来开发 LAMP。为了演示 LAMP,感兴趣的蛋白质(POI)通过基因融合到 PhoCl1 的 C 端。暴露于 405nm 光(1.5mW cm,持续 12 小时)会导致 POI 释放到上清液中。我们通过纯化高电荷的绿色荧光蛋白和一种酶——核黄素激酶展示了 LAMP 的潜力。我们定制的紫光 LED 装置实现了融合构建体超过 50%的光诱导光裂解,导致超过 30%的 POI 释放到上清液中,其余的保留在树脂内。使用 LAMP 纯化的所有蛋白质的纯度都超过 90%。此外,通过 LAMP 和传统色谱(Ni-NTA 亲和方法)纯化的核黄素激酶的比较显示,其活性水平没有显著变化。这些结果突出了 LAMP 在提供一种简便而强大的刺激响应性蛋白质纯化技术方面的广泛潜力,该技术利用光的潜力来纯化蛋白质,并克服当前传统色谱系统的局限性。

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