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人增长激素包涵体呈现出天然样的二级和三级结构,这些结构可以通过温和的溶解来保存,以便进行重折叠。

Human growth hormone inclusion bodies present native-like secondary and tertiary structures which can be preserved by mild solubilization for refolding.

机构信息

Centro de Biotecnologia, Instituto de Pesquisas Energéticas e Nucleares, IPEN-CNEN/SP, São Paulo, SP, Brazil.

Departamento de Bioquímica, Instituto de Química da Universidade de São Paulo, São Paulo, SP, Brazil.

出版信息

Microb Cell Fact. 2022 Aug 17;21(1):164. doi: 10.1186/s12934-022-01887-1.

Abstract

BACKGROUND

Native-like secondary structures and biological activity have been described for proteins in inclusion bodies (IBs). Tertiary structure analysis, however, is hampered due to the necessity of mild solubilization conditions. Denaturing reagents used for IBs solubilization generally lead to the loss of these structures and to consequent reaggregation due to intermolecular interactions among exposed hydrophobic domains after removal of the solubilization reagent. The use of mild, non-denaturing solubilization processes that maintain existing structures could allow tertiary structure analysis and increase the efficiency of refolding.

RESULTS

In this study we use a variety of biophysical methods to analyze protein structure in human growth hormone IBs (hGH-IBs). hGH-IBs present native-like secondary and tertiary structures, as shown by far and near-UV CD analysis. hGH-IBs present similar λ intrinsic Trp fluorescence to the native protein (334 nm), indicative of a native-like tertiary structure. Similar fluorescence behavior was also obtained for hGH solubilized from IBs and native hGH at pH 10.0 and 2.5 kbar and after decompression. hGH-IBs expressed in E. coli were extracted to high yield and purity (95%) and solubilized using non-denaturing conditions [2.4 kbar, 0.25 M arginine (pH 10), 10 mM DTT]. After decompression, the protein was incubated at pH 7.4 in the presence of the glutathione-oxidized glutathione (GSH-GSSG) pair which led to intramolecular disulfide bond formation and refolded hGH (81% yield).

CONCLUSIONS

We have shown that hGH-IBs present native-like secondary and tertiary structures and that non-denaturing methods that aim to preserve them can lead to high yields of refolded protein. It is likely that the refolding process described can be extended to different proteins and may be particularly useful to reduce the pH required for alkaline solubilization.

摘要

背景

天然类似的二级结构和生物活性已在包涵体 (IB) 中的蛋白质中被描述。然而,由于需要温和的溶解条件,三级结构分析受到阻碍。用于溶解 IBs 的变性试剂通常会导致这些结构的丢失,并且由于在去除溶解试剂后暴露的疏水区之间的分子间相互作用,导致随后的再聚集。使用温和的、非变性的溶解过程来维持现有结构,可以允许进行三级结构分析并提高复性效率。

结果

在这项研究中,我们使用各种生物物理方法来分析人生长激素包涵体 (hGH-IBs) 中的蛋白质结构。如远紫外和近紫外 CD 分析所示,hGH-IBs 呈现出天然类似的二级和三级结构。hGH-IBs 表现出与天然蛋白质相似的 λ 固有色氨酸荧光(334nm),表明具有天然类似的三级结构。在 pH 10.0 和 2.5kbar 以及减压后,从 IBs 中溶解的 hGH 和天然 hGH 也表现出类似的荧光行为。在大肠杆菌中表达的 hGH 以高得率和纯度(95%)提取,并在非变性条件下(2.4kbar、0.25M 精氨酸(pH10)、10mM DTT)溶解。减压后,在谷胱甘肽-氧化型谷胱甘肽 (GSH-GSSG) 对存在的情况下,将蛋白质在 pH7.4 下孵育,导致分子内二硫键形成和复性 hGH(81%收率)。

结论

我们已经表明 hGH-IBs 呈现天然类似的二级和三级结构,并且旨在保留这些结构的非变性方法可以导致高收率的复性蛋白质。所描述的复性过程很可能可以扩展到不同的蛋白质,并且可能特别有助于降低碱性溶解所需的 pH 值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e72e/9382763/70fbcdf2ed04/12934_2022_1887_Fig1_HTML.jpg

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