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单一二硫键结合的球状蛋白错误折叠成一种低溶解性的物种,其构象和生物物理性质与天然蛋白明显不同。

Misfolding of a Single Disulfide Bonded Globular Protein into a Low-Solubility Species Conformationally and Biophysically Distinct from the Native One.

机构信息

Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology (TUAT), Tokyo 184-8588, Japan.

NMR Facility, Division of Structural and Synthetic Biology, Center for Life Science Technologies, RIKEN, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama City, Kanagawa 230-0045, Japan.

出版信息

Biomolecules. 2019 Jun 25;9(6):250. doi: 10.3390/biom9060250.

Abstract

In practice and despite Anfinsen's dogma, the refolding of recombinant multiple SS-bonded proteins is famously difficult because misfolded species with non-native SS-bonds appear upon the oxidization of their cysteine residues. On the other hand, single SS-bond proteins are thought to be simple to refold because their cysteines have only one SS-bond partner. Here, we report that dengue 4 envelope protein domain 3 (DEN4 ED3), a single SS-bonded protein can be irreversibly trapped into a misfolded species through the formation of its sole intramolecular SS-bond. The misfolded species had a much lower solubility than the native one at pHs higher than about 7, and circular dichroism measurements clearly indicated that its secondary structure content was different from the native species. Furthermore, the peaks in the Heteronuclear Single Quantum Correlation spectroscopy (HSQC) spectrum of DEN4 ED3 from the supernatant fraction were sharp and well dispersed, reflecting the beta-sheeted native structure, whereas the spectrum of the precipitated fraction showed broad signals clustered near its center suggesting no or little structure and a strong tendency to aggregate. The two species had distinct biophysical properties and could interconvert into each other only by cleaving and reforming the SS-bond, strongly suggesting that they are topologically different. This phenomenon can potentially happen with any single SS-bonded protein, and our observation emphasizes the need for assessing the conformation and biophysical properties of bacterially produced therapeutic proteins in addition to their chemical purities.

摘要

在实践中,尽管 Anfinsen 的教条认为,重组的多 SS 键合蛋白的重折叠是非常困难的,因为在氧化其半胱氨酸残基时,会出现具有非天然 SS 键的错误折叠物种。另一方面,人们认为单 SS 键蛋白很容易重折叠,因为它们的半胱氨酸只有一个 SS 键伴侣。在这里,我们报告登革热 4 型包膜蛋白结构域 3(DEN4 ED3),一种单 SS 键合蛋白可以通过其唯一的分子内 SS 键的形成不可逆地被困在错误折叠的物种中。在 pH 值高于约 7 的情况下,错误折叠的物种的溶解度远低于天然物种,圆二色性测量清楚地表明其二级结构含量与天然物种不同。此外,上清液部分的 DEN4 ED3 的异核单量子相关光谱(HSQC)谱中的峰尖锐且分散良好,反映了β折叠的天然结构,而沉淀部分的谱则显示出聚集在其中心附近的宽信号,表明没有或很少有结构,并且强烈倾向于聚集。这两种物质具有不同的物理化学性质,只有通过切割和重新形成 SS 键才能相互转化,这强烈表明它们在拓扑上是不同的。这种现象可能发生在任何单 SS 键合蛋白中,我们的观察强调需要评估除化学纯度之外,细菌产生的治疗性蛋白的构象和物理化学性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4280/6627273/a84949ab9de6/biomolecules-09-00250-g001.jpg

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