Refolding, Crystallization, and Crystal Structure Analysis of a Scavenger Receptor Cysteine-Rich Domain of Human Salivary Agglutinin Expressed in Escherichia coli

被引:0
作者
Changyu Zhang
Peng Lu
Sibo Wei
Chaoyue Hu
Mitsuko Miyoshi
Ken Okamoto
Hideaki Itoh
Suguru Okuda
Michio Suzuki
Hiroshi Kawakami
Koji Nagata
机构
[1] The University of Tokyo,Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences
[2] Kyoritsu Women’s University,Department of Food Science and Nutrition, Faculty of Home Economics
[3] The University of Tokyo,Agricultural Bioinformatics Research Unit, Graduate School of Agricultural and Life Sciences
[4] The University of Tokyo,Research Center for Food Safety, Graduate School of Agricultural and Life Sciences
来源
The Protein Journal | 2024年 / 43卷
关键词
Crystal structure; Multiple disulfide bonds; Scavenger receptor; SRCRD; SHuffle T7; Refolding;
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学科分类号
摘要
Scavenger receptors are a protein superfamily that typically consists of one or more repeats of the scavenger receptor cysteine-rich structural domain (SRCRD), which is an ancient and highly conserved protein module. The expression and purification of eukaryotic proteins containing multiple disulfide bonds has always been challenging. The expression systems that are commonly used to express SRCRD proteins mainly consist of eukaryotic protein expression systems. Herein, we established a high-level expression strategy of a Type B SRCRD unit from human salivary agglutinin using the Escherichia coli expression system, followed by a refolding and purification process. The untagged recombinant SRCRD was expressed in E. coli using the pET-32a vector, which was followed by a refolding process using the GSH/GSSG redox system. The SRCRD expressed in E. coli SHuffle T7 showed better solubility after refolding than that expressed in E. coli BL21(DE3), suggesting the importance of the disulfide bond content prior to refolding. The quality of the refolded protein was finally assessed using crystallization and crystal structure analysis. As proteins refolded from inclusion bodies exhibit a high crystal quality and reproducibility, this method is considered a reliable strategy for SRCRD protein expression and purification. To further confirm the structural integrity of the refolded SRCRD protein, the purified protein was subjected to crystallization using sitting-drop vapor diffusion method. The obtained crystals of SRCRD diffracted X-rays to a resolution of 1.47 Å. The solved crystal structure appeared to be highly conserved, with four disulfide bonds appropriately formed. The surface charge distribution of homologous SRCRD proteins indicates that the negatively charged region at the surface is associated with their calcium-dependent ligand recognition. These results suggest that a high-quality SRCRD protein expressed by E. coli SHuffle T7 can be successfully folded and purified, providing new options for the expression of members of the scavenger receptor superfamily.
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页码:283 / 297
页数:14
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