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bgs13 突变对报告蛋白β-乳球蛋白结构的影响:对毕赤酵母中折叠和聚集的影响。

The effect of the bgs13 mutation on the structure of the reporter protein beta-lactoglobulin: Influence on folding and aggregation in Pichia pastoris.

机构信息

Department of Biological Sciences, University of the Pacific, Stockton, CA, 95211, USA.

Department of Chemistry, University of the Pacific, Stockton, CA, 95211, USA.

出版信息

Protein Expr Purif. 2023 Dec;212:106355. doi: 10.1016/j.pep.2023.106355. Epub 2023 Aug 19.

Abstract

Pichia pastoris, a methylotrophic yeast used for recombinant protein expression, has the capability of performing many eukaryotic post-translational modifications, growing to high cell densities, and producing proteins in a cost-effective manner. However, P. pastoris's secretion properties are not always efficient, and its secretory pathway mechanisms have not been thoroughly elucidated. A previously identified mutant strain, bgs13, was found to efficiently secrete most recombinant proteins tested, raising the possibility that this bgs13 mutant is a universal super secreter. In this study, we used a reporter protein, β-lactoglobulin (b-LG), to perform structural analysis of the protein secreted from wild type and mutant bgs13 strains to investigate the secretory mechanism. Primary, secondary, and tertiary structures of b-LG were examined using Edman sequencing, circular dichroism, tryptophan fluorescence, and temperature induced aggregation analysis. Our results demonstrate that the bgs13 produced more b-LG than the wt strain and that this protein was functionally folded similar to the wt. Surprisingly, we also found that the bgs13 b-LG was more resistant to aggregation, providing another example of the superior qualities of this strain for enhanced secreted protein production.

摘要

毕赤酵母是一种用于重组蛋白表达的甲醇营养型酵母,具有进行许多真核后翻译修饰、高密度生长和以具有成本效益的方式生产蛋白质的能力。然而,毕赤酵母的分泌特性并不总是高效的,其分泌途径机制也尚未完全阐明。先前鉴定的突变株 bgs13 被发现能够有效地分泌大多数测试的重组蛋白,这提高了这种 bgs13 突变株是通用超级分泌体的可能性。在这项研究中,我们使用报告蛋白β-乳球蛋白 (b-LG) 对来自野生型和突变体 bgs13 菌株的分泌蛋白进行结构分析,以研究分泌机制。使用 Edman 测序、圆二色性、色氨酸荧光和温度诱导聚集分析检查了 b-LG 的一级、二级和三级结构。我们的结果表明,bgs13 产生的 b-LG 比 wt 菌株多,并且该蛋白的功能折叠类似于 wt。令人惊讶的是,我们还发现 bgs13 b-LG 对聚集更具抵抗力,为该菌株用于增强分泌蛋白生产的卓越品质提供了另一个例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ded/10528908/e81c6fe972ef/nihms-1927561-f0001.jpg

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