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一株新型产胆固醇毕赤酵母菌株是表达人 Na,K-ATPase α3β1 同工型的理想宿主。

A novel cholesterol-producing Pichia pastoris strain is an ideal host for functional expression of human Na,K-ATPase α3β1 isoform.

机构信息

Institute of Molecular Biotechnology, Graz University of Technology, Petersgasse 14/2, 8010, Graz, Austria.

出版信息

Appl Microbiol Biotechnol. 2013 Nov;97(21):9465-78. doi: 10.1007/s00253-013-5156-7. Epub 2013 Aug 17.

DOI:10.1007/s00253-013-5156-7
PMID:23955473
Abstract

The heterologous expression of mammalian membrane proteins in lower eukaryotes is often hampered by aberrant protein localization, structure, and function, leading to enhanced degradation and, thus, low expression levels. Substantial quantities of functional membrane proteins are necessary to elucidate their structure-function relationships. Na,K-ATPases are integral, human membrane proteins that specifically interact with cholesterol and phospholipids, ensuring protein stability and enhancing ion transport activity. In this study, we present a Pichia pastoris strain which was engineered in its sterol pathway towards the synthesis of cholesterol instead of ergosterol to foster the functional expression of human membrane proteins. Western blot analyses revealed that cholesterol-producing yeast formed enhanced and stable levels of human Na,K-ATPase α3β1 isoform. ATPase activity assays suggested that this Na,K-ATPase isoform was functionally expressed in the plasma membrane. Moreover, [(3)H]-ouabain cell surface-binding studies underscored that the Na,K-ATPase was present in high numbers at the cell surface, surpassing reported expression strains severalfold. This provides evidence that the humanized sterol composition positively influenced Na,K-ATPase α3β1 stability, activity, and localization to the yeast plasma membrane. Prospectively, cholesterol-producing yeast will have high potential for functional expression of many mammalian membrane proteins.

摘要

哺乳动物膜蛋白在较低等真核生物中的异源表达常因蛋白质定位、结构和功能异常而受阻,导致降解增强,从而表达水平较低。需要大量有功能的膜蛋白来阐明其结构-功能关系。Na,K-ATPase 是一种完整的人类膜蛋白,它与胆固醇和磷脂特异性相互作用,确保蛋白质稳定性并增强离子转运活性。在这项研究中,我们构建了一株毕赤酵母工程菌株,该菌株在甾醇途径中被设计为合成胆固醇而不是麦角固醇,以促进人类膜蛋白的功能性表达。Western blot 分析表明,产生胆固醇的酵母形成了增强和稳定的人 Na,K-ATPase α3β1 同工型水平。ATPase 活性测定表明,这种 Na,K-ATPase 同工型在质膜中具有功能性表达。此外,[(3)H]-哇巴因细胞表面结合研究强调,Na,K-ATPase 以高数量存在于细胞表面,是已报道的表达菌株的数倍以上。这表明人源化固醇组成对 Na,K-ATPase α3β1 的稳定性、活性和质膜定位有积极影响。有前景的是,产生胆固醇的酵母将具有很高的潜力用于许多哺乳动物膜蛋白的功能性表达。

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