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Mistic’s membrane association and its assistance in overexpression of a human GPCR are independent processes

机译:Mistic的膜结合及其在人类GPCR过表达中的协助是独立的过程

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摘要

The interaction of the B. subtilis protein Mistic with the bacterial membrane as well as its role in promoting the overexpression of other membrane proteins are still matters of debate. In this study, we aimed to determine whether individual helical fragments of Mistic are sufficient for its interaction with membranes in vivo and in vitro. To this end, fragments encompassing each of Mistic’s helical segments and combinations of them were produced as GFP-fusions, and their cellular localization was studied in E. coli. Furthermore, peptides corresponding to the four helical fragments were synthesized by solid-phase peptide synthesis, and their ability to acquire secondary structure in a variety of lipids and detergents was studied by circular dichroism spectroscopy. Both types of experiments demonstrate that the third helical fragment of Mistic interacts only with LDAO micelles but does not partition into lipid bilayers. Interestingly, the other three helices interact with membranes in vivo and in vitro. Nevertheless, all of these short sequences can replace full-length Mistic as N-terminal fusions to achieve overexpression of a human G-protein-coupled receptor in E. coli, although with different effects on quantity and quality of the protein produced. A bioinformatic analysis of the Mistic family expanded the number of homologs from four to twenty, including proteins outside the genus Bacillus. This information allowed us to discover a highly conserved Shine-Dalgarno sequence in the operon mstX-yugO that is important for downstream translation of the potassium ion channel yugO.
机译:枯草芽孢杆菌蛋白Mistic与细菌膜的相互作用以及其在促进其他膜蛋白过表达中的作用仍是争论的焦点。在这项研究中,我们旨在确定Mistic的单个螺旋片段是否足以使其在体内和体外与膜相互作用。为此,将包含Mistic的每个螺旋片段的片段及其组合作为GFP融合蛋白生产,并在大肠杆菌中研究了它们的细胞定位。此外,通过固相肽合成法合成了对应于四个螺旋片段的肽,并通过圆二色谱法研究了它们在各种脂质和去污剂中获得二级结构的能力。两种类型的实验均表明,Mistic的第三个螺旋片段仅与LDAO胶束相互作用,而没有分配到脂质双层中。有趣的是,其他三个螺旋在体内和体外与膜相互作用。尽管如此,所有这些短序列都可以替代全长Mistic作为N端融合蛋白,从而在大肠杆菌中实现人G蛋白偶联受体的过表达,尽管对生产的蛋白的数量和质量有不同的影响。对Mistic家族进行的生物信息学分析将同系物的数量从4个增加到20个,包括芽孢杆菌属之外的蛋白质。该信息使我们能够在操纵子mstX-yugO中发现高度保守的Shine-Dalgarno序列,这对钾离子通道yugO的下游翻译非常重要。

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