detergent screening

  • 文章类型: Journal Article
    背景:金黄色葡萄球菌是一种常见的病原体,其菌株对现有抗生素具有抗性。来自金黄色葡萄球菌的MurJ(SaMurJ),一种作为脂质II翻转酶的完整膜蛋白,是开发针对这种病原体的新型抗菌剂的潜在目标。该蛋白质的成功表达和纯化将有助于开发针对该靶标的药物。
    目的:在本研究中,我们展示了SaMurJ的优化表达和纯化程序,确定了用于提取和溶解蛋白质的合适洗涤剂,并检查了peptidisc系统以产生无洗涤剂的环境。
    方法:与N-末端10-His标签融合的SaMurJ无诱导表达。选择六种去污剂来筛选用于蛋白质提取和溶解的最有效候选物。通过评估的温度孵育来评估洗涤剂溶解的蛋白质的热稳定性。将不同比例的肽盘双螺旋肽(NSPr)与SaMurJ混合,并应用珠上肽盘组装方法。
    结果:SaMurJ在BL21(DE3)中的表达通过肽指纹图谱得到证实,每升培养物的产量为1毫克SaMurJ。DDM被确定为用于溶解的最佳去污剂,并且镍亲和柱使得SaMurJ纯化具有〜88%的纯度。然而,NSPr不能稳定SaMurJ。
    结论:SaMurJ的表达和纯化是成功的,纯度高,收率好。SaMurJ可以通过含DDM的缓冲液溶解和稳定。
    BACKGROUND: Staphylococcus aureus is a common pathogen with strains that are resistant to existing antibiotics. MurJ from S. aureus (SaMurJ), an integral membrane protein functioning as Lipid II flippase, is a potential target for developing new antibacterial agents against this pathogen. Successful expression and purification of this protein shall be useful in the development of drugs against this target.
    OBJECTIVE: In this study, we demonstrated the optimized expression and purification procedures of SaMurJ, identified suitable detergent for extracting and solubilizing the protein, and examined the peptidisc system to generate a detergent-free environment.
    METHODS: SaMurJ fused with N-terminal ten-His tag was expressed without induction. Six detergents were selected for screening the most efficient candidate for extraction and solubilization of the protein. The thermostability of the detergent-solubilized protein was assessed by evaluated temperature incubation. Different ratios of peptidisc bi-helical peptide (NSPr) to SaMurJ were mixed and the on-bead peptidisc assembly method was applied.
    RESULTS: SaMurJ expressed in BL21(DE3) was confirmed by peptide fingerprinting, with a yield of 1 mg SaMurJ per liter culture. DDM was identified as the optimum detergent for solubilization and the nickel affinity column enabled SaMurJ purification with a purity of ~88%. However, NSPr could not stabilize SaMurJ.
    CONCLUSIONS: The expression and purification of SaMurJ were successful, with high purity and good yield. SaMurJ can be solubilized and stabilized by a DDM-containing buffer.
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  • 文章类型: Journal Article
    膜蛋白负责生物体中的各种任务,并且作为药物靶标特别有趣。同时,众所周知,它们很难使用,并且在进行结构研究之前需要进行彻底的表征。这里,我们提出了一个生物物理管道来表征膜蛋白,重点是稳定性的优化,聚集行为,和同质性。此处显示的管道基于三种生物物理技术:使用天然蛋白质荧光的差示扫描荧光法(纳米差示扫描荧光法),动态光散射,和质量测光。对于这些技术中的每一种,我们提供了进行实验和数据分析的详细方案.
    Membrane proteins are responsible for a large variety of tasks in organisms and of particular interesting as drug targets. At the same time, they are notoriously difficult to work with and require a thorough characterization before proceeding with structural studies. Here, we present a biophysical pipeline to characterize membrane proteins focusing on the optimization of stability, aggregation behavior, and homogeneity. The pipeline shown here is built on three biophysical techniques: differential scanning fluorimetry using native protein fluorescence (nano differential scanning fluorimetry), dynamic light scattering, and mass photometry. For each of these techniques, we provide detailed protocols for performing experiments and data analysis.
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  • 文章类型: Journal Article
    拉沙病毒(LASV)是危害人类的最普遍的沙粒病毒,并且具有成为对全球公共卫生的威胁的巨大潜力。LASV糖蛋白复合物的跨膜结构域(TM)与LASV稳定信号肽形成关键的相互作用,这对于病毒的成熟和融合活性是重要的。需要进一步研究基于结构的分子机制,以更详细地了解TM在LASV生命周期中的作用。然而,获得高量和高纯度的TM是具有挑战性的,因为其疏水性质导致溶解度问题,使其在典型的缓冲系统中易于聚集。这里,我们设计了高度不溶性TM的纯化和洗涤剂筛选方案,以提高结构研究的产率和纯度。根据测试的清洁剂,TM在LMPG中的掺入量最高。利用圆二色性(CD)和核磁共振(NMR)光谱来确认用于结构研究的最佳洗涤剂系统。通过CD光谱学,我们能够将TM的二级结构描述为主要的α-螺旋结构,而NMR光谱显示LMPG中结构良好且稳定的TM。从这些结果来看,LMPG被确定为用于进一步结构研究的最佳洗涤剂。
    Lassa virus (LASV) is the most prevalent arenavirus afflicting humans and has high potential to become a threat to global public health. The transmembrane domain (TM) of the LASV glycoprotein complex forms critical interactions with the LASV stable signal peptide that are important for the maturation and fusion activity of the virus. A further study of the structure-based molecular mechanisms is required to understand the role of the TM in the lifecycle of LASV in greater detail. However, it is challenging to obtain the TM in high quantity and purity due to its hydrophobic nature which results in solubility issues that makes it prone to aggregation in typical buffer systems. Here, we designed a purification and detergent screen protocol for the highly insoluble TM to enhance the yield and purity for structural studies. Based on the detergents tested, the TM had the highest incorporation in LMPG. Circular dichroism (CD) and nuclear magnetic resonance (NMR) spectroscopy were utilized to confirm the best detergent system for structural studies. Through CD spectroscopy, we were able to characterize the secondary structure of the TM as largely alpha-helical, while NMR spectroscopy showed a well-structured and stable TM in LMPG. From these results, LMPG was determined to be the optimal detergent for further structural studies.
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  • 文章类型: Journal Article
    绿色荧光蛋白(GFP)已经照亮了生物学研究的几乎每一个方面,包括蛋白质科学。在膜蛋白结构生物学领域,GFP已广泛用于监测膜蛋白定位,表达水平,纯化过程和产量,以及细胞内部和试管中的稳定性。特别感兴趣的是基于荧光检测器尺寸排阻色谱的热稳定性测定(FSEC-TS)。通过简单的加热和FSEC,通常适用的方法允许快速评估GFP融合膜蛋白的热稳定性而无需纯化。在这里,我们描述了FSEC-TS方法的实验细节和一些典型结果。
    Green fluorescent proteins (GFPs) have lightened up almost every aspect of biological research including protein sciences. In the field of membrane protein structural biology, GFPs have been used widely to monitor membrane protein localization, expression level, the purification process and yield, and the stability inside the cells and in the test tube. Of particular interest is the fluorescence-detector size-exclusion chromatography-based thermostability assay (FSEC-TS). By simple heating and FSEC, the generally applicable method allows rapid assessment of the thermostability of GFP-fused membrane proteins without purification. Here we describe the experimental details and some typical results for the FSEC-TS method.
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  • 文章类型: Journal Article
    Membrane proteins control a large number of vital biological processes and are often medically important-not least as drug targets. However, membrane proteins are generally more difficult to work with than their globular counterparts, and as a consequence comparatively few high-resolution structures are available. In any membrane protein structure project, a lot of effort is usually spent on obtaining a pure and stable protein preparation. The process commonly involves the expression of several constructs and homologs, followed by extraction in various detergents. This is normally a time-consuming and highly iterative process since only one or a few conditions can be tested at a time. In this article, we describe a rapid screening protocol in a 96-well format that largely mimics standard membrane protein purification procedures, but eliminates the ultracentrifugation and membrane preparation steps. Moreover, we show that the results are robustly translatable to large-scale production of detergent-solubilized protein for structural studies. We have applied this protocol to 60 proteins from an E. coli membrane protein library, in order to find the optimal expression, solubilization and purification conditions for each protein. With guidance from the obtained screening data, we have also performed successful large-scale purifications of several of the proteins. The protocol provides a rapid, low cost solution to one of the major bottlenecks in structural biology, making membrane protein structures attainable even for the small laboratory.
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  • 文章类型: Journal Article
    This chapter outlines the protocol developed in our lab to produce a multipass α-helical membrane protein. We present our work flow, from ortholog selection to protein purification, including molecular biology for plasmid construction, protein expression in E. coli, membrane isolation and detergent solubilization, protein purification and tag removal, biophysical assessment of protein stability in different detergents, and detergent concentration determination using thin-layer chromatography. We focus on results from our ongoing work with intramembrane aspartyl proteases from archaeal organisms.
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  • 文章类型: Journal Article
    胰岛素反应性促进葡萄糖转运蛋白GLUT4对于维持葡萄糖稳态至关重要。尽管付出了巨大的努力,表达和纯化足够量的结构和功能完整的蛋白质用于生物物理分析的能力以前是非常困难的。我们在这里报告新的表达方法的发展,净化,并在功能上将GLUT4重建为洗涤剂胶束和蛋白脂质体。大鼠GLUT4在氨基和羧基末端含有FLAG和His标签,分别,被工程化并稳定转染到HEK-293细胞中。悬浮培养物中的过表达每升培养物中产生超过1.5mg蛋白质。通过荧光检测尺寸排阻层析对洗涤剂溶解的GLUT4-GFP融合蛋白进行系统筛选,确定月桂基麦芽糖新戊二醇(LMNG)对于分离单体GLUT4胶束非常有效。通过细胞松弛素B的色氨酸荧光的猝灭和ATB-BMPA光标记的竞争,证明了结构完整性和配体结合的保存。将GLUT4重建为脂质纳米盘,并确认了正确的折叠。用两栖动物A8-35重建纯化的GLUT4在高温下长时间稳定转运蛋白。纯化的GLUT4的功能活性通过将LMNG纯化的GLUT4重建到蛋白脂质体中并测量D-葡萄糖相对于L-葡萄糖的饱和摄取来确认。一起来看,这些数据验证了一种有效方法的开发,该方法可以产生毫克量的稳定且功能完整的GLUT4,该方法适用于广泛的生化和生物物理分析.
    The insulin-responsive facilitative glucose transporter GLUT4 is of fundamental importance for maintenance of glucose homeostasis. Despite intensive effort, the ability to express and purify sufficient quantities of structurally and functionally intact protein for biophysical analysis has previously been exceedingly difficult. We report here the development of novel methods to express, purify, and functionally reconstitute GLUT4 into detergent micelles and proteoliposomes. Rat GLUT4 containing FLAG and His tags at the amino and carboxy termini, respectively, was engineered and stably transfected into HEK-293 cells. Overexpression in suspension culture yielded over 1.5 mg of protein per liter of culture. Systematic screening of detergent solubilized GLUT4-GFP fusion protein via fluorescent-detection size exclusion chromatography identified lauryl maltose neopentyl glycol (LMNG) as highly effective for isolating monomeric GLUT4 micelles. Preservation of structural integrity and ligand binding was demonstrated via quenching of tryptophan fluorescence and competition of ATB-BMPA photolabeling by cytochalasin B. GLUT4 was reconstituted into lipid nanodiscs and proper folding was confirmed. Reconstitution of purified GLUT4 with amphipol A8-35 stabilized the transporter at elevated temperatures for extended periods of time. Functional activity of purified GLUT4 was confirmed by reconstitution of LMNG-purified GLUT4 into proteoliposomes and measurement of saturable uptake of D-glucose over L-glucose. Taken together, these data validate the development of an efficient means to generate milligram quantities of stable and functionally intact GLUT4 that is suitable for a wide array of biochemical and biophysical analyses.
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