Identification of lipid-specific proteins with high-density lipid-immobilized beads†

IF 3.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analyst Pub Date : 2024-06-03 DOI:10.1039/D4AN00579A
Masayuki Morito, Hiroki Yasuda, Takaaki Matsufuji, Masanao Kinoshita and Nobuaki Matsumori
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Abstract

In biological membranes, lipids often interact with membrane proteins (MPs), regulating the localization and activity of MPs in cells. Although elucidating lipid–MP interactions is critical to comprehend the physiological roles of lipids, a systematic and comprehensive identification of lipid-binding proteins has not been adequately established. Therefore, we report the development of lipid-immobilized beads where lipid molecules were covalently immobilized. Owing to the detergent tolerance, these beads enable screening of water-soluble proteins and MPs, the latter of which typically necessitate surfactants for solubilization. Herein, two sphingolipid species—ceramide and sphingomyelin—which are major constituents of lipid rafts, were immobilized on the beads. We first showed that the density of immobilized lipid molecules on the beads was as high as that of biological lipid membranes. Subsequently, we confirmed that these beads enabled the selective pulldown of known sphingomyelin- or ceramide-binding proteins (lysenin, p24, and CERT) from protein mixtures, including cell lysates. In contrast, commercial sphingomyelin beads, on which lipid molecules are sparsely immobilized through biotin–streptavidin linkage, failed to capture lysenin, a well-known protein that recognizes clustered sphingomyelin molecules. This clearly demonstrates the applicability of our beads for obtaining proteins that recognize not only a single lipid molecule but also lipid clusters or lipid membranes. Finally, we demonstrated the screening of lipid-binding proteins from Neuro2a cell lysates using these beads. This method is expected to significantly contribute to the understanding of interactions between lipids and proteins and to unravel the complexities of lipid diversity.

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利用高密度脂质固定珠鉴定脂质特异性蛋白质。
在生物膜中,脂质经常与膜蛋白(MPs)相互作用,调节细胞中 MPs 的定位和活性。虽然阐明脂质与膜蛋白的相互作用对于理解脂质的生理作用至关重要,但系统而全面地鉴定脂质结合蛋白的工作尚未充分展开。因此,我们报告了脂质固定珠的开发情况,其中脂质分子被共价固定。由于具有去垢剂耐受性,这些珠子可以筛选水溶性蛋白质和 MPs,后者通常需要表面活性剂才能溶解。在这里,两种鞘脂类--神经酰胺和鞘磷脂--是脂筏的主要成分,被固定在珠子上。我们首先证明了固定在珠子上的脂质分子的密度与生物脂质膜的密度一样高。随后,我们证实这些珠子能从蛋白质混合物(包括细胞裂解液)中选择性地提取已知的鞘磷脂或神经酰胺结合蛋白(溶血素、p24 和 CERT)。相反,通过生物素-链霉亲和素连接将脂质分子稀疏固定在其上的商用鞘磷脂珠却未能捕获赖血宁,而赖血宁是一种众所周知的能识别簇状鞘磷脂分子的蛋白质。这清楚地表明,我们的珠子不仅适用于获得识别单个脂质分子的蛋白质,也适用于获得识别脂质簇或脂质膜的蛋白质。最后,我们展示了利用这些珠子从 Neuro2a 细胞裂解液中筛选脂质结合蛋白的方法。这种方法有望极大地促进人们对脂质和蛋白质之间相互作用的理解,并揭示脂质多样性的复杂性。
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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: The home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences
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