Citlayi G Villaseñor, Alexandra Karagiaridi, Valentina S Dimitrova, Delfin G Buyco, Isabella Candal, Anastasia Smirnova, Heather W Pinkett, Neha P Kamat
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引用次数: 0
摘要
评估蛋白质插入和与膜的结合通常是蛋白质合成的关键步骤,无论是蛋白质折叠和结构的基础研究,还是利用蛋白质活性的翻译应用。传统上,膜蛋白与膜的关联涉及超离心,这在低资源的科学环境中可能是耗时且难以实现的。在这项研究中,我们开发了一种简便的方法,从未结合蛋白或裂解膜中纯化囊泡整合的无细胞表达蛋白。我们使用台式微型离心机,能够达到21,130 x g的速度,和蔗糖梯度有效地从蛋白脂质体中分离出大部分无细胞表达成分。使用几种模型蛋白,我们验证了我们的方法可用于测量各种蛋白质的膜关联,例如外周蛋白和跨膜蛋白以及脂质特异性蛋白,并且我们的方法可以扩展到来自细胞膜的膜蛋白。我们的方法为从错误折叠和不相关的膜蛋白中分离蛋白质脂质体提供了一种更容易获得、成本效益更低、体积更小的替代方法,适用于基础生物物理研究和涉及无细胞表达膜蛋白的应用。
Assessing protein-lipid interactions with a low-cost, accessible centrifugation assay.
Assessing protein insertion and association with membranes is often a critical step that follows protein synthesis for both fundamental studies on protein folding and structure as well as translational applications that harness proteins for their activity. Traditionally, membrane protein association with membranes involves ultracentrifugation, which can be time-consuming and inaccessible in low-resource scientific environments. In this study, we develop an accessible method to purify vesicle-integrated cell-free expressed proteins from unincorporated protein or lysed membranes. We use a table-top microcentrifuge, capable of reaching speeds up to 21,130 × g, and a sucrose gradient to effectively separate the bulk of the cell-free expression components from proteoliposomes. We validate our approach can be used to measure membrane association of a variety of proteins, such as peripheral and transmembrane proteins as well as lipid-specific proteins, and that our method can be extended to membrane proteins derived from cellular membranes. Our approach provides a more accessible, cost-effective, and low-volume alternative for isolating proteoliposomes from misfolded and unassociated membrane proteins that should be applicable for fundamental biophysical studies and applications involving cell-free expressed membrane proteins.