Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5913796 | Journal of Structural Biology | 2016 | 39 Pages |
Abstract
We present a strategy to obtain milligrams of highly post-translationally modified eukaryotic proteins, transiently expressed in mammalian cells as rigid or cleavable fusions with a mammalianized version of bacterial maltose-binding protein (mMBP). This variant was engineered to combine mutations that enhance MBP solubility and affinity purification, as well as provide crystal-packing interactions for increased crystallizability. Using this cell type-independent approach, we could increase the expression of secreted and intracellular human proteins up to 200-fold. By molecular replacement with MBP, we readily determined five novel high-resolution structures of rigid fusions of targets that otherwise defied crystallization.
Keywords
PEIMMBPPNGase FSECMBPORFUMODENGPDBIMACHEKAKHSize-exclusion chromatographyEndo Hendoglycosidase HChoCrystallizationX-ray crystallographyTevMammalian cell expressionChinese Hamster Ovaryuromodulinmolecular replacementopen reading frameAdipokinetic hormoneTobacco etch virusProtein Data Bankmaltose-binding proteinPolyethyleniminepeptide N-glycosidase Fimmobilized metal affinity chromatographyhuman embryonic kidneyglycoproteins
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Authors
Marcel Bokhove, Hamed Sadat Al Hosseini, Takako Saito, Elisa Dioguardi, Katharina Gegenschatz-Schmid, Kaoru Nishimura, Isha Raj, Daniele de Sanctis, Ling Han, Luca Jovine,