Abstract
A Pichia pastoris expression system for bovine pancreatic RNase A was constructed: The RNase A sequence was fused to the PHO1 signal and the AOX1 promoter was used for efficient secretion. Approximately 5 mg of soluble enzymes were secreted per liter of the culture, but one half of them were glycosylated. After a series of purifications by cation-exchange chromatography, the glycosylated enzyme was removed and the pure recombinant soluble unglycosylated RNase A was obtained in the final yield of 1 mg per liter of the culture. N-Terminal sequence, molecular weight, secondary structure, thermal stability, and activity were completely identical with those of commercial RNase A. Glycosylated RNase A had a decreased k cat, 60-70% of the activity of wild-type RNase A, as in the case of RNase B. Its carbohydrate moiety seemed to destabilize the enzyme differently from RNase B since T m of the glycosylated RNase A was decreased by 6°C. The carbohydrate moiety of the glycosylated enzyme contained no GlcNAc. The N34A mutant RNase A, in which the only potential N-glycosylation site, Asn34, is mutated to alanine, was also glycosylated, implying that glycosylation is not N-linked but O-linked. © 2000, Taylor & Francis Group, LLC. All rights reserved.
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Chatani, E., Tanimizu, N., Ueno, H., & Hayashi, R. (2000). Expression of soluble bovine pancreatic ribonuclease a in pichia pastoris and its purification and characterization. Bioscience, Biotechnology and Biochemistry, 64(11), 2437–2444. https://doi.org/10.1271/bbb.64.2437
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