Glycoengineering of Interferon-β 1a Improves Its Biophysical and Pharmacokinetic Properties

  • Song, Kyoung; 
  • Yoon, In-Soo; 
  • Kim, Nam Ah; 
  • Kim, Dong-Hwan; 
  • Lee, Jongmin; 
  • ... Kim, Ha Hyung; 
  • 외 8명
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35

초록

The purpose of this study was to develop a biobetter version of recombinant human interferon-β 1a (rhIFN-β 1a) to improve its biophysical properties, such as aggregation, production and stability, and pharmacokinetic properties without jeopardizing its activity. To achieve this, we introduced additional glycosylation into rhIFN-β 1a via site-directed mutagenesis. Glycoengineering of rhIFN-β 1a resulted in a new molecular entity, termed R27T, which was defined as a rhIFN-β mutein with two N-glycosylation sites at 80th (original site) and at an additional 25th amino acid due to a mutation of Thr for Arg at position 27th of rhIFN-β 1a. Glycoengineering had no effect on rhIFN-β ligand-receptor binding, as no loss of specific activity was observed. R27T showed improved stability and had a reduced propensity for aggregation and an increased half-life. Therefore, hyperglycosylated rhIFN-β could be a biobetter version of rhIFN-β 1a with a potential for use as a drug against multiple sclerosis.

키워드

MULTIPLE-SCLEROSIS; POLYETHYLENE-GLYCOL; PROTEIN AGGREGATION; RECEPTOR-BINDING; GLYCOSYLATION; SITE; PATHOGENESIS; PEGYLATION; THERAPIES; STABILITY
제목
Glycoengineering of Interferon-β 1a Improves Its Biophysical and Pharmacokinetic Properties
저자
Song, Kyoung; Yoon, In-Soo; Kim, Nam Ah; Kim, Dong-Hwan; Lee, Jongmin; Lee, Hee Jung; Lee, Saehyung; Choi, Sunghyun; Choi, Min-Koo; Kim, Ha Hyung; Jeong, Seong Hoon; Son, Woo Sung; Kim, Dae-Duk; Shin, Young Kee
DOI
10.1371/journal.pone.0096967
발행일
2014-05
유형
Article
저널명
PLoS One
권
9
호
5

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