Development of Recombinant Human $Interferon-{\beta}-1a$ Analogs using Serum Free Suspension Culture of CHO Cell

  • Lee, Jong-Min (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Oh, Han-Kyu (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • So, Moon-Kyoung (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Yang, Ji-Hye (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Yoon, Ho-Chul (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Ahn, Ji-Soo (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Kim, Ji-Tai (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Yoo, Ji-Uk (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.) ;
  • Byun, Tae-Ho (Life Science Research Team, R&D Center, Samsung Fine Chemicals Co., LTD.)
  • Published : 2005.04.15

Abstract

Recombinant human $interferon-{\beta}-1a(rIFN-{\beta})$ is a single glycosylated protein (at N80, 1N) with anti-viral activity. However, present drugs have a relatively short serum half-life of $rIFN-{\beta}$, thus patients suffer from frequent $infections.^{1)}$ To improve its half-life, eight glycosylation analogs were prepared, which have additional N-linked glycosylation consensus sequences (N-X-T/S) within the $IFN-{\beta}$ molecule and/or at C-terminal. Each $rIFN-{\beta}$ analog was examined for the presence of additional N-linked glycosylation and the maintenance of anti-viral activity in CHO cells. The molecular weights of five analogs were not changed. However, two analogs, R27T within $rIFN-{\beta}$ (27 kDa, 2N) and GNITVNITV at C-terminal (29kDa, 2N), showed a clear increase in molecular weights, compared to native $rIFN-{\beta}$ (23 kDa, 1N). And another combined analog of R27T+GNITVNITV showed increased molecular weight (33 kDa, 3N). It was confimed that the molecular weight increment of analogs was caued by the N-linked glycosylation with the treatment of N-glycansae. In the case of anti-viral activity, the analog GNITVNITV showed a reduction in activity compared to native $IFN-{\beta}$, whereas the analogs R27T and R27T+GNITVNITV were found to have distinctly increased activities. Pharmacokinetic study in rats also disclosed that the analogs R27T and R27T+GNITVNITV had 2 3 fold increased serum half-life, respectively. In conclusion, the addition of N-linked glycosylation in $rIFN-{\beta}$ increased serum half-life, thereby its less frequent administration will be expected.

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