JOURNAL ARTICLE

26pBA-12 Lieb型光格子の実現(量子エレクトロニクス(Bose粒子系の理論,量子縮退原子),領域1(原子・分子,量子エレクトロニクス,放射線物理))

卓衛 西尾秀太 中島慎太郎 田家秀樹 小沢義朗 高橋

Year: 2013 Journal:   日本物理学会講演概要集 Vol: 68 (2)Pages: 145-45

Abstract

The biotechnological production of recombinant proteins is challenged by processes that decrease the yield, such as protease action, aggregation, or misfolding. Today, the variation of strains and vector systems or the modulation of inducible promoter activities is commonly used to optimize expression systems. Alternatively, aggregation to inclusion bodies may be a desired starting point for protein isolation and refolding. The discovery of the twin-arginine translocation (Tat) system for folded proteins now opens new perspectives because in most cases, the Tat machinery does not allow the passage of unfolded proteins. This feature of the Tat system can be exploited for biotechnological purposes, as expression systems may be developed that ensure a virtually complete folding of a recombinant protein before purification. This review focuses on the characteristics that make recombinant Tat systems attractive for biotechnology and discusses problems and possible solutions for an efficient translocation of folded proteins.

Keywords:
Computer science

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