Dwyer Mary A, Hellinga Homme W
Department of Biochemistry, Box 3711, Duke University Medical Center, Durham, North Carolina 27710, USA.
Curr Opin Struct Biol. 2004 Aug;14(4):495-504. doi: 10.1016/j.sbi.2004.07.004.
The diversity of biological function, ligand binding, conformational changes and structural adaptability of the periplasmic binding protein superfamily have been exploited to engineer biosensors, allosteric control elements, biologically active receptors and enzymes using a combination of techniques, including computational design. Extensively redesigned periplasmic binding proteins have been re-introduced into bacteria to function in synthetic signal transduction pathways that respond to extracellular ligands and as biologically active enzymes.
周质结合蛋白超家族的生物功能、配体结合、构象变化和结构适应性具有多样性,人们利用包括计算设计在内的多种技术组合,对其加以改造,以构建生物传感器、变构控制元件、生物活性受体和酶。经过广泛重新设计的周质结合蛋白已被重新引入细菌中,用于响应细胞外配体的合成信号转导途径,并作为生物活性酶发挥作用。