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Measurement of Conformational Changes in the Structure of Transglutaminase on Binding Calcium Ions Using Optical Evanescent Dual Polarisation Interferometry

机译:使用光学E逝双极化干涉法测量结合谷氨酸的转谷氨酰胺酶结构的构象变化

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摘要

The conformational changes occurring when the proteintransglutaminase binds calcium ions have been studied using the optical evanescent technique of dual polarization interferometry (DPI) implemented via a dual slab waveguide structure. Immobilized transglutaminase layers of 4-5 nm in thickness were obtained, which when challenged with calcium ions underwent a contraction of approx0.5 nm (depending on the concentration of calcium) and an increase in refractive index of approx1 X 10~(-2). The affinity constant for the calcium binding was found to be in the range of 0.95 +- 0.2 mM. The results reported are in good agreement with those found in the literature obtained by other techniques. It has also been shown that the structural changes occurring during the binding event are considerably larger than the mass changes that take place; thus, DPI offers a potentially valuable method to study real-time structural changes occurring to proteins when they bind metal ions.
机译:已经使用通过双平板波导结构实现的双偏振干涉法(DPI)的光学渐逝技术研究了蛋白转谷氨酰胺酶结合钙离子时发生的构象变化。获得了固定的厚度为4-5 nm的转谷氨酰胺酶层,当受到钙离子的挑战时,其收缩约0.5 nm(取决于钙的浓度),折射率增加约1 X 10〜(-2) 。发现钙结合的亲和常数在0.95±0.2mM的范围内。报告的结果与通过其他技术获得的文献中的结果非常吻合。还表明在结合过程中发生的结构变化比发生的质量变化大得多。因此,DPI提供了一种潜在有价值的方法,用于研究蛋白质与金属离子结合时蛋白质发生的实时结构变化。

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