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首页> 外文期刊>Journal of Structural Biology >Structure-based design approach to rational site-directed mutagenesis of beta-lactoglobulin
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Structure-based design approach to rational site-directed mutagenesis of beta-lactoglobulin

机译:基于结构的理性部位导向诱变β-乳酰酚的设计方法

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摘要

Recombinant proteins play an important role in medicine and have diverse applications in industrial biotechnology. Lactoglobulin has shown great potential for use in targeted drug delivery and body fluid detoxification because of its ability to bind a variety of molecules. In order to modify the biophysical properties off beta-lactoglobulin, a series of single-site mutations were designed using a structure-based approach. A 3-dimensional structure alignment of homologous molecules led to the design of nine beta-lactoglobulin variants with mutations introduced in the binding pocket region. Seven stable and correctly folded variants (L39Y, I56F, L58F, V92F, V92Y, F105L, M107L) were thoroughly characterized by fluorescence, circular dichroism, isothermal titration calorimetry, size-exclusion chromatography, and X-ray structural investigations. The effects of the amino acid substitutions were observed as slight rearrangements of the binding pocket geometry, but they also significantly influenced the global properties of the protein. Most of the mutations increased the thermal/chemical stability without altering the dimerization constant or pH-dependent conformational behavior. The crystal structures reveal that the I56F and F105L mutations reduced the depth of the binding pocket, which is advantageous since it can reduce the affinity to endogenous fatty acids. The F105L mutant created a unique binding mode for a fatty acid, supporting the idea that lactoglobulin can be altered to bind unique molecules. Selected variants possessing a unique combination of their individual properties can be used for further, more advanced mutagenesis, and the presented results support further research using beta-lactoglobulin as a therapeutic delivery agent or a blood detoxifying molecule.
机译:重组蛋白在医学中发挥着重要作用,在工业生物技术方面具有多样化的应用。乳糖蛋白表明,由于其结合各种分子的能力,乳糖蛋白在靶向药物输送和体液排毒中具有很大的潜力。为了改变β-乳蛋白的生物物理性质,使用基于结构的方法设计了一系列单点突变。同源分子的三维结构对准导致含有含有结合口袋区中引入的突变的九种β-乳酰脱蛋白变体的设计。通过荧光,圆形二色性,等温滴定热量,尺寸排除色谱和X射线结构研究,彻底以七种稳定和正确折叠的变体(L39Y,I56F,L58F,V92F,V92Y,F107L)进行彻底地表征。观察到氨基酸取代的效果作为结合口袋几何形状的轻微重排,但它们也显着影响了蛋白质的全局性质。大多数突变增加了热/化学稳定性而不改变二聚化常数或pH依赖性构象行为。晶体结构揭示了I56F和F105L突变降低了粘合袋的深度,这是有利的,因为它可以减少对内源性脂肪酸的亲和力。 F105L突变体为脂肪酸产生了独特的结合模式,支持乳糖蛋白可以改变乳糖蛋白以结合独特的分子。具有其单个性质的独特组合的所选变体可用于进一步,更先进的诱变,并且所提出的结果支持使用β-乳酰蛋白作为治疗剂输送剂或血液解毒分子的进一步研究。

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