首页> 外文期刊>Protein Science: A Publication of the Protein Society >Computational design and biochemical characterization of maize nonspecific lipid transfer protein variants for biosensor applications.
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Computational design and biochemical characterization of maize nonspecific lipid transfer protein variants for biosensor applications.

机译:用于生物传感器的玉米非特异性脂质转移蛋白变异体的计算设计和生化表征。

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摘要

Lipid transfer proteins (LTPs) are a family of proteins that bind and transfer lipids. Utilizing the maize LTP, we have successfully engineered fluorescent reagentless biosensors for the natural ligand of LTPs; this was achieved by using computational protein design to remove a disulfide bridge and attaching a thio-reactive fluorophore. Conformational change induced by ligand titration is thought to affect the fluorescence of the fluorophore, allowing detection of ligand binding. Fluorescence measurements show that our LTP variants have affinity to palmitate that is consistent with wild-type LTP. These molecules have the potential to be utilized as scaffolds to design hydrophobic ligand biosensors or to serve as drug carriers.
机译:脂质转移蛋白(LTP)是结合和转移脂质的蛋白质家族。利用玉米LTP,我们已经成功地为LTP的天然配体设计了无荧光试剂的生物传感器。这是通过使用计算蛋白设计去除二硫键并连接硫反应性荧光团来实现的。由配体滴定引起的构象变化被认为影响荧光团的荧光,从而允许检测配体结合。荧光测量表明,我们的LTP变体对棕榈酸酯的亲和力与野生型LTP一致。这些分子具有用作支架来设计疏水性配体生物传感器或用作药物载体的潜力。

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