Hytönen Vesa P, Nyholm Thomas K M, Pentikäinen Olli T, Vaarno Jonne, Porkka Eevaleena J, Nordlund Henri R, Johnson Mark S, Slotte J Peter, Laitinen Olli H, Kulomaa Markku S
Department of Biological and Environmental Science, P. O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland.
J Biol Chem. 2004 Mar 5;279(10):9337-43. doi: 10.1074/jbc.M310989200. Epub 2003 Dec 3.
The protein chicken avidin is a commonly used tool in various applications. The avidin gene belongs to a gene family that also includes seven other members known as the avidin-related genes (AVR). We report here on the extremely high thermal stability and functional characteristics of avidin-related protein AVR4/5, a member of the avidin protein family. The thermal stability characteristics of AVR4/5 were examined using a differential scanning calorimeter, microparticle analysis, and a microplate assay. Its biotin-binding properties were studied using an isothermal calorimeter and IAsys optical biosensor. According to these analyses, in the absence of biotin AVR4/5 is clearly more stable (T(m) = 107.4 +/- 0.3 degrees C) than avidin (T(m) = 83.5 +/- 0.1 degrees C) or bacterial streptavidin (T(m) = 75.5 degrees C). AVR4/5 also exhibits a high affinity for biotin (K(d) approximately 3.6 x 10(-14) m) comparable to that of avidin and streptavidin (K(d) approximately 10(-15) m). Molecular modeling and site-directed mutagenesis were used to study the molecular details behind the observed high thermostability. The results indicate that AVR4/5 and its mutants have high potential as new improved tools for applications where exceptionally high stability and tight biotin binding are needed.
蛋白质鸡抗生物素蛋白是各种应用中常用的工具。抗生物素蛋白基因属于一个基因家族,该家族还包括其他七个成员,称为抗生物素蛋白相关基因(AVR)。我们在此报告抗生物素蛋白家族成员抗生物素蛋白相关蛋白AVR4/5的极高热稳定性和功能特性。使用差示扫描量热仪、微粒分析和微孔板分析法检测了AVR4/5的热稳定性特征。使用等温量热仪和IAsys光学生物传感器研究了其生物素结合特性。根据这些分析,在没有生物素的情况下,AVR4/5明显比抗生物素蛋白(T(m)=83.5±0.1℃)或细菌链霉抗生物素蛋白(T(m)=75.5℃)更稳定(T(m)=107.4±0.3℃)。AVR4/5对生物素也表现出高亲和力(K(d)约为3.6×10(-14)m),与抗生物素蛋白和链霉抗生物素蛋白(K(d)约为10(-15)m)相当。使用分子建模和定点诱变来研究观察到的高热稳定性背后的分子细节。结果表明,AVR4/5及其突变体作为需要极高稳定性和紧密生物素结合的应用中的新型改良工具具有很高的潜力。