Daley Margaret E, Spyracopoulos Leo, Jia Zongchao, Davies Peter L, Sykes Brian D
Department of Biochemistry, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.
Biochemistry. 2002 Apr 30;41(17):5515-25. doi: 10.1021/bi0121252.
Antifreeze proteins (AFPs) protect many types of organisms from damage caused by freezing. They do this by binding to the ice surface, which causes inhibition of ice crystal growth. However, the molecular mechanism of ice binding leading to growth inhibition is not well understood. In this paper, we present the solution structure and backbone NMR relaxation data of the antifreeze protein from the yellow mealworm beetle Tenebrio molitor (TmAFP) to study the dynamics in the context of structure. The full (15)N relaxation analysis was completed at two magnetic field strengths, 500 and 600 MHz, as well as at two temperatures, 30 and 5 degrees C, to measure the dynamic changes that occur in the protein backbone at different temperatures. TmAFP is a small, highly disulfide-bonded, right-handed parallel beta-helix consisting of seven tandemly repeated 12-amino acid loops. The backbone relaxation data displays a periodic pattern, which reflects both the 12-amino acid structural repeat and the highly anisotropic nature of the protein. Analysis of the (15)N relaxation parameters shows that TmAFP is a well-defined, rigid structure, and the extracted parameters show that there is similar restricted internal mobility throughout the protein backbone at both temperatures studied. We conclude that the hydrophobic, rigid binding site may reduce the entropic penalty for the binding of the protein to ice. The beta-helical fold of the protein provides this rigidity, as it does not appear to be a consequence of cooling toward a physiologically relevant temperature.
抗冻蛋白(AFPs)保护多种生物免受冷冻造成的损害。它们通过与冰表面结合来实现这一点,这会抑制冰晶生长。然而,导致生长抑制的冰结合分子机制尚未得到充分理解。在本文中,我们展示了黄粉虫(Tenebrio molitor)抗冻蛋白(TmAFP)的溶液结构和主链NMR弛豫数据,以在结构背景下研究其动力学。在500和600 MHz两种磁场强度以及30和5摄氏度两种温度下完成了全(15)N弛豫分析,以测量蛋白质主链在不同温度下发生的动态变化。TmAFP是一种小的、高度二硫键连接的右手平行β螺旋,由七个串联重复的12个氨基酸环组成。主链弛豫数据呈现出周期性模式,这既反映了12个氨基酸的结构重复,也反映了蛋白质的高度各向异性性质。对(15)N弛豫参数的分析表明,TmAFP是一个明确的刚性结构,提取的参数表明在所研究的两个温度下,整个蛋白质主链都存在类似的受限内部流动性。我们得出结论,疏水的刚性结合位点可能会降低蛋白质与冰结合的熵罚。蛋白质的β螺旋折叠提供了这种刚性,因为这似乎不是向生理相关温度冷却的结果。