Dementieva D V, Bocharov E V, Arseniev A S
Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.
Eur J Biochem. 1999 Jul;263(1):152-62. doi: 10.1046/j.1432-1327.1999.00478.x.
1H-NMR spectroscopy data, such as NOE intraprotein and (bound water)/protein contacts, 3J coupling constants and deuterium exchange rates were used to determine the in-solution spatial structure of cytotoxin II from Naja naja oxiana snake venom (CTII). Exploiting information from two 1H-NMR spectral components, shown to be due to cis/trans isomerization of the Val7-Pro8 peptide bond, spatial structures of CTII minor and major forms (1 : 6) were calculated using the torsion angle dynamics algorithm of the DYANA program and then energy refined using the FANTOM program. Each form, major and minor, is represented by 20 resulting conformers, demonstrating mean backbone rmsd values of 0.51 and 0.71 A, respectively. Two forms of CTII preserve the structural skeleton as three large loops, including two beta-sheets with bend regions, and demonstrate structural differences at loop I, where cis/trans isomerization occurs. The CTII side-chain distribution constitutes hydrophilic and hydrophobic belts around the protein, alternating in the trend of the three main loops. Because of the Omega-shaped backbone, formed in participation with two bound water molecules, the tip of loop II bridges the tips of loops I and III. This ensures the continuity of the largest hydrophobic belt, formed with the residues of these tips. Comparison revealed pronounced differences in the spatial organization of the tips of the three main loops between CTII and previous structures of homologous cytotoxins (cardiotoxins) in solution.
利用1H-NMR光谱数据,如蛋白质内的NOE以及(结合水)/蛋白质接触、3J耦合常数和氘交换率,来确定来自中亚眼镜蛇(Naja naja oxiana)蛇毒的细胞毒素II(CTII)在溶液中的空间结构。利用来自两个1H-NMR光谱成分的信息(显示是由于Val7-Pro8肽键的顺式/反式异构化),使用DYANA程序的扭转角动力学算法计算CTII次要和主要形式(1:6)的空间结构,然后使用FANTOM程序进行能量优化。主要和次要的每种形式均由20个最终构象表示,其平均主链均方根偏差值分别为0.51 Å和0.71 Å。CTII的两种形式保留了作为三个大环的结构骨架,包括两个带有弯曲区域的β-折叠,并在发生顺式/反式异构化的环I处表现出结构差异。CTII的侧链分布在蛋白质周围构成亲水和疏水带,在三个主要环的趋势中交替出现。由于与两个结合水分子一起形成的Ω形主链,环II的末端连接环I和环III的末端。这确保了由这些末端残基形成的最大疏水带的连续性。比较发现,CTII与溶液中同源细胞毒素(心脏毒素)的先前结构之间,三个主要环末端的空间组织存在明显差异。