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从水稻种子中提取的脂质转移蛋白的溶液结构。与同源蛋白的比较。

Solution structure of a lipid transfer protein extracted from rice seeds. Comparison with homologous proteins.

作者信息

Poznanski J, Sodano P, Suh S W, Lee J Y, Ptak M, Vovelle F

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Eur J Biochem. 1999 Feb;259(3):692-708. doi: 10.1046/j.1432-1327.1999.00093.x.

Abstract

Nuclear magnetic resonance (NMR) spectroscopy was used to determine the three dimensional structure of rice nonspecific lipid transfer protein (ns-LTP), a 91 amino acid residue protein belonging to the broad family of plant ns-LTP. Sequence specific assignment was obtained for all but three HN backbone 1H resonances and for more than 95% of the 1H side-chain resonances using a combination of 1H 2D NOESY; TOCSY and COSY experiments at 293 K. The structure was calculated on the basis of four disulfide bridge restraints, 1259 distance constraints derived from 1H-1H Overhauser effects, 72 phi angle restraints and 32 hydrogen-bond restraints. The final solution structure involves four helices (H1: Cys3-Arg18, H2: Ala25-Ala37, H3: Thr41-Ala54 and H4: Ala66-Cys73) followed by a long C-terminal tail (T) with no observable regular structure. N-capping residues (Thr2, Ser24, Thr40), whose side-chain oxygen atoms are involved in hydrogen bonds with i + 3 amide proton additionally stabilize the N termini of the first three helices. The fourth helix involving Pro residues display a mixture of alpha and 3(10) conformation. The rms deviation of 14 final structures with respect to the average structure is 1.14 +/- 0.16 A for all heavy atoms (C, N, O and S) and 0.72 +/- 0.01 A for the backbone atoms. The global fold of rice ns-LTP is close to the previously published structures of wheat, barley and maize ns-LTPs exhibiting nearly identical pattern of the numerous sequence specific interactions. As reported previously for different four-helix topology proteins, hydrophobic, hydrogen bonding and electrostatic mechanisms of fold stabilization were found for the rice ns-LTP. The sequential alignment of 36 ns-LTP primary structures strongly suggests that there is a uniform pattern of specific long-range interactions (in terms of sequence), which stabilize the fold of all plant ns-LTPs.

摘要

核磁共振(NMR)光谱法被用于确定水稻非特异性脂质转移蛋白(ns-LTP)的三维结构,该蛋白由91个氨基酸残基组成,属于植物ns-LTP的广泛家族。使用1H二维NOESY、TOCSY和COSY实验的组合,在293K下获得了除三个HN主链1H共振外的所有共振以及超过95%的1H侧链共振的序列特异性归属。基于四个二硫键约束、从1H-1H奥弗豪泽效应导出的1259个距离约束、72个φ角约束和32个氢键约束计算结构。最终的溶液结构包括四个螺旋(H1:Cys3-Arg18,H2:Ala25-Ala37,H3:Thr41-Ala54和H4:Ala66-Cys73),随后是一个长的C末端尾巴(T),没有可观察到的规则结构。N-封端残基(Thr2、Ser24、Thr40),其侧链氧原子与i + 3酰胺质子形成氢键,进一步稳定了前三个螺旋的N末端。涉及Pro残基的第四个螺旋呈现出α和3(10)构象的混合。14个最终结构相对于平均结构的所有重原子(C、N、O和S)的均方根偏差为1.14 +/- 0.16 Å,主链原子的均方根偏差为0.72 +/- 0.01 Å。水稻ns-LTP的整体折叠与先前发表的小麦、大麦和玉米ns-LTP的结构相似,表现出几乎相同的众多序列特异性相互作用模式。如先前针对不同的四螺旋拓扑结构蛋白所报道的,水稻ns-LTP存在折叠稳定的疏水、氢键和静电机制。36个ns-LTP一级结构的序列比对强烈表明,存在一种特定的长程相互作用(在序列方面)的统一模式,该模式稳定了所有植物ns-LTP的折叠。

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