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通过二维¹H-NMR光谱法测定甲醇-氯仿混合物和SDS胶束中(1-36)细菌视紫红质的三维结构。

Three-dimensional structure of (1-36)bacterioopsin in methanol-chloroform mixture and SDS micelles determined by 2D 1H-NMR spectroscopy.

作者信息

Pervushin K V, Arseniev A S

机构信息

Shemyakin Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow.

出版信息

FEBS Lett. 1992 Aug 17;308(2):190-6. doi: 10.1016/0014-5793(92)81272-n.

DOI:10.1016/0014-5793(92)81272-n
PMID:1323484
Abstract

Spatial structures of proteolytic segment A (sA) of bacterioopsin of H. halobium (residues 1-36) solubilized in a mixture of methanol-chloroform (1:1), 0.1 M LiClO4 organic mixture, or in perdeuterated sodium dodecyl sulfate (SDS) micelles, were determined by 2D 1H-NMR techniques. 324 and 400 NOESY cross-peak volumes were measured in NOESY spectra of sA in organic mixture and SDS micelles, respectively. The sA spatial structures were determined by local structure analysis, distance geometry calculation with program DIANA and systematic search for energetically allowed side chain rotamers consistent with NOESY cross-peak volumes. The structures of sA are similar in both milieus and have the right-handed alpha-helical region from Pro8 to Met32 with root mean square deviation (RMSD) of 0.25 A between backbone heavy atoms and fit well with Pro8 to Met32 alpha-helical region in electron cryo-microscopy model of bacteriorhodopsin. The N-terminal region Ala2-Gly6 of sA in organic mixture has a fixed structure of two consecutive gamma-turns as 2 * 2(7)-helix (RMSD of 0.25 A) stabilized by the Thr5 NH...O = C Gln3 and Ile4 NH...O = C Ala2 hydrogen bonds while this region in SDS micelles has disordered structure with RMSD of 1.44 A for backbone heavy atoms. The C-terminal region Gly33-Asp36 of sA is disordered in both milieus. Torsion angles chi 1 of sA were unequivocally determined for 13 (SDS) and 11 (organic mixture) of alpha-helical residues and are identical in both milieus.

摘要

利用二维¹H-NMR技术确定了嗜盐菌视紫红质蛋白水解片段A(sA,残基1 - 36)在甲醇 - 氯仿(1:1)、0.1 M高氯酸锂有机混合物或全氘代十二烷基硫酸钠(SDS)胶束中的空间结构。分别在有机混合物和SDS胶束中sA的NOESY谱图中测量了324个和400个NOESY交叉峰体积。通过局部结构分析、使用DIANA程序进行距离几何计算以及系统搜索与NOESY交叉峰体积一致的能量允许的侧链旋转异构体来确定sA的空间结构。sA在两种环境中的结构相似,具有从Pro8到Met32的右手α螺旋区域,主链重原子之间的均方根偏差(RMSD)为0.25 Å,并且与细菌视紫红质的电子冷冻显微镜模型中Pro8到Met32的α螺旋区域拟合良好。在有机混合物中,sA的N端区域Ala2 - Gly6具有由Thr5 NH...O = C Gln3和Ile4 NH...O = C Ala2氢键稳定的两个连续γ转角的固定结构,即2 * 2(7)-螺旋(RMSD为0.25 Å),而在SDS胶束中该区域具有无序结构,主链重原子的RMSD为1.44 Å。sA的C端区域Gly33 - Asp36在两种环境中均无序。明确确定了sA的13个(SDS)和11个(有机混合物)α螺旋残基的扭转角χ1,且在两种环境中相同。

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