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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Comparison of solution and crystal structures of maize nonspecific lipid transfer protein: a model for a potential in vivo lipid carrier protein.
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Comparison of solution and crystal structures of maize nonspecific lipid transfer protein: a model for a potential in vivo lipid carrier protein.

机译:玉米非特异性脂质转移蛋白的溶液和晶体结构的比较:潜在的体内脂质载体蛋白的模型。

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摘要

The three-dimensional solution structure of maize nonspecific lipid transfer protein (nsLTP) obtained by nuclear magnetic resonance (NMR) is compared to the X-ray structure. Although both structures are very similar, some local structural differences are observed in the first and the fourth helices and in several side-chain conformations. These discrepancies arise partly from intermolecular contacts in the crystal lattice. The main characteristic of nsLTP structures is the presence of an internal hydrophobic cavity whose volume was found to vary from 237 to 513 A3 without major variations in the 15 solution structures. Comparison of crystal and NMR structures shows the existence of another small hollow at the periphery of the protein containing a water molecule in the X-ray structure, which could play an important structural role. A model of the complexed form of maize nsLTP by alpha-lysopalmitoylphosphatidylcholine was built by docking the lipid inside the protein cavity of the NMR structure. The main structural feature is a hydrogen bond found also in the X-ray structure of the complex maize nsLTP/palmitate between the hydroxyl of Tyr81 and the carbonyl of the lipid. Comparison of 12 primary sequences of nsLTPs emphasizes that all residues delineating the cavities calculated on solution and X-ray structures are conserved, which suggests that this large cavity is a common feature of all compared plant nsLTPs. Furthermore several conserved basic residues seem to be involved in the stabilization of the protein architecture.
机译:通过核磁共振(NMR)获得的玉米非特异性脂质转移蛋白(nsLTP)的三维溶液结构与X射线结构进行了比较。尽管两个结构都非常相似,但是在第一个和第四个螺旋以及几个侧链构象中观察到一些局部结构差异。这些差异部分源于晶格中的分子间接触。 nsLTP结构的主要特征是内部疏水腔的存在,发现其体积在237至513 A3之间变化,而15个溶液结构没有较大变化。晶体结构和NMR结构的比较表明,在X射线结构中,在包含水分子的蛋白质的外围存在另一个小空洞,这可能起重要的结构作用。通过将脂质停靠在NMR结构的蛋白腔内,建立了玉米nsLTP与α-溶血棕榈酰磷脂酰胆碱形成的复合形式的模型。主要结构特征是在玉米Tyr81的羟基和脂质的羰基之间的复合玉米nsLTP /棕榈酸酯的X射线结构中也发现了氢键。对nsLTP的12个主要序列的比较强调,描述溶液和X射线结构所描述的腔的所有残基均被保留,这表明该大腔是所有被比较植物nsLTP的共同特征。此外,一些保守的碱性残基似乎与蛋白质结构的稳定有关。

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