首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >CRYSTAL STRUCTURE AND A TWISTED BETA-SHEET CONFORMATION OF THE TRIPEPTIDE L-LEUCYL-L-LEUCYL-L-LEUCINE MONOHYDRATE TRIMETHANOL SOLVATE - CONFORMATION ANALYSIS OF TRIPEPTIDES
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CRYSTAL STRUCTURE AND A TWISTED BETA-SHEET CONFORMATION OF THE TRIPEPTIDE L-LEUCYL-L-LEUCYL-L-LEUCINE MONOHYDRATE TRIMETHANOL SOLVATE - CONFORMATION ANALYSIS OF TRIPEPTIDES

机译:三肽L-亮氨酰-L-亮氨酰-L-亮氨酸单羟基乙酸三甲酚溶剂化物的晶体结构和扭曲的β-片状构象-三肽的构象分析

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In order to test the helical preference of short oligo-L-leucines, we crystallized the tripeptide L-leucyl-L-leucyl-L-leucine (LLL) and carried out x-ray diffraction studies of it (L-leucyl-L-leucyl-L-leucine)(2).3CH(3)OH.H2O,(C39H84N6O12), crystallized in the monoclinic system, space group P2(1), cell parameters: a = 12.031(2), b = 15.578(3), c = 14.087(2) Angstrom, alpha = 90 degrees, beta = 97.29(1)degrees, gamma = 90 degrees. V = 2618.6 Angstrom(3), MW = 829.1, D-c = 1.051 gcm(-3), R index of 0.057 for 4213 reflections (lambda(CuK alpha) = 1.5418 Angstrom) > 2 sigma. LLL takes up the beta-sheet rather than a helical conformation in the crystalline state. The three methanol molecules and the water molecule that constitute the solvent of crystallization form a network of hydrogen bonds to the LLL molecules and to one another. It is rather remarkable that though A and L have stronger helical preferences than G, neither AAA nor LLL form the crystalline helix but GAL does, indicating that the helical preferences depend on the sequence context. The residue L2 in molecule A and the residues L1 and L3 of molecule B do not show the preferred conformation for forming helices. Further, very remarkably, LLL exhibits a unique supersecondary feature of the protein folding topology, namely the twisted beta-sheet, whereas most short peptides show only the classical beta-sheet conformation. That even the tripeptide LLL is able to exhibit the twisted beta-sheet conformation, and with the correct left-handed twist this suggests that even very short peptide segments possess the ability to assume several of the characteristic topological features exhibited by proteins. An extensive review of tripeptide conformations has been carried out and some results of this study have been included here. (C) 1995 John Wiley & Sons, Inc. [References: 17]
机译:为了测试短寡聚L-亮氨酸的螺旋偏好,我们将三肽L-亮氨酰-L-亮氨酰-L-亮氨酸(LLL)结晶并对其进行X射线衍射研究(L-亮氨酰-L-亮氨酰-L-亮氨酸)(2).3CH(3)OH.H2O,(C39H84N6O12),在单斜晶系中结晶,空间群P2(1),单元格参数:a = 12.031(2),b = 15.578(3 ),c = 14.087(2)埃,alpha = 90度,beta = 97.29(1)度,γ= 90度。 V = 2618.6埃(3),MW = 829.1,D-c = 1.051 gcm(-3),4213次反射的R指数为0.057(λ(CuK alpha)= 1.5418埃)> 2 sigma。 LLL占据β-折叠而不是处于结晶状态的螺旋构象。构成结晶溶剂的三个甲醇分子和水分子形成了与LLL分子以及彼此之间氢键的网络。非常值得注意的是,尽管A和L比G具有更强的螺旋偏好,但AAA和LLL都不形成结晶螺旋,而GAL却没有,因此表明螺旋偏好取决于序列上下文。分子A中的残基L2和分子B中的残基L1和L3没有显示出形成螺旋的优选构象。此外,非常明显的是,LLL表现出蛋白质折叠拓扑结构的独特超二级特征,即扭曲的β-折叠,而大多数短肽仅显示经典的β-折叠构象。即使三肽LLL也能够表现出扭曲的β-折叠构象,并且通过正确的左旋扭曲,这表明即使是非常短的肽段也具有承担蛋白质表现出的几种特征性拓扑特征的能力。已经对三肽构象进行了广泛的综述,并且该研究的一些结果已包括在此处。 (C)1995 John Wiley&Sons,Inc. [参考:17]

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