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将修饰肽键的非编码α-氨基酸的固有构象偏好整合到非编码氨基酸数据库中。

Integrating the intrinsic conformational preferences of noncoded α-amino acids modified at the peptide bond into the noncoded amino acids database.

机构信息

Departament d'Enginyeria Química, ETS d'Enginyeria Industrial de Barcelona, Universitat Politècnica de Catalunya, Diagonal 647, 08028 Barcelona, Spain.

出版信息

Proteins. 2011 Jun;79(6):1841-52. doi: 10.1002/prot.23009. Epub 2011 Apr 12.

DOI:10.1002/prot.23009
PMID:21491493
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3092812/
Abstract

Recently, we reported a database (Noncoded Amino acids Database; http://recerca.upc.edu/imem/index.htm) that was built to compile information about the intrinsic conformational preferences of nonproteinogenic residues determined by quantum mechanical calculations, as well as bibliographic information about their synthesis, physical and spectroscopic characterization, the experimentally established conformational propensities, and applications (Revilla-López et al., J Phys Chem B 2010;114:7413-7422). The database initially contained the information available for α-tetrasubstituted α-amino acids. In this work, we extend NCAD to three families of compounds, which can be used to engineer peptides and proteins incorporating modifications at the--NHCO--peptide bond. Such families are: N-substituted α-amino acids, thio-α-amino acids, and diamines and diacids used to build retropeptides. The conformational preferences of these compounds have been analyzed and described based on the information captured in the database. In addition, we provide an example of the utility of the database and of the compounds it compiles in protein and peptide engineering. Specifically, the symmetry of a sequence engineered to stabilize the 3(10)-helix with respect to the α-helix has been broken without perturbing significantly the secondary structure through targeted replacements using the information contained in the database.

摘要

最近,我们报道了一个数据库(非编码氨基酸数据库;http://recerca.upc.edu/imem/index.htm),该数据库用于编译通过量子力学计算确定的非蛋白质残基固有构象偏好的信息,以及关于它们的合成、物理和光谱特性、实验确定的构象倾向和应用的文献信息(Revilla-López 等人,J Phys Chem B 2010;114:7413-7422)。该数据库最初包含了α-四取代α-氨基酸的可用信息。在这项工作中,我们将 NCAD 扩展到三类化合物,可用于设计在-NHCO-肽键处进行修饰的肽和蛋白质。这些家族是:N-取代的α-氨基酸、硫代-α-氨基酸和二胺和二酸,用于构建反向肽。这些化合物的构象偏好已经根据数据库中捕获的信息进行了分析和描述。此外,我们还提供了一个数据库和它所编译的化合物在蛋白质和肽工程中的应用示例。具体来说,通过使用数据库中包含的信息进行有针对性的替换,打破了一个序列的对称性,该序列经过工程设计以相对于α-螺旋稳定 3(10)-螺旋,而不会显著扰乱二级结构。

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NCAD, a database integrating the intrinsic conformational preferences of non-coded amino acids.NCAD,一个整合了非编码氨基酸固有构象偏好的数据库。
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Protein segments with conformationally restricted amino acids can control supramolecular organization at the nanoscale.含有构象受限氨基酸的蛋白质片段能够在纳米尺度上控制超分子组织。
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In vivo incorporation of unnatural amino acids to probe structure, dynamics, and ligand binding in a large protein by nuclear magnetic resonance spectroscopy.通过核磁共振光谱法在体内掺入非天然氨基酸以探测大蛋白的结构、动力学和配体结合。
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