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单链胶原样结构的构建与设计

Construction and design of single stranded collagen-like structure.

作者信息

Nandel Fateh Singh, Saini Avneet

机构信息

Department of Biophysics, Panjab University, Chandigarh 160014, India.

出版信息

Indian J Biochem Biophys. 2007 Apr;44(2):106-13.

Abstract

Polytheonamide B, a 48 residue long highly cytotoxic polypeptide extracted from marine sponges contains amino acids of alternate chirality and the N-terminal region is rich in t-Leu residues. The aim of this study is to analyze the effect of these alternate chiralities and conformational behavior of various model peptides containing t-Leu, in order to explore their role in designing bioactive peptides that shall offer advantages comparable to polytheonamide B, while circumventing its limitations. The conformational behavior of various peptides constructed from t-Leu of the form Ac-(L/D-X-L/D-Y)n-NHMe, where X = Gly/Ala/Leu and Y = t-Leu has been studied and compared with the corresponding peptides containing Leu residue. The results show that the helix driving capacity of L and D forms of t-Leu is less than that of Leu residue. In poly t-Leu peptides, the population of collagen/inverse collagen-type structures or right/left handed-helical structures for L and D forms respectively is found to be chain length-dependent. The stability of the helical structures is increased by -2 kcal per residue over the collagen-type structure in poly t-Leu peptides with chain length greater than five residues. Molecular view of peptides in collagen-type structure shows that the bulky side chains of t-Leu residues mask the NH moieties of the peptide bond, while the carbonyl groups lying along the helical groove are accessible to the small solvent molecules. Molecular model building suggests that one ethylene glycol molecule interacts by forming hydrogen bonds with carbonyl groups of two adjacent t-Leu residues. To the best of our knowledge, this is the first study of its own kind on the construction of a single-strand collagen/inverse collagen-type structure using unusual amino acid residues. Such synthetic collagen mimetic peptides shall exhibit specific affinity to natural collagen under controlled thermal conditions (heat or laser treatment) and hence can be explored as a new targeting method to attach therapeutic drugs to collagens in the living tissues and to biomaterials that incorporate natural collagens.

摘要

聚醚酰胺B是一种从海洋海绵中提取的由48个残基组成的高细胞毒性多肽,它含有交替手性的氨基酸,且N端区域富含叔亮氨酸(t-Leu)残基。本研究的目的是分析这些交替手性以及含叔亮氨酸的各种模型肽的构象行为的影响,以便探索它们在设计具有生物活性的肽中的作用,这些肽应具有与聚醚酰胺B相当的优势,同时规避其局限性。对由叔亮氨酸构建的各种肽(形式为Ac-(L/D-X-L/D-Y)n-NHMe,其中X = Gly/Ala/Leu且Y = t-Leu)的构象行为进行了研究,并与相应的含亮氨酸残基的肽进行了比较。结果表明,叔亮氨酸的L型和D型的螺旋驱动能力小于亮氨酸残基。在聚叔亮氨酸肽中,L型和D型分别形成的胶原蛋白/反胶原蛋白型结构或右手/左手螺旋结构的数量取决于链长。在链长大于五个残基的聚叔亮氨酸肽中,螺旋结构的稳定性比胶原蛋白型结构每个残基增加了-2千卡。胶原蛋白型结构中肽的分子视图显示,叔亮氨酸残基的庞大侧链掩盖了肽键的NH部分,而沿螺旋槽排列的羰基可被小溶剂分子接触到。分子模型构建表明,一个乙二醇分子通过与两个相邻叔亮氨酸残基的羰基形成氢键相互作用。据我们所知,这是首次使用不寻常的氨基酸残基构建单链胶原蛋白/反胶原蛋白型结构的此类研究。这种合成的胶原蛋白模拟肽在可控的热条件下(加热或激光处理)应表现出对天然胶原蛋白的特异性亲和力,因此可作为一种新的靶向方法进行探索,用于将治疗药物附着到活组织中的胶原蛋白以及包含天然胶原蛋白的生物材料上。

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