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胶原蛋白三嵌段肽的超分子组装

Supramolecular assembly of collagen triblock peptides.

作者信息

Martin Raquel, Waldmann Lars, Kaplan David L

机构信息

Department of Chemical Engineering and Biotechnology Center, Tufts University, 4 Colby Street, Massachusetts 02155, USA.

出版信息

Biopolymers. 2003 Dec;70(4):435-44. doi: 10.1002/bip.10464.

Abstract

The relationship between primary sequence and collagen triple-helix formation is relatively well characterized, while higher levels of structural assembly from these sequences is poorly understood. To address this gap, a new collagen-like triblock peptide design was used to study the relationship between amino acid sequence and supramolecular assembly. Four collagen-like peptides with the sequence (Glu)(5)(Gly-Xaa-Hyp-Gly-Pro-Hyp)(6)(Glu)(5) and corresponding to Xaa = alanine, proline, serine, or valine, and an analogous peptide without the glutamic acid end blocks, were solubilized in water at high concentrations (20-150 mg/mL) and analyzed in optical polarizing microscopy and transmission electron microscopy. Some of the peptides self-assembled into supramolecular structures, the nature of which was determined by the core collagen-like sequence. The globular end blocks appeared necessary for these short triple-helix-forming peptides to spontaneously organize into supramolecular structures in solution and also provided enhanced thermal stability based on CD analysis. The results indicate a strong dependence of the peptide triblock assembly behavior on the identity of the guest residue Xaa; nematic order when Xaa was valine, no organization when Xaa was serine, and banded spherulites displaying a cholesteric-like twist when Xaa was proline or alanine. According to these results, the identity of the amino acid in position Xaa of the triplet Gly-Xaa-Yaa dramatically determined the type of supramolecular assembly formed by short triple helices based on collagen-triblock like sequences. Moreover, the structural organization observed for these collagen-triblock peptides was analogous to some assemblies observed for native collagen in vivo and in vitro. The amino acid sequence in the native collagen proteins may therefore be a direct determinant of the different supramolecular architectures found in connective tissues.

摘要

一级序列与胶原蛋白三螺旋形成之间的关系已得到较好的表征,而这些序列更高层次的结构组装却知之甚少。为了填补这一空白,一种新的类胶原蛋白三嵌段肽设计被用于研究氨基酸序列与超分子组装之间的关系。四种具有序列(Glu)(5)(Gly-Xaa-Hyp-Gly-Pro-Hyp)(6)(Glu)(5)且对应Xaa = 丙氨酸、脯氨酸、丝氨酸或缬氨酸的类胶原蛋白肽,以及一种没有谷氨酸末端块的类似肽,在高浓度(20 - 150 mg/mL)下溶解于水中,并通过光学偏光显微镜和透射电子显微镜进行分析。一些肽自组装成超分子结构,其性质由核心类胶原蛋白序列决定。球状末端块对于这些短的三螺旋形成肽在溶液中自发组织成超分子结构似乎是必要的,并且基于圆二色性分析还提供了增强的热稳定性。结果表明肽三嵌段组装行为强烈依赖于客体残基Xaa的身份;当Xaa为缬氨酸时为向列相序,当Xaa为丝氨酸时无组织,当Xaa为脯氨酸或丙氨酸时为带状球晶,呈现胆甾相样扭曲。根据这些结果,三联体Gly-Xaa-Yaa中Xaa位置的氨基酸身份极大地决定了基于类胶原蛋白三嵌段序列的短三螺旋形成的超分子组装类型。此外,观察到的这些类胶原蛋白三嵌段肽的结构组织类似于在体内和体外观察到的天然胶原蛋白的一些组装。因此,天然胶原蛋白蛋白质中的氨基酸序列可能是结缔组织中发现的不同超分子结构的直接决定因素。

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