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通过变温圆二色光谱和等温滴定量热法分析牙釉蛋白的二级结构和自组装。

Analysis of secondary structure and self-assembly of amelogenin by variable temperature circular dichroism and isothermal titration calorimetry.

作者信息

Lakshminarayanan Rajamani, Yoon Il, Hegde Balachandra G, Fan Daming, Du Chang, Moradian-Oldak Janet

机构信息

Center for Craniofacial Molecular Biology, University of Southern California, Los Angeles, 90033, USA.

出版信息

Proteins. 2009 Aug 15;76(3):560-9. doi: 10.1002/prot.22369.

Abstract

Amelogenin is a proline-rich enamel matrix protein known to play an important role in the oriented growth of enamel crystals. Amelogenin self-assembles to form nanospheres and higher order structures mediated by hydrophobic interactions. This study aims to obtain a better insight into the relationship between primary-secondary structure and self-assembly of amelogenin by applying computational and biophysical methods. Variable temperature circular dichroism studies indicated that under physiological pH recombinant full-length porcine amelogenin contains unordered structures in equilibrium with polyproline type II (PPII) structure, the latter being more populated at lower temperatures. Increasing the concentration of rP172 resulted in the promotion of folding to an ordered beta-structured assembly. Isothermal titration calorimetry dilution studies revealed that at all temperatures, self-assembly is entropically driven due to the hydrophobic effect and the molar heat of assembly (DeltaH(A)) decreases with temperature. Using a computational approach, a profile of domains in the amino acid sequence that have a high propensity to assemble and to have PPII structures has been identified. We conclude that the assembly properties of amelogenin are due to complementarity between the hydrophobic and PPII helix prone regions.

摘要

釉原蛋白是一种富含脯氨酸的釉质基质蛋白,已知其在釉质晶体的定向生长中起重要作用。釉原蛋白通过疏水相互作用自组装形成纳米球和更高阶结构。本研究旨在通过应用计算和生物物理方法,更好地了解釉原蛋白的一级-二级结构与自组装之间的关系。变温圆二色性研究表明,在生理pH条件下,重组全长猪釉原蛋白含有与II型聚脯氨酸(PPII)结构处于平衡的无序结构,后者在较低温度下更为丰富。增加rP172的浓度导致折叠促进形成有序的β结构组装体。等温滴定量热法稀释研究表明,在所有温度下,由于疏水作用,自组装是由熵驱动的,并且组装摩尔热(ΔH(A))随温度降低。使用计算方法,已鉴定出氨基酸序列中具有高组装倾向和具有PPII结构的结构域图谱。我们得出结论,釉原蛋白的组装特性是由于疏水区域和易于形成PPII螺旋的区域之间的互补性。

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