首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Theoretically determined three-dimensional structure for the repeating tetrapeptide unit of the circumsporozoite coat protein of the malaria parasite Plasmodium falciparum.
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Theoretically determined three-dimensional structure for the repeating tetrapeptide unit of the circumsporozoite coat protein of the malaria parasite Plasmodium falciparum.

机译:从理论上确定了疟原虫恶性疟原虫环子孢子外壳蛋白的重复四肽单元的三维结构。

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摘要

A model for the three-dimensional structure of the repeating Asn-Pro-Asn-Ala tetrapeptide of the immunodominant circumsporozoite protein of Plasmodium falciparum has been developed. A trial structure in the form of a type I beta turn with asparagine side chains hydrogen-bonded to the backbone peptide linkages was used as a starting point. A repeating oligomer of this trial structure was modeled using energy minimization and molecular dynamics computer simulations in conjunction with image boundary conditions. The most stable structure generated is a right-handed 12(38) helix, which is unlike any previously identified protein secondary structure. The helix has 12 residues per turn, corresponding to an angle of twist of 120 degrees per tetrapeptide unit, and a pitch of 4.95 A, corresponding to a rise of 1.65 A per tetrapeptide unit. It is highly stabilized by extensive hydrogen bonding, with each tetrapeptide unit acting as an acceptor for five hydrogen bonds and as a donor for five hydrogen bonds to residues in adjacent turns as well as having four weak internal hydrogen bonds. A number of nearly isoenergetic variations on the most stable structure that still retained the basic 12(38) helical motif were also discovered. The implications of these structures for vaccine development are discussed.
机译:已经开发了恶性疟原虫免疫显性环子孢子蛋白的重复Asn-Pro-Asn-Ala-四肽的三维结构的模型。以I型β转角形式的试验结构作为起点,该试验结构具有氢键连接至主链肽键的天冬酰胺侧链。使用能量最小化和分子动力学计算机模拟结合图像边界条件对这种试验结构的重复低聚物进行建模。生成的最稳定的结构是右手12(38)螺旋,它不同于以前确定的任何蛋白质二级结构。螺旋每转具有12个残基,对应于每个四肽单元120度的扭转角,和4.95 A的螺距,对应于每个四肽单元上升1.65A。它通过广泛的氢键高度稳定,每个四肽单元充当五个氢键的受体,并充当与相邻匝中的残基的五个氢键的供体,并具有四个弱内部氢键。还发现了在最稳定的结构上仍保留基本12(38)螺旋基序的许多近等能量变化。讨论了这些结构对疫苗开发的影响。

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