首页> 外文期刊>PLoS Computational Biology >Structural Similarities and Differences between Amyloidogenic and Non-Amyloidogenic Islet Amyloid Polypeptide (IAPP) Sequences and Implications for the Dual Physiological and Pathological Activities of These Peptides
【24h】

Structural Similarities and Differences between Amyloidogenic and Non-Amyloidogenic Islet Amyloid Polypeptide (IAPP) Sequences and Implications for the Dual Physiological and Pathological Activities of These Peptides

机译:淀粉样生成和非淀粉样生成的胰岛淀粉样多肽(IAPP)序列之间的结构相似性和差异以及这些肽的双重生理和病理活性的意义。

获取原文
           

摘要

IAPP, a 37 amino-acid peptide hormone belonging to the calcitonin family, is an intrinsically disordered protein that is coexpressed and cosecreted along with insulin by pancreatic islet β-cells in response to meals. IAPP plays a physiological role in glucose regulation; however, in certain species, IAPP can aggregate and this process is linked to β-cell death and Type II Diabetes. Using replica exchange molecular dynamics with extensive sampling (16 replicas per sequence and 600 ns per replica), we investigate the structure of the monomeric state of two species of aggregating peptides (human and cat IAPP) and two species of non-aggregating peptides (pig and rat IAPP). Our simulations reveal that the pig and rat conformations are very similar, and consist of helix-coil and helix-hairpin conformations. The aggregating sequences, on the other hand, populate the same helix-coil and helix-hairpin conformations as the non-aggregating sequence, but, in addition, populate a hairpin structure. Our exhaustive simulations, coupled with available peptide-activity data, leads us to a structure-activity relationship (SAR) in which we propose that the functional role of IAPP is carried out by the helix-coil conformation, a structure common to both aggregating and non-aggregating species. The pathological role of this peptide may have multiple origins, including the interaction of the helical elements with membranes. Nonetheless, our simulations suggest that the hairpin structure, only observed in the aggregating species, might be linked to the pathological role of this peptide, either as a direct precursor to amyloid fibrils, or as part of a cylindrin type of toxic oligomer. We further propose that the helix-hairpin fold is also a possible aggregation prone conformation that would lead normally non-aggregating variants of IAPP to form fibrils under conditions where an external perturbation is applied. The SAR relationship is used to suggest the rational design of therapeutics for treating diabetes.
机译:IAPP是降钙素家族的37个氨基酸的肽激素,是一种内在失调的蛋白质,可通过餐后胰岛β细胞与胰岛素一起共表达和共分泌。 IAPP在葡萄糖调节中起着生理作用。但是,在某些物种中,IAPP可以聚集,并且该过程与β细胞死亡和II型糖尿病有关。使用具有大量采样的副本交换分子动力学(每个序列16个副本和每个副本600 ns),我们研究了两种聚合肽(人和猫IAPP)和两种非聚合肽(猪)的单体状态结构和大鼠IAPP)。我们的模拟显示,猪和大鼠的构象非常相似,并且由螺旋线圈和螺旋发夹结构组成。另一方面,聚集序列填充与非聚集序列相同的螺旋-螺旋和螺旋-发夹构象,但是此外,填充发夹结构。我们的详尽模拟与可用的肽-活性数据相结合,使我们建立了结构-活性关系(SAR),在该结构中,我们建议IAPP的功能作用是通过螺旋-螺旋构象来实现的,螺旋-构象是聚合和聚合的共同结构非聚集物种。该肽的病理作用可能有多种起源,包括螺旋元件与膜的相互作用。尽管如此,我们的模拟表明,仅在聚集物种中观察到的发夹结构可能与该肽的病理作用有关,可以作为淀粉样原纤维的直接前体,也可以作为圆柱蛋白类型的有毒低聚物的一部分。我们进一步提出,螺旋-发夹折叠也是可能的倾向于聚集的构象,其将导致通常在施加外部扰动的条件下IAPP的非聚集变体形成原纤维。 SAR关系用于建议合理设计治疗糖尿病的疗法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号