Louros Nikolaos N, Baltoumas Fotis A, Hamodrakas Stavros J, Iconomidou Vassiliki A
Department of Cell Biology and Biophysics, Faculty of Biology, University of Athens, Panepistimiopolis, 157 01, Athens, Greece.
J Comput Aided Mol Des. 2016 Feb;30(2):153-64. doi: 10.1007/s10822-015-9892-x. Epub 2016 Jan 11.
Pmel17 is a multidomain protein involved in biosynthesis of melanin. This process is facilitated by the formation of Pmel17 amyloid fibrils that serve as a scaffold, important for pigment deposition in melanosomes. A specific luminal domain of human Pmel17, containing 10 tandem imperfect repeats, designated as repeat domain (RPT), forms amyloid fibrils in a pH-controlled mechanism in vitro and has been proposed to be essential for the formation of the fibrillar matrix. Currently, no three-dimensional structure has been resolved for the RPT domain of Pmel17. Here, we examine the structure of the RPT domain by performing sequence threading. The resulting model was subjected to energy minimization and validated through extensive molecular dynamics simulations. Structural analysis indicated that the RPT model exhibits several distinct properties of β-solenoid structures, which have been proposed to be polymerizing components of amyloid fibrils. The derived model is stabilized by an extensive network of hydrogen bonds generated by stacking of highly conserved polar residues of the RPT domain. Furthermore, the key role of invariant glutamate residues is proposed, supporting a pH-dependent mechanism for RPT domain assembly. Conclusively, our work attempts to provide structural insights into the RPT domain structure and to elucidate its contribution to Pmel17 amyloid fibril formation.
Pmel17是一种参与黑色素生物合成的多结构域蛋白。黑色素的生物合成过程由Pmel17淀粉样原纤维的形成所促进,这些原纤维作为支架,对黑素小体中的色素沉积很重要。人Pmel17的一个特定腔结构域包含10个串联的不完全重复序列,称为重复结构域(RPT),它在体外通过pH控制机制形成淀粉样原纤维,并且被认为对纤维状基质的形成至关重要。目前,Pmel17的RPT结构域的三维结构尚未解析。在此,我们通过进行序列穿线来研究RPT结构域的结构。将得到的模型进行能量最小化,并通过广泛的分子动力学模拟进行验证。结构分析表明,RPT模型具有β-螺线管结构的几个独特特性,这些特性被认为是淀粉样原纤维的聚合成分。推导得到的模型通过RPT结构域高度保守的极性残基堆积产生的广泛氢键网络得以稳定。此外,还提出了不变谷氨酸残基的关键作用,支持RPT结构域组装的pH依赖性机制。总之,我们的工作试图为RPT结构域的结构提供结构见解,并阐明其对Pmel17淀粉样原纤维形成的贡献。