Rozewicki John, Li Songling, Katoh Kazutaka, Standley Daron M
Research Institute for Microbial Diseases, Osaka University, Osaka, Japan.
Immunology Frontier Research Center, Osaka University, Osaka, Japan.
Methods Mol Biol. 2021;2231:163-177. doi: 10.1007/978-1-0716-1036-7_11.
The Database of Aligned Structural Homologs (DASH) is a tool for efficiently navigating the Protein Data Bank (PDB) by means of pre-computed pairwise structural alignments. We recently showed that, by integrating DASH structural alignments with the multiple sequence alignment (MSA) software MAFFT, we were able to significantly improve MSA accuracy without dramatically increasing manual or computational complexity. In the latest DASH update, such queries are not limited to PDB entries but can also be launched from user-provided protein coordinates. Here, we describe a further extension of DASH that retrieves intermolecular interactions of all structurally similar domains in the PDB to a query domain of interest. We illustrate these new features using a model of the NYN domain of the ribonuclease N4BP1 as an example. We show that the protein-nucleotide interactions returned are distributed on the surface of the NYN domain in an asymmetric manner, roughly centered on the known nuclease active site.
比对结构同源物数据库(DASH)是一种通过预先计算的成对结构比对来高效浏览蛋白质数据库(PDB)的工具。我们最近表明,通过将DASH结构比对与多序列比对(MSA)软件MAFFT相结合,我们能够在不显著增加人工或计算复杂度的情况下显著提高MSA的准确性。在最新的DASH更新中,此类查询不仅限于PDB条目,还可以从用户提供的蛋白质坐标发起。在这里,我们描述了DASH的进一步扩展,它可以检索PDB中所有与感兴趣的查询域结构相似的域的分子间相互作用。我们以核糖核酸酶N4BP1的NYN结构域模型为例来说明这些新功能。我们表明,返回的蛋白质-核苷酸相互作用以不对称的方式分布在NYN结构域的表面,大致以已知的核酸酶活性位点为中心。