Russian-Armenian University, Yerevan, 0051, Armenia.
Laboratory of Computation Modeling of Biological Processes, Institute of Molecular Biology, National Academy of Sciences of the Republic of Armenia, Yerevan, 0014, Armenia.
Proteins. 2018 Jun;86(6):676-683. doi: 10.1002/prot.25494. Epub 2018 Apr 1.
Pyrin protein is the product of the MEFV gene, mutations in which cause manifestation of familial Mediterranean fever (FMF). Functions of pyrin are not completely clear. The secondary structure of the pyrin is represented with four domains and two motifs. Mutations p.M680I, p.M694V, p.M694I, p.K695R, p.V726A, and p.A744S, which are located in the B30.2 domain of pyrin protein, are responsible for manifestation of the most common and severe forms of FMF. All the domains and the motifs of pyrin, are directly or indirectly, involved in the protein-protein interaction with proteins of apoptosis and regulate the cascade of inflammatory reactions, which is impaired due to pyrin mutations. It is well known, that malfunction of the pyrin-caspase-1 complex is the main reason of inflammation during FMF. Complete tertiary structure of pyrin and the effects of mutations in it are experimentally not studied yet. The aim of this study was to identify possible effects of the abovementioned mutations in the B30.2 domain tertiary structure and to determine their potential consequences in formation of the B30.2-caspase-1 complex. Using in silico methods, it was found, that these mutations led to structural rearrangements in B30.2 domain tertiary structure, causing shifts of binding sites and altering the interaction energy between B30.2 and caspase-1.
Pyrin 蛋白是 MEFV 基因的产物,该基因突变会导致家族性地中海热(FMF)的发生。Pyrin 的功能尚不完全清楚。Pyrin 的二级结构由四个结构域和两个基序组成。位于 Pyrin 蛋白 B30.2 结构域的突变 p.M680I、p.M694V、p.M694I、p.K695R、p.V726A 和 p.A744S 是导致最常见和最严重形式的 FMF 发生的原因。Pyrin 的所有结构域和基序都直接或间接地参与与凋亡蛋白的蛋白-蛋白相互作用,并调节炎症反应级联,由于 Pyrin 突变,该级联反应受到损害。众所周知,Pyrin-caspase-1 复合物的功能障碍是 FMF 期间炎症的主要原因。Pyrin 的完整三级结构及其突变的影响尚未在实验中研究过。本研究的目的是确定上述突变对 B30.2 结构域三级结构的可能影响,并确定它们在形成 B30.2-caspase-1 复合物中的潜在后果。通过计算方法发现,这些突变导致 B30.2 结构域三级结构发生结构重排,导致结合位点移位,并改变 B30.2 与 caspase-1 之间的相互作用能。