Ermakova Elena A, Faizullin Dzhigangir A, Idiyatullin Bulat Z, Khairutdinov Bulat I, Mukhamedova Liya N, Tarasova Nadezhda B, Toporkova Yana Y, Osipova Elena V, Kovaleva Valentina, Gogolev Yuri V, Zuev Yuriy F, Nesmelova Irina V
Kazan Institute of Biochemistry and Biophysics RAS, Kazan, Russia.
Kazan Institute of Biochemistry and Biophysics RAS, Kazan, Russia.
Int J Biol Macromol. 2016 Mar;84:142-52. doi: 10.1016/j.ijbiomac.2015.12.011. Epub 2015 Dec 11.
Defensins are part of the innate immune system in plants with activity against a broad range of pathogens, including bacteria, fungi and viruses. Several defensins from conifers, including Scots pine defensin 1 (Pinus sylvestris defensin 1, (PsDef1)) have shown a strong antifungal activity, however structural and physico-chemical properties of the family, needed for establishing the structure-dynamics-function relationships, remain poorly characterized. We use several spectroscopic and computational methods to characterize the structure, dynamics, and oligomeric state of PsDef1. The three-dimensional structure was modeled by comparative modeling using several programs (Geno3D, SWISS-MODEL, I-TASSER, Phyre(2), and FUGUE) and verified by circular dichroism (CD) and infrared (FTIR) spectroscopy. Furthermore, FTIR data indicates that the structure of PsDef1 is highly resistant to high temperatures. NMR diffusion experiments show that defensin exists in solution in the equilibrium between monomers and dimers. Four types of dimers were constructed using the HADDOCK program and compared to the known dimer structures of other plant defensins. Gaussian network model was used to characterize the internal dynamics of PsDef1 in monomer and dimer states. PsDef1 is a typical representative of P. sylvestris defensins and hence the results of this study are applicable to other members of the family.
防御素是植物先天免疫系统的一部分,对包括细菌、真菌和病毒在内的多种病原体具有活性。几种来自针叶树的防御素,包括欧洲赤松防御素1(Pinus sylvestris defensin 1,(PsDef1))已显示出强大的抗真菌活性,然而,建立结构-动力学-功能关系所需的该家族的结构和物理化学性质仍未得到充分表征。我们使用多种光谱和计算方法来表征PsDef1的结构、动力学和寡聚状态。通过使用多个程序(Geno3D、SWISS-MODEL、I-TASSER、Phyre(2)和FUGUE)进行比较建模来构建三维结构,并通过圆二色性(CD)和红外(FTIR)光谱进行验证。此外,FTIR数据表明PsDef1的结构对高温具有高度抗性。核磁共振扩散实验表明,防御素在溶液中以单体和二聚体之间的平衡状态存在。使用HADDOCK程序构建了四种类型的二聚体,并与其他植物防御素的已知二聚体结构进行了比较。高斯网络模型用于表征PsDef1在单体和二聚体状态下的内部动力学。PsDef1是欧洲赤松防御素的典型代表,因此本研究的结果适用于该家族的其他成员。