Kheirabadi Mitra, Taghdir Majid
Department of Biology, Faculty of Basic Science, Hakim Sabzevari University, 9617976487 Sabzevar, Iran.
Departmentof Biophysics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Biochem Biophys Rep. 2016 Aug 4;8:14-22. doi: 10.1016/j.bbrep.2016.07.018. eCollection 2016 Dec.
Intracellularlocation of a viral unspliced mRNA in host cell is a crucial factor for normal life of the virus. Rex is a neucleo-cytoplasmic shuffling protein of Human T-cell Leukemia Virus-1(HTLV-1)which has important role in active transport of cargo-containing RNA from nucleus to cytoplasm. Therefore, it plays a crucial role in the disease development by the virus. In spite of its importance, the 3d-structurephosphorylated and unphosphorylated of this protein has not been determined. In this study, first we predicted whether Rex protein is an ordered or disordered protein. In second step protein 3Dstructure of Rex was obtained. The content of disorder-promoting amino acids, flexibility, hydrophobicity, short linear motifs (SLiMs) and protein binding regions and probability of Rex crystallization were calculated by various In Silico methods. The3D models of Rex protein were obtained by various In Silico methods, such as homology modeling, threading and ab initio, including; I-TASSER, LOMETS, SPARSKS, ROBBETA and QUARK servers. By comparing and analyzing Qmean, z-scores and energy levels of selected models, the best structures with highest favored region in Ramachandran plot (higher than 90%) was refined with MODREFINER software. In silico analysis of Rex physicochemical properties and also predicted SLiMs and binding regions sites confirms that unphosphorylated Rex protein in HTLV-1 as Rev protin in HIV is wholly disordered protein belongs to the class of intrinsically disordered proteins with extended disorder (native coils, native pre-molten globules).
病毒未剪接的mRNA在宿主细胞内的定位是病毒正常生命活动的关键因素。Rex是人类T细胞白血病病毒1型(HTLV-1)的一种核质穿梭蛋白,在含货物的RNA从细胞核到细胞质的主动运输中起重要作用。因此,它在病毒引起的疾病发展中起关键作用。尽管其很重要,但该蛋白磷酸化和未磷酸化的三维结构尚未确定。在本研究中,首先我们预测Rex蛋白是有序蛋白还是无序蛋白。第二步获得了Rex的蛋白质三维结构。通过各种计算机模拟方法计算了促进无序的氨基酸含量、柔韧性、疏水性、短线性基序(SLiMs)、蛋白质结合区域以及Rex结晶的可能性。通过各种计算机模拟方法,如同源建模、穿线法和从头计算法,包括I-TASSER、LOMETS、SPARSKS、ROBBETA和QUARK服务器,获得了Rex蛋白的三维模型。通过比较和分析所选模型的Qmean、z分数和能量水平,使用MODREFINER软件对在拉氏图中具有最高偏好区域(高于90%)的最佳结构进行了优化。对Rex理化性质以及预测的SLiMs和结合区域位点的计算机模拟分析证实,HTLV-1中未磷酸化的Rex蛋白与HIV中的Rev蛋白一样,是完全无序的蛋白,属于具有延伸无序(天然卷曲、天然预熔球状体)的内在无序蛋白类别。