Guo Yu, Liu Baocheng, Ding Zhenzhen, Li Guobang, Liu Meizi, Zhu Dantong, Sun Yuna, Dong Shishang, Lou Zhiyong
State Key Laboratory of Medicinal Chemical Biology and College of Pharmacy, Nankai University, Tianjin, China.
Drug Discovery Center for Infectious Disease, Nankai University, Tianjin, China.
J Virol. 2017 Nov 14;91(23). doi: 10.1128/JVI.00892-17. Print 2017 Dec 1.
The (TSWV) belongs to the genus of the family and represents the sole plant-infecting group within bunyavirus. TSWV encodes a nucleocapsid protein (N) which encapsidates the RNA genome to form a ribonucleoprotein complex (RNP). In addition, the N has multiple roles during the infection of plant cells. Here, we report the crystal structure of the full-length TSWV N. The N features a body domain consisting of an N-lobe and a C-lobe. These lobes clamp a positively charged groove which may constitute the RNA binding site. Furthermore, the body domains are flanked by N- and C-terminal arms which mediate homotypic interactions to the neighboring subunits, resulting in a ring-shaped N trimer. Interestingly, the C terminus of one protomer forms an additional interaction with the protomer of an adjacent trimer in the crystal, which may constitute a higher-order oligomerization contact. In this way, this study provides insights into the structure and trimeric assembly of TSWV N, which help to explain previous functional findings, but also suggests distinct N interactions within a higher-order RNP. TSWV is one of the most devastating plant pathogens that cause severe diseases in numerous agronomic and ornamental crops worldwide. TSWV is also the prototypic member of the genus, which is the sole group of plant-infecting viruses in the bunyavirus family. This study determined the structure of full-length TSWV N in an oligomeric state. The structural observations explain previously identified biological properties of TSWV N. Most importantly, the additional homotypic interaction between the C terminus of one protomer with another protomer indicates that there is a distinct mechanism of RNP formation in the bunyavirus family, thereby enhancing the current knowledge of negative-sense single-stranded RNA virus-encoded N. TSWV N is the last remaining representative N with an unknown structure in the bunyavirus family. Combined with previous studies, the structure of TSWV N helps to build a complete picture of the bunyavirus-encoded N family and reveals a close evolutionary relationship between orthobunyavirus, phlebovirus, hantavirus, and tospovirus.
番茄斑萎病毒(TSWV)属于布尼亚病毒科番茄斑萎病毒属,是布尼亚病毒中唯一能感染植物的病毒组。TSWV编码一种核衣壳蛋白(N),该蛋白将RNA基因组包裹形成核糖核蛋白复合体(RNP)。此外,N在植物细胞感染过程中具有多种作用。在此,我们报道了全长TSWV N的晶体结构。N具有一个由N叶和C叶组成的主体结构域。这些叶夹住一个带正电荷的凹槽,该凹槽可能构成RNA结合位点。此外,主体结构域两侧是N端和C端臂,它们介导与相邻亚基的同型相互作用,形成环形N三聚体。有趣的是,在晶体中,一个原体的C末端与相邻三聚体的原体形成额外的相互作用,这可能构成更高阶的寡聚化接触。通过这种方式,本研究为TSWV N的结构和三聚体组装提供了见解,这有助于解释先前的功能研究结果,同时也揭示了在更高阶RNP内不同的N相互作用。TSWV是最具毁灭性的植物病原体之一,在全球众多农艺作物和观赏作物中引发严重病害。TSWV也是番茄斑萎病毒属的原型成员,是布尼亚病毒科中唯一能感染植物的病毒组。本研究确定了处于寡聚状态的全长TSWV N的结构。这些结构观察结果解释了先前确定的TSWV N的生物学特性。最重要的是,一个原体的C末端与另一个原体之间额外的同型相互作用表明,布尼亚病毒科中存在一种独特的RNP形成机制,从而增进了我们对负义单链RNA病毒编码的N的现有认识。TSWV N是布尼亚病毒科中最后一个结构未知的代表性N。结合先前的研究,TSWV N的结构有助于构建布尼亚病毒编码的N家族的完整图景,并揭示正布尼亚病毒、白蛉病毒、汉坦病毒和番茄斑萎病毒之间密切的进化关系。