Department of Chemistry and Biochemistry, and Center for One Health Studies, Berry College, Mt. Berry, GA 30149, USA.
Department of Chemistry and Biochemistry, and Center for One Health Studies, Berry College, Mt. Berry, GA 30149, USA.
J Mol Biol. 2019 Mar 15;431(6):1203-1216. doi: 10.1016/j.jmb.2019.01.036. Epub 2019 Feb 4.
Bovine leukemia virus (BLV) is a deltaretrovirus that infects domestic cattle. The structural protein Gag, found in all retroviruses, is a polyprotein comprising three major functional domains: matrix (MA), capsid (CA), and nucleocapsid (NC). Previous studies have shown that both mature BLV MA and NC are able to bind to nucleic acids; however, the viral assembly process and packaging of viral genomic RNA requires full-length Gag to produce infectious particles. Compared to lentiviruses, little is known about the structure of the Gag polyprotein of deltaretroviruses. In this work, structural models of full-length BLV Gag and Gag lacking the MA domain were generated based on previous structural data of individual domains, homology modeling, and flexible fitting to SAXS data using molecular dynamics. The models were used in molecular dynamic simulations to determine the relative mobility of the protein backbone. Functional annealing assays revealed the role of MA in the nucleic acid chaperone activity of BLV Gag. Our results show that full-length BLV Gag has an elongated rod-shaped structure that is relatively rigid, with the exception of the linker between the MA and CA domains. Deletion of the MA domain maintains the elongated structure but alters the rate of BLV Gag-facilitated annealing of two complementary nucleic acids. These data are consistent with a role for the MA domain of retroviral Gag proteins in modulating nucleic acid binding and chaperone activity. IMPORTANCE: BLV is a retrovirus that is found worldwide in domestic cattle. Since BLV infection has serious implications for agriculture, and given its similarities to human retroviruses such as HTLV-1, the development of an effective treatment would have numerous benefits. The Gag polyprotein exists in all retroviruses and is a key player in viral assembly. However, the full-length structure of Gag from any virus has yet to be elucidated at high resolution. This study provides structural data for BLV Gag and could be a starting point for modeling Gag-small molecule interactions with the ultimate goal of developing of a new class of pharmaceuticals.
牛白血病病毒(BLV)是一种感染家畜的δ逆转录病毒。所有逆转录病毒中都存在的结构蛋白 Gag 是一种多蛋白,包含三个主要功能域:基质(MA)、衣壳(CA)和核衣壳(NC)。先前的研究表明,成熟的 BLV MA 和 NC 都能够与核酸结合;然而,病毒的组装过程和病毒基因组 RNA 的包装需要全长 Gag 来产生感染性颗粒。与慢病毒相比,人们对δ逆转录病毒的 Gag 多蛋白结构知之甚少。在这项工作中,基于先前的各个结构域的结构数据、同源建模和使用分子动力学对 SAXS 数据的灵活拟合,生成了全长 BLV Gag 和缺少 MA 结构域的 Gag 结构模型。这些模型用于分子动力学模拟,以确定蛋白质骨架的相对移动性。功能退火实验揭示了 MA 在 BLV Gag 核酸伴侣活性中的作用。我们的结果表明,全长 BLV Gag 具有拉长的棒状结构,相对刚性,除了 MA 和 CA 结构域之间的连接子之外。MA 结构域的缺失保持了拉长的结构,但改变了 BLV Gag 促进两种互补核酸退火的速率。这些数据与逆转录病毒 Gag 蛋白的 MA 结构域在调节核酸结合和伴侣活性中的作用一致。重要性:BLV 是一种在世界范围内的家畜中发现的逆转录病毒。由于 BLV 感染对农业有严重影响,并且由于其与人类逆转录病毒如 HTLV-1 相似,因此开发有效的治疗方法将有许多好处。Gag 多蛋白存在于所有逆转录病毒中,是病毒组装的关键因素。然而,任何病毒的全长 Gag 结构尚未以高分辨率阐明。这项研究为 BLV Gag 提供了结构数据,可能成为建模 Gag-小分子相互作用的起点,最终目标是开发一类新的药物。