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猫免疫缺陷病毒 p15 基质蛋白的生物物理特性分析及晶体结构

Biophysical characterization and crystal structure of the Feline Immunodeficiency Virus p15 matrix protein.

出版信息

Retrovirology. 2013 Jun 24;10:64. doi: 10.1186/1742-4690-10-64.

Abstract

BACKGROUND

Feline Immunodeficiency Virus (FIV) is a viral pathogen that infects domestic cats and wild felids. During the viral replication cycle, the FIV p15 matrix protein oligomerizes to form a closed matrix that underlies the lipidic envelope of the virion. Because of its crucial role in the early and late stages of viral morphogenesis, especially in viral assembly, FIV p15 is an interesting target in the development of potential new therapeutic strategies.

RESULTS

Our biochemical study of FIV p15 revealed that it forms a stable dimer in solution under acidic conditions and at high concentration, unlike other retroviral matrix proteins. We determined the crystal structure of full-length FIV p15 to 2 Å resolution and observed a helical organization of the protein, typical for retroviral matrix proteins. A hydrophobic pocket that could accommodate a myristoyl group was identified, and the C-terminal end of FIV p15, which is mainly unstructured, was visible in electron density maps. As FIV p15 crystallizes in acidic conditions but with one monomer in the asymmetric unit, we searched for the presence of a biological dimer in the crystal. No biological assembly was detected by the PISA server, but the three most buried crystallographic interfaces have interesting features: the first one displays a highly conserved tryptophan acting as a binding platform, the second one is located along a 2-fold symmetry axis and the third one resembles the dimeric interface of EIAV p15. Because the C-terminal end of p15 is involved in two of these three interfaces, we investigated the structure and assembly of a C-terminal-truncated form of p15 lacking 14 residues. The truncated FIV p15 dimerizes in solution at a lower concentration and crystallizes with two molecules in the asymmetric unit. The EIAV-like dimeric interface is the only one to be retained in the new crystal form.

CONCLUSION

The dimeric form of FIV p15 in solution and its extended C-terminal end are characteristic among lentiviral matrix proteins. Crystallographic interfaces revealed several interactions that might be involved in FIV replication. Further studies are needed to better understand their biological relevance in the function of FIV Gag during viral replication.

摘要

背景

猫免疫缺陷病毒(FIV)是一种感染家猫和野生猫科动物的病毒病原体。在病毒复制周期中,FIV p15 基质蛋白寡聚形成一个封闭的基质,位于病毒粒子的脂质包膜下。由于其在病毒形态发生的早期和晚期阶段,特别是在病毒组装中的关键作用,FIV p15 是开发潜在新治疗策略的一个有趣目标。

结果

我们对 FIV p15 的生化研究表明,与其他逆转录病毒基质蛋白不同,它在酸性条件下和高浓度下形成稳定的二聚体。我们确定了全长 FIV p15 的晶体结构,分辨率为 2Å,并观察到蛋白质的螺旋组织,这是逆转录病毒基质蛋白的典型特征。鉴定出一个可以容纳豆蔻酰基的疏水性口袋,并且 FIV p15 的 C 末端主要是无结构的,在电子密度图中可见。由于 FIV p15 在酸性条件下结晶,但在不对称单元中只有一个单体,我们在晶体中寻找生物二聚体的存在。PISA 服务器未检测到生物组装,但三个最隐蔽的晶体学界面具有有趣的特征:第一个显示一个高度保守的色氨酸作为结合平台,第二个位于 2 倍对称轴上,第三个类似于 EIAV p15 的二聚体界面。由于 p15 的 C 末端参与这三个界面中的两个,我们研究了缺乏 14 个残基的 C 末端截断形式的 p15 的结构和组装。截短的 FIV p15 在较低浓度下在溶液中二聚化,并在不对称单元中结晶形成两个分子。EIAV 样二聚体界面是新晶体形式中唯一保留的界面。

结论

溶液中二聚体形式的 FIV p15及其延伸的 C 末端是慢病毒基质蛋白的特征。晶体学界面揭示了几个可能参与 FIV 复制的相互作用。需要进一步的研究来更好地理解它们在病毒复制过程中 FIV Gag 功能中的生物学相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acda/3706335/4ba4943f15b3/1742-4690-10-64-1.jpg

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