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解析马亚罗病毒的纳米力学和振动特性。

Unraveling the Nanomechanical and Vibrational Properties of the Mayaro Virus.

作者信息

Silva França Alefe Roger, Diniz-Filho Joel Félix Silva, Dos Santos Clenilton Costa, Durço Coimbra Laís, Marques Rafael Elias, Barbosa Leandro R S, Santos-Oliveira Ralph, Souza Pedro Filho Noronha, Alencar Luciana Magalhães Rebelo

机构信息

Physics Department, Laboratory of Biophysics and Nanosystems, Federal University of Maranhão, São Luís, MA 65085-580, Brazil.

Brazilian Biosciences National Laboratory (LNBio), Brazilian Center for Research in Energy and Materials (CNPEM), Campinas, SP 13083-970, Brazil.

出版信息

ACS Omega. 2024 Nov 26;9(49):48397-48404. doi: 10.1021/acsomega.4c06749. eCollection 2024 Dec 10.

Abstract

Mayaro virus (MAYV) is an emerging mosquito-borne viral pathogen whose infection results in arthritogenic disease. Despite ongoing research efforts, MAYV biology is largely unknown. Physical virology can assess MAYV nanoparticle metastability, assembly/disassembly, and polymorphism, allowing us to understand virion architecture and dynamics. Here, we employ atomic force microscopy (AFM) and surface enhancement Raman spectroscopy (SERS) to assess MAYV nanomechanical properties, including maps of adhesion force and Young's modulus on individual viral particles. We established topographic maps of MAYV in two and three dimensions, revealing the three-dimensional arrangement and distribution of charges on viral spikes at the virus surface. Furthermore, the organization of the densely packaged RNA, which affords the viral particle exceptional mechanical resistance compared to chikungunya (CHIKV), was observed using MAYV adsorption patterns. The vibrational signature of MAYV particles differs from CHIKV, with more intense protein modes matching the distribution of E1/E2 dimers and the nucleocapsid, which are well structured and suggestive of mechanical strength.

摘要

马亚罗病毒(MAYV)是一种新出现的蚊媒病毒病原体,其感染会导致关节炎疾病。尽管一直在进行研究,但MAYV的生物学特性在很大程度上仍不为人知。物理病毒学可以评估MAYV纳米颗粒的亚稳定性、组装/拆卸和多态性,使我们能够了解病毒粒子的结构和动态。在这里,我们采用原子力显微镜(AFM)和表面增强拉曼光谱(SERS)来评估MAYV的纳米力学特性,包括单个病毒颗粒的粘附力和杨氏模量图谱。我们建立了MAYV的二维和三维地形图,揭示了病毒表面病毒刺突上电荷的三维排列和分布。此外,利用MAYV的吸附模式观察到了紧密包装的RNA的组织情况,与基孔肯雅病毒(CHIKV)相比,这种组织赋予了病毒颗粒非凡的机械抗性。MAYV颗粒的振动特征与CHIKV不同,更强烈的蛋白质模式与E1/E2二聚体和核衣壳的分布相匹配,这些结构良好,表明具有机械强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec04/11635520/9669b9e9a935/ao4c06749_0002.jpg

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