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基于冷冻电子显微镜数据构建的肿胀型CCMV的伪原子模型。

Pseudo-atomic models of swollen CCMV from cryo-electron microscopy data.

作者信息

Liu Hongjun, Qu Chunxu, Johnson John E, Case David A

机构信息

Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

J Struct Biol. 2003 Jun;142(3):356-63. doi: 10.1016/s1047-8477(03)00028-5.

Abstract

The capsid of cowpea chlorotic mottle virus (CCMV) can reversibly switch between two forms that are contingent on the charge of acidic residues that are clustered at the quasi-threefold axes of the T=3 icosahedral particle. The quaternary structure conformations are dependent on divalent metal ions and pH and were previously analyzed by crystallography in the native, compact form, and by cryo-electron microscopy in the compact and swollen forms (Speir et al., 1995). In this report we use the atomic models of the three structurally unique viral subunits determined by crystallography for a detailed interpretation of the 28-A-resolution electron density of the swollen form and the production of a pseudo-atomic model of this particle. The model of the quaternary structure conforms with high fidelity to conventional geometric constraints, quasi-equivalence, intersubunit association energies, and the electron density. It was derived by conserving the pentamers and hexamers of subunits whose associated electron densities are strikingly similar in the two forms of the particles. Treating these as rigid units in the modeling implies that the particle flexibility is accommodated primarily by changes in dimer interactions, an observation that is consistent with the flexible C-terminal polypeptide extensions that stabilize this contact in the crystal structure. Because the hexamers and pentamers were incrementally translated and rotated in a screw motion, with energy minimization at each of 28 steps, a path for the expansion is also implied.

摘要

豇豆褪绿斑驳病毒(CCMV)的衣壳可以在两种形式之间可逆地转换,这两种形式取决于聚集在T = 3二十面体颗粒准三重轴上的酸性残基的电荷。四级结构构象取决于二价金属离子和pH值,之前通过晶体学分析了其天然紧密形式,通过冷冻电子显微镜分析了紧密和肿胀形式(Speir等人,1995年)。在本报告中,我们使用通过晶体学确定的三种结构独特的病毒亚基的原子模型,对肿胀形式的28埃分辨率电子密度进行详细解释,并生成该颗粒的伪原子模型。四级结构模型与传统几何约束、准等价性、亚基间缔合能和电子密度高度保真地相符。它是通过保留亚基的五聚体和六聚体推导出来的,这些亚基在颗粒的两种形式中相关的电子密度非常相似。在建模中将这些视为刚性单元意味着颗粒的灵活性主要通过二聚体相互作用的变化来适应,这一观察结果与在晶体结构中稳定这种接触的灵活C末端多肽延伸一致。由于六聚体和五聚体以螺旋运动逐步平移和旋转,在28个步骤中的每一步都进行能量最小化,因此也暗示了一种扩展路径。

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