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噬菌体phi 29头尾连接体在六角形堆积阵列和单个颗粒中均呈现13重对称性。

The bacteriophage phi 29 head-tail connector shows 13-fold symmetry in both hexagonally packed arrays and as single particles.

作者信息

Tsuprun V, Anderson D, Egelman E H

机构信息

Department of Cell Biology and Neuroanatomy, University of Minnesota Medical School, Minneapolis 55455-0303.

出版信息

Biophys J. 1994 Jun;66(6):2139-50. doi: 10.1016/S0006-3495(94)81009-4.

Abstract

The symmetry of the phi 29 head-tail connector is controversial: several studies of two-dimensional arrays of the connector have found a 12-fold symmetry, while a recent study of isolated particles has found a 13-fold symmetry. To investigate whether a polymorphism of the structure might explain these different results, electron microscopy and image analysis were used to study both isolated connectors and particles in hexagonally packed arrays. The hexagonally packed arrays have a P1 symmetry, and the connectors displayed 13 subunits both in the arrays and as isolated single particles. While we do not observe a polymorphism between connectors in two-dimensional arrays and as isolated particles, data show that the connectors can exist with either 12 or 13 subunits. A three-dimensional reconstruction of our 13-fold connector was generated by combining an averaged side-view projection with the known symmetry. The structure of rosettes of the connectors formed in the presence of phi 29 prohead RNA (pRNA) was also examined. These rosettes contain five connectors arranged about a single connector in the center, and this arrangement may reflect an essential role of the pRNA in mediating a symmetry mismatch between either a 12- or 13-fold symmetric connector and a putative fivefold symmetric prohead portal vertex into which the connector fits.

摘要

phi 29噬菌体头尾连接体的对称性存在争议:对连接体二维阵列的多项研究发现其具有12重对称性,而最近一项对分离颗粒的研究发现其具有13重对称性。为了研究结构的多态性是否可以解释这些不同的结果,利用电子显微镜和图像分析技术对分离的连接体以及六方堆积阵列中的颗粒进行了研究。六方堆积阵列具有P1对称性,连接体在阵列中以及作为分离的单个颗粒时均显示出13个亚基。虽然我们没有观察到二维阵列中的连接体与分离颗粒之间存在多态性,但数据表明连接体可以以12个或13个亚基的形式存在。通过将平均侧视图投影与已知对称性相结合,生成了我们的13重连接体的三维重建模型。还研究了在phi 29原头部RNA(pRNA)存在下形成的连接体玫瑰花结的结构。这些玫瑰花结包含围绕中心单个连接体排列的五个连接体,这种排列可能反映了pRNA在介导12重或13重对称连接体与连接体所适配的假定五重对称原头部门户顶点之间的对称性错配中发挥的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20c2/1275939/ec9fe661b8da/biophysj00074-0406-a.jpg

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