Mutual orientation of adenovirus hexon polypeptides in a two-dimensional crystalline array.

E Adám, I Nász
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Abstract

Three profiles of hexons were detected om two-dimensional adenovirus crystalline arrays: (i) approximately ringwise closed hexons with a roundish hole in their centres and with 2-4 electron dense spots in the wall of the rings; (ii) hexons, consisting of three approximately oblong polypeptide enclosing a triangular hole; (iii) triangular hexons, containing three main polypeptides with an Y-shaped slit, instead of a hole, in their centres. Following the examination of directly or computer corrected electron micrographs a tentative model has been developed on the possible mutual "rotation" orientation of hexon polypeptides within the two-dimensional crystalline array. The position of hexons is such that the longer side of a polypeptide of each hexon is next to the end of two polypeptides of its neighbouring hexon, i.e. one polypeptide is linked to two other ones. An irregularity evolves in this "one-to-two" linkage system by the rotation of a hexon, the maximum rotation being 60% degrees, as follows from the hexon's threefold symmetry. The presence of lying hexons and of hexons of different contours, points to irregularities in "vertical" orientation, with the turn reaching even 90 degrees or 180 degrees, i.e. the hexons might be connected in such a way that their originally external or internal parts are facing identical directions.

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腺病毒六邻体多肽在二维晶体阵列中的相互取向。
在二维腺病毒晶体阵列中检测到三种六方体的分布:(i)大约环状封闭六方体,其中心有一个圆孔,环壁上有2-4个电子密集点;(ii)六方体,由三个近似椭圆形的多肽包围一个三角形的孔组成;(iii)三角形六边形,包含三个主要多肽,它们的中心有一个y形的狭缝,而不是一个洞。通过直接或计算机校正的电子显微镜检查,建立了二维晶体阵列内六边形多肽可能的相互“旋转”取向的初步模型。六方体的位置是这样的,每个六方体的多肽的较长一侧紧挨着相邻六方体的两个多肽的末端,即一个多肽与另外两个多肽相连。在这个“一对二”的连杆系统中,一个不规则性是由一个六边形的旋转演变而来的,最大旋转度为60%,从六边形的三重对称性可以看出。躺着的六边形和不同轮廓的六边形的存在,指向“垂直”方向的不规则性,甚至可以达到90度或180度,即六边形可能以这样一种方式连接,即它们原来的外部或内部部分面向相同的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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