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刺突球形状与冠状病毒旋转扩散率。

Peplomer bulb shape and coronavirus rotational diffusivity.

作者信息

Kanso M A, Chaurasia V, Fried E, Giacomin A J

机构信息

Chemical Engineering Department, Polymers Research Group, Queen's University, Kingston, Ontario K7L 3N6, Canada.

Okinawa Institute of Science and Technology, Tancha, Onna, Kunigami District, Okinawa 904-0495, Japan.

出版信息

Phys Fluids (1994). 2021 Mar;33(3):033115. doi: 10.1063/5.0048626. Epub 2021 Mar 30.

Abstract

Recently, the rotational diffusivity of the coronavirus particle in suspension was calculated, from first principles, using general rigid bead-rod theory [M. A. Kanso, Phys. Fluids , 113101 (2020)]. We did so by beading the capsid and then also by replacing each of its bulbous spikes with a single bead. However, each coronavirus spike is a glycoprotein trimer, and each spike bulb is triangular. In this work, we replace each bulbous coronavirus spike with a bead triplet, where each bead of the triplet is charged identically. This paper, thus, explores the role of bulb triangularity on the rotational diffusivity, an effect not previously considered. We thus use energy minimization for the spreading of triangular bulbs over the spherical capsid. The latter both translates and twists the coronavirus spikes relative to one another, and we then next arrive at the rotational diffusivity of the coronavirus particle in suspension, from first principles. We learn that the triangularity of the coronavirus spike bulb decreases its rotational diffusivity. For a typical peplomer population of 74, bulb triangularity decreases the rotational diffusivity by .

摘要

最近,利用一般的刚性珠杆理论,从第一原理出发计算了冠状病毒颗粒在悬浮液中的旋转扩散率[M. A. 坎索,《物理流体》,113101 (2020)]。我们通过将衣壳串珠化,然后还用单个珠子替换其每个球状刺突来进行计算。然而,每个冠状病毒刺突都是一个糖蛋白三聚体,并且每个刺突球是三角形的。在这项工作中,我们用一个三联珠替换每个球状冠状病毒刺突,其中三联珠的每个珠子带有相同的电荷。因此,本文探讨了刺突球三角形对旋转扩散率的作用,这是一个以前未被考虑的效应。我们因此使用能量最小化来使三角形刺突球在球形衣壳上展开。后者会使冠状病毒刺突相对于彼此平移和扭转,然后我们再从第一原理得出冠状病毒颗粒在悬浮液中的旋转扩散率。我们了解到冠状病毒刺突球的三角形会降低其旋转扩散率。对于典型的74个纤突群体,刺突球的三角形会使旋转扩散率降低 。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77fa/8721624/add25f7c737c/PHFLE6-000033-033115_1-g001.jpg

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