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鸡胚致死孤儿(CELO)腺病毒主要衣壳蛋白六邻体的纳米多孔晶体。

Nanoporous crystals of chicken embryo lethal orphan (CELO) adenovirus major coat protein, hexon.

作者信息

Xu Lan, Benson Stacy D, Burnett Roger M

机构信息

The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, USA.

出版信息

J Struct Biol. 2007 Feb;157(2):424-31. doi: 10.1016/j.jsb.2006.08.017. Epub 2006 Sep 14.

Abstract

CELO (chicken embryo lethal orphan) virus is an avian adenovirus that is being developed as a gene transfer vector. Its trimeric major coat protein (942 residues, 106,709 Da) has 42% sequence identity to human adenovirus type 2 (AdH2) hexon and 45% to AdH5 hexon. For structural studies, the growth of CELO virus has been optimized, and its hexon purified and crystallized. The hexon crystals, the first non-human example, diffract to 3.9 A resolution. Molecular replacement using the AdH5 model was used to identify the location of the CELO hexon within the unit cell. There is one hexon monomer in the asymmetric unit of the trigonal space group P321 (a=b=157.8 A, c=114.2 A, gamma=120 degrees) and the solvent content is 67.8%. The hexons pack in a hexagonal honeycomb so that large approximately 100 A diameter channels run through the entire crystal. This remarkable property of the crystals lends itself to their exploitation as a nanomaterial. Structural studies on CELO will elucidate the differences between avian and human adenoviruses and contribute to a better understanding of adenoviruses with non-human hosts.

摘要

鸡胚致死孤儿病毒(CELO病毒)是一种禽腺病毒,正被开发用作基因转移载体。其三聚体主要衣壳蛋白(942个残基,106,709道尔顿)与2型人腺病毒(AdH2)六邻体的序列同一性为42%,与AdH5六邻体的序列同一性为四十五%。为了进行结构研究,已优化了CELO病毒的生长,并对其六邻体进行了纯化和结晶。这些六邻体晶体是首个非人类的例子,衍射分辨率达到3.9埃。使用AdH5模型进行分子置换,以确定CELO六邻体在晶胞中的位置。在三方空间群P321(a = b = 157.8埃,c = 114.2埃,γ = 120度)的不对称单元中有一个六邻体单体,溶剂含量为67.8%。六邻体以六边形蜂窝状排列,因此直径约100埃的大通道贯穿整个晶体。晶体的这一显著特性使其适合用作纳米材料。对CELO病毒的结构研究将阐明禽腺病毒和人腺病毒之间的差异,并有助于更好地理解非人类宿主中的腺病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c36/1941783/e8cf58570972/nihms17502f1.jpg

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