Stonehouse N J, Stockley P G
Department of Genetics, University of Leeds, UK.
FEBS Lett. 1993 Nov 22;334(3):355-9. doi: 10.1016/0014-5793(93)80711-3.
The thermal stability of capsids of the bacteriophage MS2, lacking genomic RNA, has been investigated using electron microscopy. Coat protein mutants with amino acid substitutions at residues involved in making contracts at both inter-molecular interfaces and within the coat protein submit are also capable of forming 'empty' capsids of the same size and symmetry as the wild-type protein. Mutations have been characterised which are neutral, deleterious or advantageous in terms of thermal stability. In some cases, the results can be rationalised by reference to the recently refined X-ray crystal structure of the wild-type particle.
利用电子显微镜研究了缺乏基因组RNA的噬菌体MS2衣壳的热稳定性。在分子间界面和衣壳蛋白内部参与形成收缩的残基处具有氨基酸取代的衣壳蛋白突变体,也能够形成与野生型蛋白大小和对称性相同的“空”衣壳。已经鉴定出在热稳定性方面为中性、有害或有利的突变。在某些情况下,可通过参考最近优化的野生型颗粒的X射线晶体结构来解释这些结果。