Maurides P A, Schwarz J J, Berget P B
Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213-3890.
Genetics. 1990 Aug;125(4):673-81. doi: 10.1093/genetics/125.4.673.
The tailspike protein of bacteriophage P22 assembles with mature capsids during the final reaction in phage morphogenesis. The gene 9 mutation hmH3034 synthesizes a tailspike protein with a change at amino acid 100 from Asp to Asn. This mutant form of trimeric tailspike protein fails to assemble with capsids in vivo. By using in vitro quantitative tailspike-capsid assembly assays, this mutant tailspike trimer can be shown to assemble with capsids at very high tailspike concentrations. From these assays, we estimate that this single missense mutation decreases by 100-500-fold the affinity of the tailspike for capsids. Furthermore, hmH3034 tailspike protein has a structural defect which makes the mature tailspike trimers sensitive to SDS at room temperature and causes the trimers to "partially unfold." Spontaneously arising intragenic suppressors of the capsid assembly defect have been isolated. All of these suppressors are changes at amino acid 13 of the tailspike protein, which substitute His, Leu or Ser for the wild type amino acid Arg. These hmH3034/sup3034 mutants and the separated sup3034 mutants form fully functional tailspike proteins with assembly activities indistinguishable from wild type while retaining the SDS-sensitive structural defect. From the analysis of the hmH3034 mutant and its suppressors, we propose that in the wild-type tailspike protein, the Asp residue at position 100 and the Arg residue at position 13 form an intrachain or interchain salt bridge which stabilizes the amino terminus of the tailspike protein and that the unneutralized positive charge at amino acid 13 in the hmH3034 protein is the cause of the assembly defect of this protein.(ABSTRACT TRUNCATED AT 250 WORDS)
噬菌体P22的尾钉蛋白在噬菌体形态发生的最后反应中与成熟衣壳组装在一起。基因9突变hmH3034合成的尾钉蛋白在氨基酸100处由天冬氨酸变为天冬酰胺。这种三聚体尾钉蛋白的突变形式在体内无法与衣壳组装。通过体外定量尾钉-衣壳组装试验表明,这种突变的尾钉三聚体在非常高的尾钉浓度下能与衣壳组装。从这些试验中,我们估计这个单一错义突变使尾钉对衣壳的亲和力降低了100 - 500倍。此外,hmH3034尾钉蛋白存在结构缺陷,使得成熟的尾钉三聚体在室温下对SDS敏感,并导致三聚体“部分展开”。已分离出衣壳组装缺陷的自发产生的基因内抑制子。所有这些抑制子都是尾钉蛋白氨基酸13处的变化,用组氨酸、亮氨酸或丝氨酸取代了野生型氨基酸精氨酸。这些hmH3034/sup3034突变体和分离的sup3034突变体形成了功能完全正常的尾钉蛋白,其组装活性与野生型无明显差异,同时保留了对SDS敏感的结构缺陷。通过对hmH3034突变体及其抑制子的分析,我们提出在野生型尾钉蛋白中,100位的天冬氨酸残基和13位的精氨酸残基形成链内或链间盐桥,稳定尾钉蛋白的氨基末端,hmH3034蛋白中13位氨基酸未中和的正电荷是该蛋白组装缺陷的原因。(摘要截短于250字)