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鼠伤寒沙门氏菌HU突变体的亚基特异性表型。

Subunit-specific phenotypes of Salmonella typhimurium HU mutants.

作者信息

Hillyard D R, Edlund M, Hughes K T, Marsh M, Higgins N P

机构信息

Department of Pathology, University of Utah, Salt Lake City 84132.

出版信息

J Bacteriol. 1990 Sep;172(9):5402-7. doi: 10.1128/jb.172.9.5402-5407.1990.

Abstract

Salmonella hupA and hupB mutants were studied to determine the reasons for the high degree of conservation in HU structure in bacteria. We found one HU-1-specific effect; the F'128 plasmid was 25-fold less stable in hupB compared with hupA or wild-type cells. F' plasmids were 120-fold more unstable in hupA hupB double mutants compared with wild-type cells, and the double mutant also had a significant alteration in plasmid DNA structure. pBR322 DNA isolated from hupA hupB strains was deficient in supercoiling by 10 to 15% compared with wild-type cells, and the topoisomer distribution was significantly more heterogeneous than in wild-type or single-mutant strains. Other systems altered by HU inactivation included flagellar phase variation and phage Mu transposition. However, Mu transposition rates were only about fourfold lower in Salmonella HU double mutants. One reason that Salmonella HU double mutants may be less defective for Mu transposition than E. coli is the synthesis in double mutants of a new, small, basic heat-stable protein, which might partially compensate for the loss of HU. The results indicate that although either HU-1 or HU-2 subunit alone may accommodate the cellular need for general chromosomal organization, the selective pressure to conserve HU-1 and HU-2 structure during evolution could involve specialized roles of the individual subunits.

摘要

对沙门氏菌hupA和hupB突变体进行了研究,以确定细菌中HU结构高度保守的原因。我们发现了一种HU-1特异性效应;与hupA或野生型细胞相比,F'128质粒在hupB中的稳定性低25倍。与野生型细胞相比,F'质粒在hupA hupB双突变体中的不稳定性高120倍,并且双突变体在质粒DNA结构上也有显著改变。与野生型细胞相比,从hupA hupB菌株中分离的pBR322 DNA的超螺旋不足10%至15%,并且拓扑异构体分布比野生型或单突变体菌株明显更不均匀。其他因HU失活而改变的系统包括鞭毛相变和噬菌体Mu转座。然而,在沙门氏菌HU双突变体中,Mu转座率仅低约四倍。沙门氏菌HU双突变体对Mu转座的缺陷可能比大肠杆菌小的一个原因是双突变体中合成了一种新的、小的、碱性热稳定蛋白,它可能部分补偿了HU的损失。结果表明,虽然单独的HU-1或HU-2亚基可能满足细胞对一般染色体组织的需求,但在进化过程中保留HU-1和HU-2结构的选择压力可能涉及单个亚基的特殊作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0719/213205/5462948eb9e3/jbacter00123-0675-a.jpg

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