Felczak Magdalena M, Simmons Lyle A, Kaguni Jon M
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824-1319, USA.
J Biol Chem. 2005 Jul 1;280(26):24627-33. doi: 10.1074/jbc.M503684200. Epub 2005 May 5.
In the initiation of bacterial DNA replication, DnaA protein recruits DnaB helicase to the chromosomal origin, oriC, leading to the assemble of the replication fork machinery at this site. Because a region near the N terminus of DnaA is required for self-oligomerization and the loading of DnaB helicase at oriC, we asked if these functions are separable or interdependent by substituting many conserved amino acids in this region with alanine to identify essential residues. We show that alanine substitutions of leucine 3, phenylalanine 46, and leucine 62 do not affect DnaA function in initiation. In contrast, we find on characterization of a mutant DnaA that tryptophan 6 is essential for DnaA function because its substitution by alanine abrogates self-oligomerization, resulting in the failure to load DnaB at oriC. These results indicate that DnaA bound to oriC forms a specific oligomeric structure, which is required to load DnaB helicase.
在细菌DNA复制起始过程中,DnaA蛋白将DnaB解旋酶招募至染色体复制起点oriC,促使复制叉机器在此位点组装。由于DnaA的N端附近区域对于其自身寡聚化以及在oriC处加载DnaB解旋酶是必需的,我们通过将该区域的许多保守氨基酸替换为丙氨酸来鉴定必需残基,从而探究这些功能是可分离的还是相互依赖的。我们发现,亮氨酸3、苯丙氨酸46和亮氨酸62被丙氨酸替换并不影响DnaA在起始过程中的功能。相反,我们在对一个突变型DnaA进行表征时发现,色氨酸6对于DnaA功能至关重要,因为用丙氨酸替换它会消除自身寡聚化,导致无法在oriC处加载DnaB。这些结果表明,结合在oriC上的DnaA形成了一种特定的寡聚结构,这是加载DnaB解旋酶所必需的。