Villemain J L, Ma Y, Giedroc D P, Morrical S W
Department of Biochemistry and Biophysics, Texas A & M University, College Station, Texas 77843-2128, USA.
J Biol Chem. 2000 Oct 6;275(40):31496-504. doi: 10.1074/jbc.M002902200.
The gene 32 protein (gp32) of bacteriophage T4 is the essential single-stranded DNA (ssDNA)-binding protein required for phage DNA replication and recombination. gp32 binds ssDNA with high affinity and cooperativity, forming contiguous clusters that optimally configure the ssDNA for recognition by DNA polymerase or recombination enzymes. The precise roles of gp32 affinity and cooperativity in promoting replication and recombination have yet to be defined, however. Previous work established that the N-terminal "B-domain" of gp32 is essential for cooperativity and that point mutations at Arg(4) and Lys(3) positions have varying and dramatic effects on gp32-ssDNA interactions. Therefore, we examined the effects of six different gp32 B-domain mutants on T4 in vitro systems for DNA synthesis and homologous pairing. We find that the B-domain is essential for gp32's stimulation of these reactions. The stimulatory efficacy of gp32 B-domain mutants generally correlates with the hierarchy of relative ssDNA binding affinities, i.e. wild-type gp32 approximately R4K > K3A approximately R4Q > R4T > R4G gp32-B. However, the functional defect of a particular mutant is often greater than can be explained simply by its ability to saturate the ssDNA at equilibrium, suggesting additional defects in the proper assembly and activity of DNA polymerase and recombinase complexes on ssDNA, which may derive from a decreased lifetime of gp32-ssDNA clusters.
噬菌体T4的基因32蛋白(gp32)是噬菌体DNA复制和重组所需的必需单链DNA(ssDNA)结合蛋白。gp32以高亲和力和协同性结合ssDNA,形成连续的簇,从而最佳地配置ssDNA以便被DNA聚合酶或重组酶识别。然而,gp32的亲和力和协同性在促进复制和重组中的精确作用尚未明确。先前的研究表明,gp32的N端“B结构域”对协同性至关重要,并且在Arg(4)和Lys(3)位置的点突变对gp32-ssDNA相互作用有不同程度的显著影响。因此,我们研究了六种不同的gp32 B结构域突变体对T4体外DNA合成和同源配对系统的影响。我们发现B结构域对gp32刺激这些反应至关重要。gp32 B结构域突变体的刺激效果通常与相对ssDNA结合亲和力的等级相关,即野生型gp32≈R4K>K3A≈R4Q>R4T>R4G gp32-B。然而,特定突变体的功能缺陷往往大于仅由其在平衡时饱和ssDNA的能力所能解释的程度,这表明DNA聚合酶和重组酶复合物在ssDNA上的正确组装和活性存在额外缺陷,这可能源于gp32-ssDNA簇寿命的缩短。