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奇异变形杆菌和粘质沙雷氏菌的单链DNA结合蛋白(SSB)

The single-stranded-DNA-binding proteins (SSB) of Proteus mirabilis and Serratia marcescens.

作者信息

De Vries J, Genschel J, Urbanke C, Thole H, Wackernagel W

机构信息

Genetik, Fachbereich Biologie, Universität Oldenburg, Germany.

出版信息

Eur J Biochem. 1994 Sep 1;224(2):613-22. doi: 10.1111/j.1432-1033.1994.00613.x.

Abstract

The single-stranded-DNA-binding (SSB) proteins from Proteus mirabilis and Serratia marcescens were purified from overproducing Escherichia coli strains, which were devoid of their own ssb gene. The strains harboured an endA insertion mutation and a xonA mutation resulting in the absence of endonuclease I and exonuclease I activities from the preparations. The amino acid sequences of the SSB of all three species are nearly identical in the N-terminal parts of the proteins that contain the DNA-binding domain, but differ in the C-terminal parts. Both proteins have an apparent binding-site size of 65 and 35 nucleotides at high and low salt concentrations, respectively. The association-rate constant for binding to poly(dT) is 3.2 x 10(8) M-1 s-1 for P. mirabilis SSB (PmiSSB) and 3.4 x 10(8) M-1 s-1 for S. marcescens SSB (SmaSSB). These binding parameters are very similar to those of E. coli SSB (EcoSSB). The structural similarity of the proteins is also documented by the finding that they can exchange subunits among each other to form mixed tetramers. The transcriptional regulation of the ssb and uvrA genes from P. mirabilis and S. marcescens in SOS-induced E. coli cells was studied using lacZ fusions. While the uvrA genes were inducible, there was no induction of the ssb genes transcribed divergently from the uvrA genes. Apparently, regions with nucleotide sequence similarity to the E. coli SOS-box preceding the ssb genes of P. mirabilis and S. marcescens had no gross effect on the transcription. Studies on growth of the cells and recovery from ultraviolet damage indicate that the heterologous SSB proteins support DNA replication and recombinational DNA repair of E. coli with the same efficiency as the E. coli SSB protein. Interactions with other E. coli proteins involved in these processes either do not occur, or are not impeded.

摘要

奇异变形杆菌和粘质沙雷氏菌的单链DNA结合(SSB)蛋白是从过量表达的大肠杆菌菌株中纯化得到的,这些大肠杆菌菌株自身不含ssb基因。这些菌株含有endA插入突变和xonA突变,导致制备物中不存在核酸内切酶I和核酸外切酶I活性。所有这三个物种的SSB蛋白在包含DNA结合结构域的蛋白质N端部分氨基酸序列几乎相同,但C端部分不同。两种蛋白质在高盐和低盐浓度下的表观结合位点大小分别为65和35个核苷酸。奇异变形杆菌SSB(PmiSSB)与聚(dT)结合的缔合速率常数为3.2×10⁸ M⁻¹ s⁻¹,粘质沙雷氏菌SSB(SmaSSB)为3.4×10⁸ M⁻¹ s⁻¹。这些结合参数与大肠杆菌SSB(EcoSSB)非常相似。蛋白质之间可以相互交换亚基形成混合四聚体这一发现也证明了这些蛋白质的结构相似性。利用lacZ融合研究了奇异变形杆菌和粘质沙雷氏菌的ssb和uvrA基因在SOS诱导的大肠杆菌细胞中的转录调控。虽然uvrA基因是可诱导的,但与uvrA基因反向转录的ssb基因没有诱导。显然,奇异变形杆菌和粘质沙雷氏菌ssb基因之前与大肠杆菌SOS框核苷酸序列相似的区域对转录没有显著影响。对细胞生长和紫外线损伤恢复的研究表明,异源SSB蛋白支持大肠杆菌的DNA复制和重组DNA修复,效率与大肠杆菌SSB蛋白相同。与参与这些过程的其他大肠杆菌蛋白之间的相互作用要么不发生,要么不受阻碍。

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