Davydova Elena K, Rothman-Denes Lucia B
Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, IL 60637, USA.
Proc Natl Acad Sci U S A. 2003 Aug 5;100(16):9250-5. doi: 10.1073/pnas.1133325100. Epub 2003 Jul 22.
Coliphage N4 virion RNA polymerase (vRNAP), the most distantly related member of the T7-like family of RNA polymerases, is responsible for transcription of the early genes of the linear double-stranded DNA phage genome. Escherichia coli single-stranded DNA-binding protein (EcoSSB) is required for N4 early transcription in vivo, as well as for in vitro transcription on super-coiled DNA templates containing vRNAP promoters. In contrast to other DNA-dependent RNA polymerases, vRNAP initiates transcription on single-stranded, promoter-containing templates with in vivo specificity; however, the RNA product is not displaced, thus limiting template usage to one round. We show that EcoSSB activates vRNAP transcription at limiting single-stranded template concentrations through template recycling. EcoSSB binds to the template and to the nascent transcript and prevents the formation of a transcriptionally inert RNA:DNA hybrid. Using C-terminally truncated EcoSSB mutant proteins, human mitochondrial SSB (Hsmt SSB), phage P1 SSB, and F episome-encoded SSB, as well as a Hsmt-EcoSSB chimera, we have mapped a determinant of template recycling to the C-terminal amino acids of EcoSSB. T7 RNAP contains an amino-terminal domain responsible for binding the RNA product as it exits from the enzyme. No sequence similarity to this domain exists in vRNAP. Hereby, we propose a unique role for EcoSSB: It functionally substitutes in N4 vRNAP for the N-terminal domain of T7 RNAP responsible for RNA binding.
噬菌体N4病毒粒子RNA聚合酶(vRNAP)是T7样RNA聚合酶家族中亲缘关系最远的成员,负责线性双链DNA噬菌体基因组早期基因的转录。大肠杆菌单链DNA结合蛋白(EcoSSB)是N4体内早期转录以及在含有vRNAP启动子的超螺旋DNA模板上进行体外转录所必需的。与其他依赖DNA的RNA聚合酶不同,vRNAP在具有体内特异性的含启动子单链模板上起始转录;然而,RNA产物不会被置换,因此将模板使用限制为一轮。我们发现,在单链模板浓度有限的情况下,EcoSSB通过模板循环激活vRNAP转录。EcoSSB与模板和新生转录本结合,防止形成转录惰性的RNA:DNA杂交体。使用C端截短的EcoSSB突变蛋白、人线粒体SSB(Hsmt SSB)、噬菌体P1 SSB和F附加体编码的SSB,以及Hsmt-EcoSSB嵌合体,我们已将模板循环的决定因素定位到EcoSSB的C端氨基酸。T7 RNAP含有一个负责在RNA产物从酶中释放时与之结合的N端结构域。vRNAP中不存在与该结构域的序列相似性。因此,我们提出EcoSSB具有独特作用:它在功能上替代了N4 vRNAP中负责RNA结合的T7 RNAP的N端结构域。