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首页> 外文期刊>Nucleic acids research >Crystal structure of the Redβ C-terminal domain in complex with λ Exonuclease reveals an unexpected homology with λ Orf and an interaction with Escherichia coli single stranded DNA binding protein
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Crystal structure of the Redβ C-terminal domain in complex with λ Exonuclease reveals an unexpected homology with λ Orf and an interaction with Escherichia coli single stranded DNA binding protein

机译:与λ核酸外切酶复合的RedβC末端结构域的晶体结构揭示了与λOrf的意想不到的同源性以及与大肠杆菌单链DNA结合蛋白的相互作用

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Bacteriophage λ encodes a DNA recombination system that includes a 5′-3′ exonuclease (λ Exo) and a single strand annealing protein (Redβ). The two proteins form a complex that is thought to mediate loading of Redβ directly onto the single-stranded 3′-overhang generated by λ Exo. Here, we present a 2.3 ? crystal structure of the?λ Exo trimer bound to three copies of the Redβ C-terminal domain (CTD). Mutation of residues at the hydrophobic core of the interface disrupts complex formation in vitro and impairs recombination in vivo. The Redβ?CTD forms a three-helix bundle with unexpected structural homology to phage λ Orf, a protein that binds to E. coli single-stranded DNA binding protein (SSB) to function as a recombination mediator. Based on this relationship, we found that Redβ binds to full-length SSB, and to a peptide corresponding to its nine C-terminal residues, in an interaction that requires the CTD. These results suggest a dual role of the CTD, first in binding to λ?Exo to facilitate loading of Redβ?directly onto the initial single-stranded DNA (ssDNA) at a 3′-overhang, and second in binding to SSB to facilitate annealing of the overhang to SSB-coated ssDNA at the replication fork.
机译:噬菌体λ编码DNA重组系统,其包括5'-3'核酸外切酶(λExo)和单链退火蛋白(Redβ)。这两种蛋白质形成复合物,据认为可以直接将Redβ的负载介导到λExo产生的单链3'突出端。在这里,我们提出一个2.3? λλExo三聚体的晶体结构与RedβC末端结构域(CTD)的三个副本结合。界面疏水核心处残基的突变会在体外破坏复合物的形成,并在体内损害重组。 RedβΔCTD形成一个三螺旋束,与噬菌体λOrf具有出乎意料的结构同源性,该蛋白与大肠杆菌单链DNA结合蛋白(SSB)结合,起重组介体的作用。基于这种关系,我们发现在需要CTD的相互作用中,Redβ与全长SSB以及与其9个C末端残基相对应的肽结合。这些结果表明CTD的双重作用,首先是与λ?Exo结合,以促进Redβ?在3'突出端直接加载到初始单链DNA(ssDNA)上,其次是与SSB结合,以促进退火在复制叉上突出到SSB包被的ssDNA的末端。

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