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Redβ C 末端结构域与 λ 核酸外切酶复合物的晶体结构揭示了与 λ Orf 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。

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.

机构信息

Ohio State Biochemistry Program, The Ohio State University, 484 West 12th Avenue, Columbus, OH 43210, USA.

Department of Biological Chemistry and Pharmacology, The Ohio State University, 1060 Carmack Road, Columbus, OH 43210, USA.

出版信息

Nucleic Acids Res. 2019 Feb 28;47(4):1950-1963. doi: 10.1093/nar/gky1309.

Abstract

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 Å 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.

摘要

噬菌体 λ 编码了一种 DNA 重组系统,该系统包括 5'-3' 核酸外切酶(λ Exo)和单链退火蛋白(Redβ)。这两种蛋白质形成复合物,被认为介导 Redβ 直接加载到 λ Exo 产生的单链 3'-突出端上。在这里,我们呈现了一个 2.3 Å 的晶体结构,该结构由三个 λ Exo 三聚体与三个 Redβ C 末端结构域(CTD)结合而成。界面疏水区残基的突变会破坏体外复合物的形成,并损害体内重组。Redβ CTD 形成一个三螺旋束,与噬菌体 λ Orf 具有出人意料的结构同源性,λ Orf 是一种与大肠杆菌单链 DNA 结合蛋白(SSB)结合的蛋白质,作为重组介质发挥作用。基于这种关系,我们发现 Redβ 结合全长 SSB 和对应于其九个 C 末端残基的肽,在需要 CTD 的相互作用中。这些结果表明 CTD 具有双重作用,首先与 λ Exo 结合,以促进 Redβ 直接加载到 3'-突出端的初始单链 DNA(ssDNA)上,其次与 SSB 结合,以促进突出端与复制叉处 SSB 包被的 ssDNA 的退火。

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