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RecR形成一种环状四聚体,通过与RecF形成复合物来环绕双链DNA。

RecR forms a ring-like tetramer that encircles dsDNA by forming a complex with RecF.

作者信息

Honda Masayoshi, Fujisawa Tetsuro, Shibata Takehiko, Mikawa Tsutomu

机构信息

RIKEN Advanced Science Institute, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Nucleic Acids Res. 2008 Sep;36(15):5013-20. doi: 10.1093/nar/gkn471. Epub 2008 Jul 25.

Abstract

In the RecFOR pathway, the RecF and RecR proteins form a complex that binds to DNA and exerts multiple functions, including directing the loading of RecA onto single-stranded (ss) DNA regions near double-stranded (ds) DNA-ssDNA junctions and preventing it from forming a filament beyond the ssDNA region. However, neither the structure of the RecFR complex nor its DNA-binding mechanism was previously identified. Here, size-exclusion chromatography and small-angle X-ray scattering data indicate that Thermus thermophilus (tt) RecR binds to ttRecF to form a globular structure consisting of four ttRecR and two ttRecF monomers. In addition, a low resolution model shows a cavity in the central part of the complex, suggesting that ttRecR forms a ring-like tetramer inside the ttRecFR complex. Mutant ttRecR proteins lacking the N- or C-terminal interfaces that are required for tetramer formation are unable to form a complex with ttRecF. Furthermore, a ttRecFR complex containing the DNA-binding deficient ttRecR K23E/R27E double mutant, which contains mutations lying inside the ring, exhibits significantly reduced dsDNA binding. Thus, we propose that the ring-like ttRecR tetramer has a key role in tethering the ttRecFR complex onto dsDNA and that the ring structure may function as a clamp protein.

摘要

在RecFOR途径中,RecF和RecR蛋白形成一个与DNA结合并发挥多种功能的复合物,包括将RecA加载到双链(ds)DNA - 单链(ss)DNA交界处附近的单链(ss)DNA区域上,并防止其在ssDNA区域之外形成细丝。然而,RecFR复合物的结构及其DNA结合机制此前均未得到确定。在这里,尺寸排阻色谱法和小角X射线散射数据表明,嗜热栖热菌(tt)RecR与ttRecF结合形成一种由四个ttRecR和两个ttRecF单体组成的球状结构。此外,一个低分辨率模型显示该复合物中心部分有一个腔,这表明ttRecR在ttRecFR复合物内部形成了一个环状四聚体。缺乏形成四聚体所需的N端或C端界面的突变型ttRecR蛋白无法与ttRecF形成复合物。此外,包含位于环内的突变的DNA结合缺陷型ttRecR K23E/R27E双突变体的ttRecFR复合物,其与dsDNA的结合显著减少。因此,我们提出环状ttRecR四聚体在将ttRecFR复合物束缚到dsDNA上起关键作用,并且该环结构可能起到钳夹蛋白的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24ee/2528183/dcdce78d099b/gkn471f1.jpg

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