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GapR 的 DNA 识别基序对富含 AT 的 DNA 具有固有 DNA 结合偏好。

The DNA Recognition Motif of GapR Has an Intrinsic DNA Binding Preference towards AT-rich DNA.

机构信息

Beijing Nuclear Magnetic Resonance Center, School of Life Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.

The Technology Center for Protein Sciences, Tsinghua University, Beijing 100084, China.

出版信息

Molecules. 2021 Sep 24;26(19):5776. doi: 10.3390/molecules26195776.

Abstract

The nucleoid-associated protein GapR found in is crucial for DNA replication, transcription, and cell division. Associated with overtwisted DNA in front of replication forks and the 3' end of highly-expressed genes, GapR can stimulate gyrase and topo IV to relax (+) supercoils, thus facilitating the movement of the replication and transcription machines. GapR forms a dimer-of-dimers structure in solution that can exist in either an open or a closed conformation. It initially binds DNA through the open conformation and then undergoes structural rearrangement to form a closed tetramer, with DNA wrapped in the central channel. Here, we show that the DNA binding domain of GapR (residues 1-72, GapR) exists as a dimer in solution and adopts the same fold as the two dimer units in the full-length tetrameric protein. It binds DNA at the minor groove and reads the spatial distribution of DNA phosphate groups through a lysine/arginine network, with a preference towards AT-rich overtwisted DNA. These findings indicate that the dimer unit of GapR has an intrinsic DNA binding preference. Thus, at the initial binding step, the open tetramer of GapR with two relatively independent dimer units can be more efficiently recruited to overtwisted regions.

摘要

在 中发现的核相关蛋白 GapR 对于 DNA 复制、转录和细胞分裂至关重要。GapR 与复制叉前的超螺旋 DNA 和高度表达基因的 3' 端相关联,可以刺激拓扑异构酶 II 和拓扑异构酶 IV 来松弛(+)超螺旋,从而促进复制和转录机器的运动。GapR 在溶液中形成二聚体-二聚体结构,可以处于开放或关闭构象。它最初通过开放构象结合 DNA,然后经历结构重排形成封闭的四聚体,DNA 缠绕在中央通道中。在这里,我们表明 GapR 的 DNA 结合域(残基 1-72,GapR)在溶液中作为二聚体存在,并采用全长四聚体蛋白中两个二聚体单元的相同折叠。它在小沟结合 DNA,并通过赖氨酸/精氨酸网络读取 DNA 磷酸基团的空间分布,对富含 AT 的超螺旋 DNA 具有偏好性。这些发现表明 GapR 的二聚体单元具有内在的 DNA 结合偏好。因此,在初始结合步骤中,具有两个相对独立二聚体单元的开放四聚体 GapR 可以更有效地募集到超螺旋区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ef8/8510090/9e67db9a86d2/molecules-26-05776-g001.jpg

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