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  3. Biochemistry and Molecular Biology / 生物化學暨分子生物學研究所
  4. Structural insights into the assembly of type IIA topoisomerase DNA cleavage-religation center.
 
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Structural insights into the assembly of type IIA topoisomerase DNA cleavage-religation center.

Journal
Nucleic acids research
Start Page
gkae657
ISSN
1362-4962
Date Issued
2024-07-30
Author(s)
Liu, Ko-Ting
Chen, Shin-Fu
NEI-LI CHAN  
DOI
10.1093/nar/gkae657
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/720838
Abstract
The ability to catalyze reversible DNA cleavage and religation is central to topoisomerases' role in regulating DNA topology. In type IIA topoisomerases (Top2), the formation of its DNA cleavage-religation center is driven by DNA-binding-induced structural rearrangements. These changes optimally position key catalytic modules, such as the active site tyrosine of the WHD domain and metal ion(s) chelated by the TOPRIM domain, around the scissile phosphodiester bond to perform reversible transesterification. To understand this assembly process in detail, we report the catalytic core structures of human Top2α and Top2β in an on-pathway conformational state. This state features an in trans formation of an interface between the Tower and opposing TOPRIM domain, revealing a groove for accommodating incoming G-segment DNA. Structural superimposition further unveils how subsequent DNA-binding-induced disengagement of the TOPRIM and Tower domains allows a firm grasp of the bound DNA for cleavage/religation. Notably, we identified a previously undocumented protein-DNA interaction, formed between an arginine-capped C-terminus of an α-helix in the TOPRIM domain and the DNA backbone, significantly contributing to Top2 function. This work uncovers a previously unrecognized role of the Tower domain, highlighting its involvement in anchoring and releasing the TOPRIM domain, thus priming Top2 for DNA binding and cleavage.
SDGs

[SDGs]SDG3

Type
journal article

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