Topoisomerase I (TOP1) dynamics: conformational transition from open to closed states

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作者
Diane T. Takahashi
Danièle Gadelle
Keli Agama
Evgeny Kiselev
Hongliang Zhang
Emilie Yab
Stephanie Petrella
Patrick Forterre
Yves Pommier
Claudine Mayer
机构
[1] Université Paris-Saclay,Institut de Biologie Integrative de la Cellule, CNRS
[2] Université de Paris,Institut Pasteur
[3] CNRS UMR 3528,Biotechnology and Cell Signaling (CNRS/Université de Strasbourg, UMR 7242)
[4] Unité de Microbiologie Structurale,Laboratory of Molecular Pharmacology, Developmental Therapeutics Branch
[5] Ecole Superieure de Biotechnologie de Strasbourg,undefined
[6] Center for Cancer Research,undefined
[7] NCI,undefined
[8] NIH,undefined
[9] Université de Paris,undefined
[10] ICube-UMR7357,undefined
[11] CSTB,undefined
[12] Centre de Recherche en Biomédecine de Strasbourg,undefined
来源
Nature Communications | / 13卷
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摘要
Eukaryotic topoisomerases I (TOP1) are ubiquitous enzymes removing DNA torsional stress. However, there is little data concerning the three-dimensional structure of TOP1 in the absence of DNA, nor how the DNA molecule can enter/exit its closed conformation. Here, we solved the structure of thermostable archaeal Caldiarchaeum subterraneum CsTOP1 in an apo-form. The enzyme displays an open conformation resulting from one substantial rotation between the capping (CAP) and the catalytic (CAT) modules. The junction between these two modules is a five-residue loop, the hinge, whose flexibility permits the opening/closing of the enzyme and the entry of DNA. We identified a highly conserved tyrosine near the hinge as mediating the transition from the open to closed conformation upon DNA binding. Directed mutagenesis confirmed the importance of the hinge flexibility, and linked the enzyme dynamics with sensitivity to camptothecin, a TOP1 inhibitor targeting the TOP1 enzyme catalytic site in the closed conformation.
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