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Investigating mycobacterial topoisomerase I mechanism from the analysis of metal and DNA substrate interactions at the active site.
Cao, Nan; Tan, Kemin; Annamalai, Thirunavukkarasu; Joachimiak, Andrzej; Tse-Dinh, Yuk-Ching.
Affiliation
  • Cao N; Department of Chemistry and Biochemistry, Florida International University, 11200 SW 8 St, Miami, FL 33199, USA.
  • Tan K; Biomolecular Sciences Institute, Florida International University, 11200 SW 8 St, Miami, FL 33199, USA.
  • Annamalai T; Structural Biology Center, Biosciences, Argonne National Laboratory, 9700 S. Cass Avenue, Argonne, IL 60439, USA.
  • Joachimiak A; Department of Chemistry and Biochemistry, Florida International University, 11200 SW 8 St, Miami, FL 33199, USA.
  • Tse-Dinh YC; Biomolecular Sciences Institute, Florida International University, 11200 SW 8 St, Miami, FL 33199, USA.
Nucleic Acids Res ; 46(14): 7296-7308, 2018 08 21.
Article in En | MEDLINE | ID: mdl-29905859
ABSTRACT
We have obtained new crystal structures of Mycobacterium tuberculosis topoisomerase I, including structures with ssDNA substrate bound to the active site, with and without Mg2+ ion present. Significant enzyme conformational changes upon DNA binding place the catalytic tyrosine in a pre-transition state position for cleavage of a specific phosphodiester linkage. Meanwhile, the enzyme/DNA complex with bound Mg2+ ion may represent the post-transition state for religation in the enzyme's multiple-step DNA relaxation catalytic cycle. The first observation of Mg2+ ion coordinated with the TOPRIM residues and DNA phosphate in a type IA topoisomerase active site allows assignment of likely catalytic role for the metal and draws a comparison to the proposed mechanism for type IIA topoisomerases. The critical function of a strictly conserved glutamic acid in the DNA cleavage step was assessed through site-directed mutagenesis. The functions assigned to the observed Mg2+ ion can account for the metal requirement for DNA rejoining but not DNA cleavage by type IA topoisomerases. This work provides new structural insights into a more stringent requirement for DNA rejoining versus cleavage in the catalytic cycle of this essential enzyme, and further establishes the potential for selective interference of DNA rejoining by this validated TB drug target.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bacterial Proteins / DNA, Bacterial / DNA Topoisomerases, Type I / Catalytic Domain / Metals / Mycobacterium tuberculosis Language: En Journal: Nucleic Acids Res Year: 2018 Type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bacterial Proteins / DNA, Bacterial / DNA Topoisomerases, Type I / Catalytic Domain / Metals / Mycobacterium tuberculosis Language: En Journal: Nucleic Acids Res Year: 2018 Type: Article Affiliation country: United States