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Structural basis for suppression of hypernegative DNA supercoiling by E. coli topoisomerase I.


ABSTRACT: Escherichia coli topoisomerase I has an essential function in preventing hypernegative supercoiling of DNA. A full length structure of E. coli topoisomerase I reported here shows how the C-terminal domains bind single-stranded DNA (ssDNA) to recognize the accumulation of negative supercoils in duplex DNA. These C-terminal domains of E. coli topoisomerase I are known to interact with RNA polymerase, and two flexible linkers within the C-terminal domains may assist in the movement of the ssDNA for the rapid removal of transcription driven negative supercoils. The structure has also unveiled for the first time how the 4-Cys zinc ribbon domain and zinc ribbon-like domain bind ssDNA with primarily ?-stacking interactions. This novel structure, in combination with new biochemical data, provides important insights into the mechanism of genome regulation by type IA topoisomerases that is essential for life, as well as the structures of homologous type IA TOP3? and TOP3? from higher eukaryotes that also have multiple 4-Cys zinc ribbon domains required for their physiological functions.

SUBMITTER: Tan K 

PROVIDER: S-EPMC4678816 | biostudies-literature | 2015 Dec

REPOSITORIES: biostudies-literature

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Structural basis for suppression of hypernegative DNA supercoiling by E. coli topoisomerase I.

Tan Kemin K   Zhou Qingxuan Q   Cheng Bokun B   Zhang Zhongtao Z   Joachimiak Andrzej A   Tse-Dinh Yuk-Ching YC  

Nucleic acids research 20151020 22


Escherichia coli topoisomerase I has an essential function in preventing hypernegative supercoiling of DNA. A full length structure of E. coli topoisomerase I reported here shows how the C-terminal domains bind single-stranded DNA (ssDNA) to recognize the accumulation of negative supercoils in duplex DNA. These C-terminal domains of E. coli topoisomerase I are known to interact with RNA polymerase, and two flexible linkers within the C-terminal domains may assist in the movement of the ssDNA for  ...[more]

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