Crystal structure of the complex of the interaction domains of Escherichia coli DnaB helicase and DnaC helicase loader: structural basis implying a distortion-accumulation mechanism for the DnaB ring opening caused by DnaC binding

Author:

Nagata Koji1,Okada Akitoshi1,Ohtsuka Jun1,Ohkuri Takatoshi23,Akama Yusuke4,Sakiyama Yukari4,Miyazaki Erika4,Horita Shoichiro1,Katayama Tsutomu4,Ueda Tadashi2,Tanokura Masaru1

Affiliation:

1. Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo, Japan

2. Department of Protein Structure, Function and Design, Graduate School of Pharmaceutical Sciences, Kyushu University, Higashi-ku, Fukuoka, Japan

3. Faculty of Pharmaceutical Sciences, Sojo University, Nishi-ku, Kumamoto 860-0082, Japan

4. Department of Molecular Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Higashi-ku, Fukuoka, Japan

Abstract

AbstractLoading the bacterial replicative helicase DnaB onto DNA requires a specific loader protein, DnaC/DnaI, which creates the loading-competent state by opening the DnaB hexameric ring. To understand the molecular mechanism by which DnaC/DnaI opens the DnaB ring, we solved 3.1-Å co-crystal structure of the interaction domains of Escherichia coli DnaB–DnaC. The structure reveals that one N-terminal domain (NTD) of DnaC interacts with both the linker helix of a DnaB molecule and the C-terminal domain (CTD) of the adjacent DnaB molecule by forming a three α-helix bundle, which fixes the relative orientation of the two adjacent DnaB CTDs. The importance of the intermolecular interface in the crystal structure was supported by the mutational data of DnaB and DnaC. Based on the crystal structure and other available information on DnaB–DnaC structures, we constructed a molecular model of the hexameric DnaB CTDs bound by six DnaC NTDs. This model suggested that the binding of a DnaC would cause a distortion in the hexameric ring of DnaB. This distortion of the DnaB ring might accumulate by the binding of up to six DnaC molecules, resulting in the DnaB ring to open.

Funder

National Project on Protein Structural and Functional Analyses

Targeted Proteins Research Project

Ministry of Education, Culture, Sports, Science and Technology (MEXT) of Japan

JSPS KAKENHI

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

Reference44 articles.

1. Principles and concepts of DNA replication in bacteria, archaea, and Eukarya;O’Donnell;Cold Spring Harb. Perspect. Biol,2013

2. On helicases and other motor proteins;Enemark;Curr. Opin. Struct. Biol.,2008

3. The hexameric helicase DnaB adopts a nonplanar conformation during translocation;Itsathitphaisarn;Cell,2012

4. Nucleotide and partner-protein control of bacterial replicative helicase structure and function;Strycharska;Mol. Cell,2013

5. Regulation of the replication cycle: conserved and diverse regulatory systems for DnaA and oriC;Katayama;Nat. Rev. Microbiol.,2010

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