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Crystal structure of the N-terminal domain of MinC dimerized via domain swapping.


ABSTRACT: Proper cell division at the mid-site of gram-negative bacteria reflects critical regulation by the min system (MinC, MinD and MinE) of the cytokinetic Z ring, which is a polymer composed of FtsZ subunits. MinC and MinD act together to inhibit aberrantly positioned Z-ring formation. MinC consists of two domains: an N-terminal domain (MinCNTD), which interacts with FtsZ and inhibits FtsZ polymerization, and a C-terminal domain (MinCCTD), which interacts with MinD and inhibits the bundling of FtsZ filaments. These two domains reportedly function together, and both are essential for normal cell division. The full-length dimeric structure of MinC from Thermotoga maritima has been reported, and shows that MinC dimerization occurs via MinCCTD; MinCNTD is not involved in dimerization. Here the crystal structure of Escherichia coli MinCNTD (EcoMinCNTD) is reported. EcoMinCNTD forms a dimer via domain swapping between the first ? strands in each subunit. It is therefore suggested that the dimerization of full-length EcoMinC occurs via both MinCCTD and MinCNTD, and that the dimerized EcoMinCNTD likely plays an important role in inhibiting aberrant Z-ring localization.

SUBMITTER: An JY 

PROVIDER: S-EPMC3795569 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Crystal structure of the N-terminal domain of MinC dimerized via domain swapping.

An Jun Yop JY   Kim Tae Gyun TG   Park Kyoung Ryoung KR   Lee Jung Gyu JG   Youn Hyung Seop HS   Lee Youngjin Y   Kang Jung Youn JY   Kang Gil Bu GB   Eom Soo Hyun SH  

Journal of synchrotron radiation 20131002 Pt 6


Proper cell division at the mid-site of gram-negative bacteria reflects critical regulation by the min system (MinC, MinD and MinE) of the cytokinetic Z ring, which is a polymer composed of FtsZ subunits. MinC and MinD act together to inhibit aberrantly positioned Z-ring formation. MinC consists of two domains: an N-terminal domain (MinCNTD), which interacts with FtsZ and inhibits FtsZ polymerization, and a C-terminal domain (MinCCTD), which interacts with MinD and inhibits the bundling of FtsZ  ...[more]

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