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The bacterial chromosome: architecture and action of bacterial SMC and SMC-like complexes

Abstract:
Structural Maintenance of Chromosomes (SMC) protein complexes are found in all three domains of life. They are characterized by a distinctive and conserved architecture in which a globular ATPase 'head' domain is formed by the N- and C-terminal regions of the SMC protein coming together, with a c. 50-nm-long antiparallel coiled-coil separating the head from a dimerization 'hinge'. Dimerization gives both V- and O-shaped SMC dimers. The distinctive architecture points to a conserved biochemical mechanism of action. However, the details of this mechanism are incomplete, and the precise ways in which this mechanism leads to the biological functions of these complexes in chromosome organization and processing remain unclear. In this review, we introduce the properties of bacterial SMC complexes, compare them with eukaryotic complexes and discuss how their likely biochemical action relates to their roles in chromosome organization and segregation. By reviewing the properties of SMC complexes in all three domains of life, we assess their likely common biochemical mechanism of action and propose how this might relate to the functions of bacterial SMC complexes in chromosome segregation and chromosome organization.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1111/1574-6976.12045

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Institution:
University of Oxford
Division:
MSD
Department:
Biochemistry
Role:
Author


Publisher:
Wiley
Journal:
FEMS Microbiology Reviews More from this journal
Volume:
38
Issue:
3
Pages:
380-392
Publication date:
2014-05-01
Acceptance date:
2013-08-26
DOI:
EISSN:
1574-6976
ISSN:
0168-6445
Pmid:
24118085


Keywords:
Pubs id:
pubs:466653
UUID:
uuid:8eafe1b7-8f55-4304-b054-1e23a3429902
Local pid:
pubs:466653
Source identifiers:
466653
Deposit date:
2019-07-03
ARK identifier:

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