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The Crystal Structure of the Hinge Domain of the Escherichia coli Structural Maintenance of Chromosomes Protein MukB
Authors:Yinyin Li  Allyn J. Schoeffler  James M. Berger
Affiliation:1 Department of Chemistry, Indiana University, Bloomington, IN 47405, USA
2 Department of Molecular and Cell Biology, California Institute for Quantitative Biology, University of California-Berkeley, Berkeley, CA 94720, USA
Abstract:MukB, a divergent structural maintenance of chromosomes (SMC) protein, is important for chromosomal segregation and condensation in γ-proteobacteria. MukB and canonical SMC proteins share a characteristic five-domain structure. Globular N- and C-terminal domains interact to form an ATP-binding cassette-like ATPase or “head” domain, which is connected to a smaller dimerization or “hinge” domain by a long, antiparallel coiled coil. In addition to mediating dimerization, this hinge region has been implicated in both conformational flexibility and dynamic protein-DNA interactions. We report here the first crystallographic model of the MukB hinge domain. This model also contains approximately 20% of the coiled-coil domain, including an unusual coiled-coil deviation. These results will facilitate studies to clarify the roles of both the hinge and the coiled-coil domains in MukB function.
Keywords:SMC, structural maintenance of chromosomes   ABC, ATP-binding cassette   CC3, coiled-coil region 3   CC4, coiled-coil region 4   TmSMC, Thermotoga maritima SMC   BsSMC, Bacillus subtilis SMC   PfRad50, Pyrococcus furiosus Rad50   EM, electron microscopy
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