Structure of the E. coli nucleoid-associated protein YejK reveals a novel DNA binding clamp

Author:

Schumacher Maria A1ORCID,Singh Rajiv R1ORCID,Salinas Raul1

Affiliation:

1. Department of Biochemistry, 307 Research Dr., Box 3711, Duke University Medical Center , Durham , NC  27710 , USA

Abstract

Abstract Nucleoid-associated proteins (NAPs) play central roles in bacterial chromosome organization and DNA processes. The Escherichia coli YejK protein is a highly abundant, yet poorly understood NAP. YejK proteins are conserved among Gram-negative bacteria but show no homology to any previously characterized DNA-binding protein. Hence, how YejK binds DNA is unknown. To gain insight into YejK structure and its DNA binding mechanism we performed biochemical and structural analyses on the E. coli YejK protein. Biochemical assays demonstrate that, unlike many NAPs, YejK does not show a preference for AT-rich DNA and binds non-sequence specifically. A crystal structure revealed YejK adopts a novel fold comprised of two domains. Strikingly, each of the domains harbors an extended arm that mediates dimerization, creating an asymmetric clamp with a 30 Å diameter pore. The lining of the pore is electropositive and mutagenesis combined with fluorescence polarization assays support DNA binding within the pore. Finally, our biochemical analyses on truncated YejK proteins suggest a mechanism for YejK clamp loading. Thus, these data reveal YejK contains a newly described DNA-binding motif that functions as a novel clamp.

Funder

Nanaline H. Duke Endowed Chair

National Institutes of Health

Publisher

Oxford University Press (OUP)

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