Ujaoney, Aman K. ; Basu, Bhakti ; Muniyappa, K. ; Apte, Shree K. (2015) Functional roles of N‐terminal and C‐terminal domains in the overall activity of a novel single‐stranded DNA binding protein of Deinococcus radiodurans FEBS Open Bio, 5 (1). pp. 378-387. ISSN 2211-5463
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Official URL: http://doi.org/10.1016/j.fob.2015.04.009
Related URL: http://dx.doi.org/10.1016/j.fob.2015.04.009
Abstract
Single-stranded DNA binding protein (Ssb) of Deinococcus radiodurans comprises N- and C-terminal oligonucleotide/oligosaccharide binding (OB) folds connected by a beta hairpin connector. To assign functional roles to the individual OB folds, we generated three Ssb variants: SsbN (N-terminal without connector), SsbNC (N-terminal with connector) and SsbC (C-terminal), each harboring one OB fold. Both SsbN and SsbNC displayed weak single-stranded DNA (ssDNA) binding activity, compared to the full-length Ssb (SsbFL). The level of ssDNA binding activity displayed by SsbC was intermediate between SsbFL and SsbN. SsbC and SsbFL predominantly existed as homo-dimers while SsbNC/SsbN formed different oligomeric forms. In vitro, SsbNC or SsbN formed a binary complex with SsbC that displayed enhanced ssDNA binding activity. Unlike SsbFL, Ssb variants were able to differentially modulate topoisomerase-I activity, but failed to stimulate Deinococcal RecA-promoted DNA strand exchange. The results suggest that the C-terminal OB fold is primarily responsible for ssDNA binding. The N-terminal OB fold binds weakly to ssDNA but is involved in multimerization.
Item Type: | Article |
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Source: | Copyright of this article belongs to Federation of European Biochemical Societies |
Keywords: | Deinococcus radiodurans; EMSA; ESDSA, extended synthesis-dependent strand annealing; OB fold, oligonucleotide/oligosaccharide binding fold; OB folds; RPA, Replication protein A; RecA; Ssb protein; Ssb, single-stranded DNA binding protein; SsbC, C-terminal Ssb; SsbN, N-terminal Ssb without connector; SsbNC, N-terminal Ssb with connector; Strand exchange; Topoisomerase activity; ssDNA, single-stranded DNA |
ID Code: | 130692 |
Deposited On: | 01 Dec 2022 11:23 |
Last Modified: | 01 Dec 2022 11:23 |
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