High-affinity RNA binding by a hyperthermophilic single-stranded DNA-binding protein

被引:12
作者
Morten, Michael J. [1 ]
Gamsjaeger, Roland [2 ,3 ]
Cubeddu, Liza [2 ,3 ]
Kariawasam, Ruvini [2 ,3 ]
Peregrina, Jose [1 ]
Penedo, J. Carlos [1 ]
White, Malcolm F. [1 ]
机构
[1] Univ St Andrews, Biomed Sci Res Complex, St Andrews KY16 9ST, Fife, Scotland
[2] Univ Western Sydney, Sch Sci & Hlth, Locked Bag 1797, Penrith, NSW 2751, Australia
[3] Univ Sydney, Sch Mol Biosci, Sydney, NSW, Australia
基金
英国惠康基金;
关键词
RNA-binding proteins; OB fold; Single-molecule dynamics; FOrster resonance energy transger; Nuclear magnetic resonance; CRYSTAL-STRUCTURE; OB-FOLD; ARCHAEON; SSB; IDENTIFICATION; RECOGNITION; COMPLEXES; MECHANISM; EXOSOME; LIFE;
D O I
10.1007/s00792-016-0910-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Single-stranded DNA-binding proteins (SSBs), including replication protein A (RPA) in eukaryotes, play a central role in DNA replication, recombination, and repair. SSBs utilise an oligonucleotide/oligosaccharide-binding (OB) fold domain to bind DNA, and typically oligomerise in solution to bring multiple OB fold domains together in the functional SSB. SSBs from hyperthermophilic crenarchaea, such as Sulfolobus solfataricus, have an unusual structure with a single OB fold coupled to a flexible C-terminal tail. The OB fold resembles those in RPA, whilst the tail is reminiscent of bacterial SSBs and mediates interaction with other proteins. One paradigm in the field is that SSBs bind specifically to ssDNA and much less strongly to RNA, ensuring that their functions are restricted to DNA metabolism. Here, we use a combination of biochemical and biophysical approaches to demonstrate that the binding properties of S. solfataricus SSB are essentially identical for ssDNA and ssRNA. These features may represent an adaptation to a hyperthermophilic lifestyle, where DNA and RNA damage is a more frequent event.
引用
收藏
页码:369 / 379
页数:11
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