نتایج جستجو برای: dna double stranded
تعداد نتایج: 725405 فیلتر نتایج به سال:
Rad52 plays essential roles in homology-dependent double-strand break repair. Various studies have established the functions of Rad52 in Rad51-dependent and Rad51-independent repair processes. However, the precise molecular mechanisms of Rad52 in these processes remain unknown. In the present study we have identified a novel DNA binding site within Rad52 by a structure-based alanine scan mutage...
The T4 DNA topoisomerase is a recently discovered multisubunit protein that appears to have an essential role in the initiation of T4 bacteriophage DND replication. Treatment of double-stranded circular DNA with large amounts of this topoisomerase in the absence of ATP yields new DNA species which are knotted topological isomers of the double-stranded DNA circle. These knotted DNA circles, whet...
The α-hemolysin nanopore has attracted much attention as a tool for the single-molecule analysis of DNA due to its potential an ultra-sensitive, specific, and label-free sensing technique. vast majority research with focused on interrogating single-stranded DNA. Nevertheless, structure pore, specifically circa 32.6 cubic nanometer vestibule, is sufficient size short section double-stranded (dsD...
Because of the unique simplicity of their life cycles, compared to all other evolving organisms, double-stranded (ds) DNA bacteriophages have served as an extremely
Oxanine (O) is a deamination product derived from guanine with the nitrogen at the N1 position substituted by oxygen. Cytosine, thymine, adenine, guanine as well as oxanine itself can be incorporated by Klenow Fragment to pair with oxanine in a DNA template with similar efficiency, indicating that oxanine in DNA may cause various mutations. As a nucleotide, deoxyoxanosine may substitute for deo...
Polynucleotide kinase/phosphatase (PNKP) is a critical mammalian DNA repair enzyme that generates 5'-phosphate and 3'-hydroxyl groups at damaged DNA termini that are required for subsequent processing by DNA ligases and polymerases. The PNKP phosphatase domain recognizes 3'-phosphate termini within DNA nicks, gaps, or at double- or single-strand breaks. Here we present a mechanistic rationale f...
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