ABSTRACT: Immobile DNA junctions are complexes of oligomeric DNA strands that interact to yield branched structures in which the branch point cannot migrate. This is achieved by minimizing the sequence symmetry in the flanking arms, so that base pairs lock at the branch site. Here, we report the design, synthesis, and analysis of two semimobile junctions, structures in which a controlled extent of branch point migratory freedom is deliberately introduced. We have constructed two minimally symmetric four-arm semimobile junctions from synthetic deoxy 17-mers. These junctions, termed “monomobile”, contain a single pair of base pairs (A-T or C-G) which can migrate a t the site of branching, while the rest of the junction is immobile. We have de...
The folding of three- and four-way DNA junctions is often assessed by comparing the electrophoretic ...
Branched structures of nucleic acids are widely observed in nature as intermediates during DNA repai...
Genomic sequences of DNA not only code for proteins, but also unique structural conformations encomp...
Nucleic acid junctions are stable analogs of branched DNA structures which occur transiently in livi...
Nucleic acids that interact to generate structures in which three or more double helices emanate fro...
During replication and recombination, two DNA duplexes lie side by side. We have developed reagents ...
Non-paired nucleotides stabilize the formation of three-way helical DNA junctions. Two or more unpai...
The stereochemical conformation of the four-way helical junction in DNA (the Holliday junction; the ...
The DNA Holliday junction is a central intermediate in genetic recombination. We have designed and s...
Three-way DNA junctions (3WJ) are composed of three mutually complementary strands of DNA. The stra...
Non-paired nucleotides stabilize the formation of three-way helical DNA junctions. Two or more unpai...
Eight synthetic Holliday junction (HJ) oligonucleotides containing an immobile or a mobile junction ...
The Holliday (four-way) junction is a critical intermediate in homologous genetic recombination. We ...
We have refined the structure of the DNA Three-Way Junction complex, TWJ-TC, described in the compan...
Resolving enzymes bind highly selectively to four-way DNA junctions, but the mechanism of this struc...
The folding of three- and four-way DNA junctions is often assessed by comparing the electrophoretic ...
Branched structures of nucleic acids are widely observed in nature as intermediates during DNA repai...
Genomic sequences of DNA not only code for proteins, but also unique structural conformations encomp...
Nucleic acid junctions are stable analogs of branched DNA structures which occur transiently in livi...
Nucleic acids that interact to generate structures in which three or more double helices emanate fro...
During replication and recombination, two DNA duplexes lie side by side. We have developed reagents ...
Non-paired nucleotides stabilize the formation of three-way helical DNA junctions. Two or more unpai...
The stereochemical conformation of the four-way helical junction in DNA (the Holliday junction; the ...
The DNA Holliday junction is a central intermediate in genetic recombination. We have designed and s...
Three-way DNA junctions (3WJ) are composed of three mutually complementary strands of DNA. The stra...
Non-paired nucleotides stabilize the formation of three-way helical DNA junctions. Two or more unpai...
Eight synthetic Holliday junction (HJ) oligonucleotides containing an immobile or a mobile junction ...
The Holliday (four-way) junction is a critical intermediate in homologous genetic recombination. We ...
We have refined the structure of the DNA Three-Way Junction complex, TWJ-TC, described in the compan...
Resolving enzymes bind highly selectively to four-way DNA junctions, but the mechanism of this struc...
The folding of three- and four-way DNA junctions is often assessed by comparing the electrophoretic ...
Branched structures of nucleic acids are widely observed in nature as intermediates during DNA repai...
Genomic sequences of DNA not only code for proteins, but also unique structural conformations encomp...