Translocations and gross deletions are responsible for a significant proportion of both cancer and inherited disease. Although such gene rearrangements are nonuniformly distributed in the human genome, the underlying mutational mechanisms remain unclear. We have studied the potential involvement of various types of repetitive sequence elements in the formation of secondary structure intermediates between the single-stranded DNA ends that recombine during rearrangements. Complexity analysis was used to assess the potential of these ends to form secondary structures, the maximum decrease in complexity consequent to a gross rearrangement being used as an indicator of the type of repeat and the specific DNA ends involved. A total of 175 pairs o...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Motivation: A detailed study of deletion and insertion mutagenesis could improve our understanding o...
Translocations and gross deletions constitute an important cause of both cancer and inherited diseas...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Abstract: We show that introns harboring translocation breakpoints in tumors are significantly longe...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Motivation: A detailed study of deletion and insertion mutagenesis could improve our understanding o...
Translocations and gross deletions constitute an important cause of both cancer and inherited diseas...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Translocations and gross deletions are important causes of both cancer and inherited disease. Such g...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Genomic rearrangements in inherited disease and cancer involve gross alterations of chromosomes or l...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Reports describing short (< 20 bp) gene deletions causing human genetic disease were collated in ord...
Abstract: We show that introns harboring translocation breakpoints in tumors are significantly longe...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Gross chromosomal rearrangements (including translocations, deletions, insertions and duplications) ...
Motivation: A detailed study of deletion and insertion mutagenesis could improve our understanding o...