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Cell|January 26, 1996
The three chemical steps of Tn10/IS10 transposition involve repeated utilization of a single active siteS Bolland, N KlecknerThe EMBO Journal|February 1, 1992
IS10 transposase mutations that specifically alter target site recognitionJ Bender, N KlecknerProceedings of the National Academy of Sciences of the United States of America|August 1, 1988
Tn10 transposition promotes RecA-dependent induction of a lambda prophageD Roberts, N KlecknerCell|April 18, 1997
The Tn10 synaptic complex can capture a target DNA only after transposon excisionJ Sakai, N KlecknerThe EMBO Journal|July 15, 1994
Tn 10 transposition in vivo: temporal separation of cleavages at the two transposon ends and roles of terminal basepairs subsequent to interaction of endsD Haniford, N KlecknerAnnual Review of Genetics|February 26, 2000
Meiotic chromosomes: integrating structure and functionD Zickler, N KlecknerCell|October 10, 1997
Interhomolog bias during meiotic recombination: meiotic functions promote a highly differentiated interhomolog-only pathwayA Schwacha, N KlecknerProceedings of the National Academy of Sciences of the United States of America|September 1, 1992
Tn10 insertion specificity is strongly dependent upon sequences immediately adjacent to the target-site consensus sequenceJ Bender, N KlecknerCell|June 20, 1986
Genetic evidence that Tn10 transposes by a nonreplicative mechanismJ Bender, N KlecknerAnnual Review of Genetics|February 3, 1999
The leptotene-zygotene transition of meiosisD Zickler, N KlecknerPageof 14