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Jeff Sekelsky
Jeff Sekelsky
Verified email at unc.edu
Title
Cited by
Cited by
Year
Genetic characterization and cloning of mothers against dpp, a gene required for decapentaplegic function in Drosophila melanogaster.
JJ Sekelsky, SJ Newfeld, LA Raftery, EH Chartoff, WM Gelbart
Genetics 139 (3), 1347-1358, 1995
9471995
Meiotic synapsis in the absence of recombination
KS McKim, BL Green-Marroquin, JJ Sekelsky, G Chin, C Steinberg, ...
Science 279 (5352), 876-878, 1998
3481998
The mei-41 gene of D. melanogaster is a structural and functional homolog of the human ataxia telangiectasia gene
KL Hari, A Santerre, JJ Sekelsky, KS McKim, JB Boyd, RS Hawley
Cell 82 (5), 815-821, 1995
3331995
Drosophila BLM in double-strand break repair by synthesis-dependent strand annealing
MD Adams, M McVey, JJ Sekelsky
Science 299 (5604), 265-267, 2003
3002003
Drosophila MUS312 and the vertebrate ortholog BTBD12 interact with DNA structure-specific endonucleases in DNA repair and recombination
SL Andersen, DT Bergstralh, KP Kohl, JR LaRocque, CB Moore, ...
Molecular cell 35 (1), 128-135, 2009
2092009
From sequence to phenotype: reverse genetics in drosophila melanogaster
MD Adams, JJ Sekelsky
Nature Reviews Genetics 3 (3), 189-198, 2002
2062002
The Drosophila meiotic recombination gene mei-9 encodes a homologue of the yeast excision repair protein Rad1.
JJ Sekelsky, KS McKim, GM Chin, RS Hawley
Genetics 141 (2), 619-627, 1995
1951995
Drawing a stripe in Drosophila imaginal disks: negative regulation of decapentaplegic and patched expression by engrailed.
M Sanicola, J Sekelsky, S Elson, WM Gelbart
Genetics 139 (2), 745-756, 1995
1751995
DNA Repair in Drosophila Insights from the Drosophila Genome Sequence
JJ Sekelsky, MH Brodsky, KC Burtis
The Journal of cell biology 150 (2), F31-F36, 2000
1612000
Meiotic versus mitotic recombination: Two different routes for double‐strand break repair: The different functions of meiotic versus mitotic DSB repair are reflected …
SL Andersen, J Sekelsky
Bioessays 32 (12), 1058-1066, 2010
1602010
mus304 encodes a novel DNA damage checkpoint protein required during Drosophila development
MH Brodsky, JJ Sekelsky, G Tsang, RS Hawley, GM Rubin
Genes & Development 14 (6), 666-678, 2000
1532000
Interstrand crosslink repair: can XPF-ERCC1 be let off the hook?
DT Bergstralh, J Sekelsky
Trends in genetics 24 (2), 70-76, 2008
1292008
Mechanistic basis for microhomology identification and genome scarring by polymerase theta
J Carvajal-Garcia, JE Cho, P Carvajal-Garcia, W Feng, RD Wood, ...
Proceedings of the National Academy of Sciences 117 (15), 8476-8485, 2020
1262020
Drosophila MUS312 interacts with the nucleotide excision repair endonuclease MEI-9 to generate meiotic crossovers
Ö Yildiz, S Majumder, B Kramer, JJ Sekelsky
Molecular cell 10 (6), 1503-1509, 2002
1262002
REC, Drosophila MCM8, Drives Formation of Meiotic Crossovers
HL Blanton, SJ Radford, S McMahan, HM Kearney, JG Ibrahim, ...
PLoS genetics 1 (3), e40, 2005
1212005
DNA Repair in Drosophila: Mutagens, Models, and Missing Genes
J Sekelsky
Genetics 205 (2), 471-490, 2017
1142017
Evidence for multiple cycles of strand invasion during repair of double-strand gaps in Drosophila
M McVey, M Adams, E Staeva-Vieira, JJ Sekelsky
Genetics 167 (2), 699-705, 2004
1132004
End-Joining Repair of Double-Strand Breaks in Drosophila melanogaster Is Largely DNA Ligase IV Independent
M McVey, D Radut, JJ Sekelsky
Genetics 168 (4), 2067-2076, 2004
1122004
Meiotic and mitotic recombination in meiosis
KP Kohl, J Sekelsky
Genetics 194 (2), 327-334, 2013
1112013
Identification of novel Drosophila meiotic genes recovered in a P-element screen
JJ Sekelsky, KS McKim, L Messina, RL French, WD Hurley, T Arbel, ...
Genetics 152 (2), 529-542, 1999
1071999
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