Garson Tsang

mus304 encodes a novel DNA damage checkpoint protein required during Drosophila development

Brodsky, Michael H., Sekelsky, Jeff J., Tsang, Garson, Hawley, R. Scott, Rubin, Gerald M.

Checkpoints block cell cycle progression in eukaryotic cells exposed to DNA damaging agents. We show that several Drosophila homologs of checkpoint genes, mei-41, grapes, and 14-3-3ε, regulate a DNA...

Drosophila melanogaster MNK/Chk2 and p53 Regulate Multiple DNA Repair and Apoptotic Pathways following DNA Damage

Brodsky, Michael H., Weinert, Brian T., Tsang, Garson, Rong, Yikang S., McGinnis, Nadine M., Golic, Kent G., ...

We have used genetic and microarray analysis to determine how ionizing radiation (IR) induces p53-dependent transcription and apoptosis in Drosophila melanogaster. IR induces MNK/Chk2-dependent...

The BDGP gene disruption project: single transposon insertions associated with 40% of Drosophila genes.

Bellen, Hugo J, Levis, Robert W, Liao, Guochun, He, Yuchun, Carlson, Joseph W, Tsang, Garson, ...

The Berkeley Drosophila Genome Project (BDGP) strives to disrupt each Drosophila gene by the insertion of a single transposable element. As part of this effort, transposons in >30,000 fly strains...

mus304 encodes a novel DNA damage checkpoint protein required during Drosophila development

Brodsky, Michael H., Sekelsky, Jeff J., Tsang, Garson, Hawley, R. Scott, Rubin, Gerald M.

Checkpoints block cell cycle progression in eukaryotic cells exposed to DNA damaging agents. We show that several Drosophila homologs of checkpoint genes, mei-41, grapes, and 14-3-3ε, regulate a DNA...

Drosophila melanogaster MNK/Chk2 and p53 Regulate Multiple DNA Repair and Apoptotic Pathways following DNA Damage

Brodsky, Michael H., Weinert, Brian T., Tsang, Garson, Rong, Yikang S., McGinnis, Nadine M., Golic, Kent G., ...

We have used genetic and microarray analysis to determine how ionizing radiation (IR) induces p53-dependent transcription and apoptosis in Drosophila melanogaster. IR induces MNK/Chk2-dependent...

The BDGP gene disruption project: single transposon insertions associated with 40% of Drosophila genes.

Bellen, Hugo J, Levis, Robert W, Liao, Guochun, He, Yuchun, Carlson, Joseph W, Tsang, Garson, ...

The Berkeley Drosophila Genome Project (BDGP) strives to disrupt each Drosophila gene by the insertion of a single transposable element. As part of this effort, transposons in >30,000 fly strains...