International audienceWe have previously described biological model systems for studying tumor suppression in which, by using H-1 parvovirus as a selective agent, cells with a strongly suppressed malignant phenotype (KS or US) were derived from malignant cell lines (K562 or U937). By using cDNA display on the K562/KS cells, 15 cDNAs were now isolated, corresponding to genes differentially regulated in tumor suppression. Of these, TSAP9 corresponds to a TCP-1 chaperonin, TSAP13 to a regulatory proteasome subunit, and TSAP21 to syntaxin 11, a vesicular trafficking molecule. The 15 cDNAs were used as a molecular fingerprint in different tumor-suppression models. We found that a similar pattern of differential regulation is shared by activation...
AbstractSiah-1, the human homologue of Drosophila seven in absentia, is related to apoptosis and tum...
International audienceThe Drosophila Seven in absentia (Sina) gene product originally was described ...
BACKGROUND & AIMS: Differential expression of tumor-relevant proteins based on aberrant proteasomal ...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
AbstractSiah-1, the human homologue of Drosophila seven in absentia, is related to apoptosis and tum...
The Drosophila seven in absentia (sina) gene is required for R7 photoreceptor cell formation during ...
International audienceSiah proteins are E3 ubiquitin ligases. They are homologues of the Drosophila ...
International audienceSiah proteins are E3 ubiquitin ligases. They are homologues of the Drosophila ...
AbstractSiah-1, the human homologue of Drosophila seven in absentia, is related to apoptosis and tum...
International audienceThe Drosophila Seven in absentia (Sina) gene product originally was described ...
BACKGROUND & AIMS: Differential expression of tumor-relevant proteins based on aberrant proteasomal ...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceWe have previously described biological model systems for studying tumor suppr...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
International audienceSIAH-1, the human homologue of the drosophila seven in absentia gene, is a p53...
AbstractSiah-1, the human homologue of Drosophila seven in absentia, is related to apoptosis and tum...
The Drosophila seven in absentia (sina) gene is required for R7 photoreceptor cell formation during ...
International audienceSiah proteins are E3 ubiquitin ligases. They are homologues of the Drosophila ...
International audienceSiah proteins are E3 ubiquitin ligases. They are homologues of the Drosophila ...
AbstractSiah-1, the human homologue of Drosophila seven in absentia, is related to apoptosis and tum...
International audienceThe Drosophila Seven in absentia (Sina) gene product originally was described ...
BACKGROUND & AIMS: Differential expression of tumor-relevant proteins based on aberrant proteasomal ...