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Home › Dataset Library › Transcription profiling of glucocorticoid resistant and sensitive acute lymphoblastic leukemia cell lines › Transcription profiling of mouse and human c-MYC-transformed lymphomas reveals IKK2/NF-kB-pathway suppresses MYC-induced lymphomagenesis

Dataset: Transcription profiling of glucocorticoid resistant and sensitive acute lymphoblastic leukemia cell lines

Gene expression data of glucocorticoid resistant and sensitive acute lymphoblastic leukemia cell lines for the article: Expression,...

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Gene expression data of glucocorticoid resistant and sensitive acute lymphoblastic leukemia cell lines for the article: Expression, regulation and function of phosphofructo-kinase/fructose-biphosphatases (PFKFBs) in glucocorticoid-induced apoptosis of acute lymphoblastic leukemia cells Glucocorticoids (GCs) cause apoptosis and cell cycle arrest in lymphoid cells and constitute a central component in the therapy of lymphoid malignancies, most notably childhood acute lymphoblastic leukemia (ALL). PFKFB2 (6-phosphofructo-2-kinase/fructose-2,6-biphosphatase-2), a kinase controlling glucose metabolism, was identified by us previously as GC response gene in expression profiling analyses performed in children with ALL during initial systemic GC mono-therapy. Since deregulation of glucose metabolism has been implicated in apoptosis induction, this gene and its relatives PFKFB1, 3, and 4 were further analyzed. Expression analyses in additional ALL children, non-leukemic individuals and leukemic cell lines confirmed frequent PFKFB2 induction by GC in most systems sensitive to GC-induced apoptosis, particularly in T-ALL cells. The 3 other family members, in contrast, were not or weakly expressed (PFKFB1 and 4) or not induced by GC (PFKFB3). Conditional PFKFB2 over-expression in the CCRF-CEM T-ALL in vitro model revealed that its 2 splice variants (15A and 15B) did not have any detectable effect on survival or cell cycle progression. Moreover, neither PFKFB2 splice variant significantly affected sensitivity to, or kinetics of, GC-induced apoptosis. Our data suggest that, at least in the model system investigated, PFKFB2 is not an essential upstream regulator of the anti-leukemic effects of GC. Generation of the GC sensitive and resistant clones is described in Parson et al. FASEB J 2005 (Pubmed id 15637111). In brief GC sensitive clones were generated by limiting dilution subcloning from the GC sensitive T-ALL cell line CCRF-CEM-C7H2. To generate GC resistant clones the CCRF-CEM-C7H2 cell line was clutured in the presence of 10E-7 M dexametasone. Gene expression profiles of glucocorticoid (GC) resistant and sensitive T-ALL cells during GC treatment and corresponding control samples (cells treated with carrier control). GC induced regulation of PFKFB2 was determined in the various cell lines based on the expression intensities of the corresponding probe sets in GC treated and control samples.

Species:
human

Samples:
24

Source:
E-GEOD-22152

PubMed:
21092265

Updated:
Dec.12, 2014

Registered:
Sep.15, 2014


Factors: (via ArrayExpress)
Sample Cell Line Phenotype Treatment
GSM550942 C7H2-R10E7 glucocorticoid resistant vehicle
GSM550943 C7H2-R19E5 glucocorticoid resistant vehicle
GSM550944 C7H2-R9C10 glucocorticoid resistant vehicle
GSM550945 C7H2-R3B5 glucocorticoid resistant vehicle
GSM550946 C7H2-R19F2 glucocorticoid resistant vehicle
GSM550947 C7H2-R19E7 glucocorticoid resistant vehicle
GSM550948 C7H2-S11 glucocorticoid sensitive vehicle
GSM550949 C7H2-S12 glucocorticoid sensitive vehicle
GSM550950 C7H2-S27(ZR) glucocorticoid sensitive vehicle
GSM55095 C7H2-S10 glucocorticoid sensitive vehicle
GSM550952 C7H2-S2 glucocorticoid sensitive vehicle
GSM550953 C7H2-S15 glucocorticoid sensitive vehicle
GSM550954 C7H2-R10E7 glucocorticoid resistant dexamethasone
GSM550955 C7H2-R19E5 glucocorticoid resistant dexamethasone
GSM550956 C7H2-R9C10 glucocorticoid resistant dexamethasone
GSM550957 C7H2-R3B5 glucocorticoid resistant dexamethasone
GSM550958 C7H2-R19F2 glucocorticoid resistant dexamethasone
GSM550959 C7H2-R19E7 glucocorticoid resistant dexamethasone
GSM550960 C7H2-S11 glucocorticoid sensitive dexamethasone
GSM55096 C7H2-S12 glucocorticoid sensitive dexamethasone
GSM550962 C7H2-S27 glucocorticoid sensitive dexamethasone
GSM550963 C7H2-S10 glucocorticoid sensitive dexamethasone
GSM550964 C7H2-S2 glucocorticoid sensitive dexamethasone
GSM550965 C7H2-S15 glucocorticoid sensitive dexamethasone

Tags

  • acute lymphoblastic leukemia
  • cell
  • central
  • glucose
  • leukemia
  • line
  • lymphoblastic leukemia

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