Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Expression changes in MEL cells upon differentiation and Ldb1 knockdown


ABSTRACT: Carbonic anhydrase 1 (Car1), an early specific marker of the erythroid differentiation, has been used to distinguish fetal and adult erythroid cells since its production closely follows the γ- to β-globin transition, but the molecular mechanism underlying transcriptional regulation of Car1 is unclear. Here, we show that Car1 mRNA decreases significantly when erythroid differentiation is induced in MEL cells. The Ldb1 protein complex including GATA1/SCL/LMO2 binds to the Car1 promoter in uninduced cells and reduced enrichment of the complex during differentiation correlates with loss of Car1 expression. Knockdown of Ldb1 results in a reduction of Ser2 phosphorylated RNA Pol II and Cdk9 at the Car1 promoter region, suggesting that Ldb1 is required for recruitment of Pol II as well as the transcription regulator P-TEFb to enhance elongation of Car1 transcripts. Taken together, these data show that Ldb1 forms a regulatory complex to maintain Car1 expression in erythroid cells. Expression analysis of induced and uninduced MEL cells after control or Ldb1 shRNA knockdown.

ORGANISM(S): Mus musculus

SUBMITTER: Ryan Dale 

PROVIDER: E-GEOD-42839 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Ldb1 regulates carbonic anhydrase 1 during erythroid differentiation.

Song Sang-Hyun SH   Kim Aeri A   Dale Ryan R   Dean Ann A  

Biochimica et biophysica acta 20120518 8


Carbonic anhydrase 1 (Car1), an early specific marker of the erythroid differentiation, has been used to distinguish fetal and adult erythroid cells since its production closely follows the γ- to β-globin transition, but the molecular mechanism underlying transcriptional regulation of Car1 is unclear. Here, we show that Car1 mRNA decreases significantly when erythroid differentiation is induced in MEL cells. The Ldb1 protein complex including GATA1/SCL/LMO2 binds to the Car1 promoter in uninduce  ...[more]

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