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Repository series · ncbi-prjna138447

Expression data from MCF7 cell line after silencing of Estrogen receptor

KuwaitPathogen genomics and infectious diseaseRepository record

We propose the hypothesis that loss of estrogen receptor function which leads to endocrine resistance in breast cancer, also results in de-differentiation from an epithelial to a mesenchymal phenotype that is responsible for increased aggressiveness and metastatic propensity. siRNA mediated silencing of the estrogen receptor in MCF7 breast cancer cells resulted in estrogen/tamoxifen resistant cells (pII) with altered morphology, increased motility with rearrangement and switch from an actin to a vimentin based cytoskeleton, and ability to invade simulated components of the extracellular matrix. Phenotypic profiling using an Affymetrix Human Genome U133 plus 2.0 GeneChip indicated fold changes ≥ 3 in approximately 2500 identifiable unique sequences, with about 1270 of these being up-regulated in pII cells. Changes were associated with genes whose products are involved in cell motility, loss of cellular adhesion and interaction with the extracellular matrix. Selective analysis of the data also showed a shift from luminal to basal cell markers and increased expression of a wide spectrum of genes normally associated with mesenchymal characteristics, with consequent loss of epithelial specific markers. Over-expression of several peptide growth factors and their receptors are indicative of an increased contribution to the higher proliferative rates of pII cells as well as aiding their potential for metastatic activity. Signalling molecules that have been identified as key transcriptional drivers of epithelial to mesenchymal transition were also found to be elevated in pII cells. We suggest that these data support our hypothesis that induced loss of estrogen receptor in previously antiestrogen sensitive cells is a trigger for the concomitant loss of endocrine dependence and onset of a series of possibly parallel events that changes the cell from an epithelial to a mesenchymal type. Inhibition of this transition through targeting of specific mediators may be a useful supplementary strategy to circumvent the effects of loss of endocrine sensitivity. We used microarrays to detail the global programme of gene expression underlying Epithelial to mesenchymal transition and identified distinct classes of regulated genes during this process. Overall design: MCF7 cell line was selected before and after (PII) silencing of Estrogen receptor for RNA extraction and hybridization on Affymetrix expression microarrays.

Repository interpretation

The accession and its GCC connection are verified. Registration alone does not establish that the broader research programme remains active.

01 / Project overview

What the record establishes.

Geographic scope
Kuwait connection indexed in BioProject metadata
Project type
Repository project
Research domain
Pathogen genomics and infectious disease
Years
2011–
Lifecycle status
repository_recorded
Status basis
Registered in NCBI BioProject on 2011/05/01; operational lifecycle is not asserted.
Status evidence date
2011-05-01
Scale
1 BioProject accession grouped by matching submitter, date, data type and narrative.

02 / Organizations and population

Who and what the project connects.

Lead organizations
Molecular pathology, Pathology, Kuwait University
Partner organizations
Not stated
Organism / population
Homo sapiens

03 / Data and access

What exists and how it can be reached.

Data types

  • Transcriptome or Gene expression
  • Array
  • Transcriptome

Data access

Public repository metadata with linked data where supplied by the submitter

Identifiers

  • BioProjectPRJNA138447

04 / Evidence and provenance

Why the record is included.

Inclusion basis

Exact country-name match in authoritative NCBI BioProject metadata; repeated submissions are grouped into one Atlas series.

Editorial note

Repository verification confirms the accession and regional connection, not whether the broader research programme remains active.

Sources

  1. primary record source Verified 2026-08-15

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