» Articles » PMID: 17314274

Aberrant Expression of X-linked Genes RbAp46, Rsk4, and Cldn2 in Breast Cancer

Overview
Journal Mol Cancer Res
Specialty Cell Biology
Date 2007 Feb 23
PMID 17314274
Citations 45
Authors
Affiliations
Soon will be listed here.
Abstract

The consequence of activation status or gain/loss of an X-chromosome in terms of the expression of tumor suppressor genes or oncogenes in breast cancer has not been clearly addressed. In this study, we investigated the activation status of the X-chromosomes in a panel of human breast cancer cell lines, human breast carcinoma, and adjacent mammary tissues and a panel of murine mammary epithelial sublines ranging from low to high invasive potentials. Results show that most human breast cancer cell lines were homozygous, but both benign cell lines were heterozygous for highly polymorphic X-loci (IDS and G6PD). On the other hand, 60% of human breast carcinoma cases were heterozygous for either IDS or G6PD markers. Investigation of the activation status of heterozygous cell lines revealed the presence of only one active X-chromosome, whereas most heterozygous human breast carcinoma cases had two active X-chromosomes. Furthermore, we determined whether or not an additional active X-chromosome affects expression levels of tumor suppressor genes and oncogenes. Reverse transcription-PCR data show high expression of putative tumor suppressor genes Rsk4 and RbAp46 in 47% and 79% of breast carcinoma cases, respectively, whereas Cldn2 was down-regulated in 52% of breast cancer cases compared with normal adjacent tissues. Consistent with mRNA expression, immunostaining for these proteins also showed a similar pattern. In conclusion, our data suggest that high expression of RbAp46 is likely to have a role in the development or progression of human breast cancer. The activation status of the X-chromosome may influence the expression levels of X-linked oncogenes or tumor suppressor genes.

Citing Articles

Super-enhancer-hijacking RBBP7 potentiates metastasis and stemness of breast cancer via recruiting NuRD complex subunit LSD1.

Xi Y, Wang R, Qu M, Pan Q, Wang M, Ai X J Transl Med. 2025; 23(1):266.

PMID: 40038738 PMC: 11877695. DOI: 10.1186/s12967-025-06270-3.


KHSRP has oncogenic functions and regulates the expression and alternative splicing of DNA repair genes in breast cancer MDA-MB-231 cells.

Paizula X, Wulaying A, Chen D, Ou J Sci Rep. 2024; 14(1):14694.

PMID: 38926398 PMC: 11208542. DOI: 10.1038/s41598-024-64687-0.


Interpreting the molecular mechanisms of RBBP4/7 and their roles in human diseases (Review).

Zhan Y, Yin A, Su X, Tang N, Zhang Z, Chen Y Int J Mol Med. 2024; 53(5).

PMID: 38577935 PMC: 10999228. DOI: 10.3892/ijmm.2024.5372.


Updating mRNA variants of the human RSK4 gene and their expression in different stressed situations.

Qin Z, Yang J, Zhang K, Gao X, Ran Q, Xu Y Heliyon. 2024; 10(7):e27475.

PMID: 38560189 PMC: 10980951. DOI: 10.1016/j.heliyon.2024.e27475.


Unveiling the molecular structure and role of RBBP4/7: implications for epigenetic regulation and cancer research.

Cai L, Liu B, Cao Y, Sun T, Li Y Front Mol Biosci. 2023; 10:1276612.

PMID: 38028543 PMC: 10679446. DOI: 10.3389/fmolb.2023.1276612.