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Title: | Complex sense-antisense architecture of TNFAIP1/POLDIP2 on 17q11.2 represents a novel transcriptional structural-functional gene module involved in breast cancer progression | Authors: | Grinchuk, O.V Motakis, E Kuznetsov, V.A |
Keywords: | cycline membrane protein oncoprotein protein IFT20 protein POLDIP2 protein TMEM199 protein TMEM97 protein TNFAIP I tumor necrosis factor alpha unclassified drug complementary DNA nuclear protein POLDIP2 protein, human protein TNFAIP1 protein, human architecture article breast cancer cancer growth chromatin assembly and disassembly chromosome 17q controlled study functional genomics gene amplification gene expression profiling gene locus gene overexpression gene structure genetic analysis genetic association genetic transcription human human cell nucleotide sequence protein domain protein localization signal transduction transcription initiation transcription regulation breast tumor chromosome 17 codon disease course gene dosage gene expression regulation genetic transcription genetics pathology survival rate tumor cell line Eukaryota Breast Neoplasms Cell Line, Tumor Chromatin Assembly and Disassembly Chromosomes, Human, Pair 17 Codon Disease Progression DNA, Antisense Gene Dosage Gene Expression Profiling Gene Expression Regulation, Neoplastic Humans Nuclear Proteins Proteins Survival Rate Transcription, Genetic |
Issue Date: | 2010 | Citation: | Grinchuk, O.V, Motakis, E, Kuznetsov, V.A (2010). Complex sense-antisense architecture of TNFAIP1/POLDIP2 on 17q11.2 represents a novel transcriptional structural-functional gene module involved in breast cancer progression. BMC Genomics 11 (SUPPL. 1) : S9. ScholarBank@NUS Repository. https://doi.org/10.1186/1471-2164-11-S1-S9 | Rights: | Attribution 4.0 International | Abstract: | Background: A sense-antisense gene pair (SAGP) is a gene pair where two oppositely transcribed genes share a common nucleotide sequence region. In eukaryotic genomes, SAGPs can be organized in complex sense-antisense architectures (CSAGAs) in which at least one sense gene shares loci with two or more antisense partners. As shown in several case studies, SAGPs may be involved in cancers, neurological diseases and complex syndromes. However, CSAGAs have not yet been characterized in the context of human disease or cancer.Results: We characterize five genes (TMEM97, IFT20, TNFAIP1, POLDIP2 and TMEM199) organized in a CSAGA on 17q11.2 (we term this the TNFAIP1/POLDIP2 CSAGA) and demonstrate their strong and reproducible co-regulatory transcription pattern in breast cancer tumours. Genes of the TNFAIP1/POLDIP2 CSAGA are located inside the smallest region of recurrent amplification on 17q11.2 and their expression profile correlates with the DNA copy number of the region. Survival analysis of a group of 410 breast cancer patients revealed significant survival-associated individual genes and gene pairs in the TNFAIP1/POLDIP2 CSAGA. Moreover, several of the gene pairs associated with survival, demonstrated synergistic effects. Expression of genes-members of the TNFAIP1/POLDIP2 CSAGA also strongly correlated with expression of genes of ERBB2 core region of recurrent amplification on 17q12. We clearly demonstrate that the observed co-regulatory transcription profile of the TNFAIP1/POLDIP2 CSAGA is maintained not only by a DNA amplification mechanism, but also by chromatin remodelling and local transcription activation.Conclusion: We have identified a novel TNFAIP1/POLDIP2 CSAGA and characterized its co-regulatory transcription profile in cancerous breast tissues. We suggest that the TNFAIP1/POLDIP2 CSAGA represents a clinically significant transcriptional structural-functional gene module associated with amplification of the genomic region on 17q11.2 and correlated with expression ERBB2 amplicon core genes in breast cancer. Co-expression pattern of this module correlates with histological grades and a poor prognosis in breast cancer when over-expressed. TNFAIP1/POLDIP2 CSAGA maps the risks of breast cancer relapse onto the complex genomic locus on 17q11.2. © 2010 Grinchuk et al; licensee BioMed Central Ltd. | Source Title: | BMC Genomics | URI: | https://scholarbank.nus.edu.sg/handle/10635/181679 | ISSN: | 14712164 | DOI: | 10.1186/1471-2164-11-S1-S9 | Rights: | Attribution 4.0 International |
Appears in Collections: | Elements Staff Publications |
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