A Novel Function of RNAs Arising From the Long Terminal Repeat of Human Endogenous Retrovirus 9 in Cell Cycle Arrest

Author:

Xu Lai1,Elkahloun Abdel G.2,Candotti Fabio3,Grajkowski Andrzej1,Beaucage Serge L.1,Petricoin Emanuel F.4,Calvert Valerie4,Juhl Hartmut5,Mills Frederick1,Mason Karen1,Shastri Neal1,Chik Josh1,Xu Cynthia1,Rosenberg Amy S.1

Affiliation:

1. Division of Therapeutic Proteins, Center for Drug Evaluation and Research, U.S. Food and Drug Administration, Silver Spring, Maryland, USA

2. Cancer Genetics Branch, National Human Genome Research Institute

3. Genetics and Molecular Biology Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, Maryland, USA

4. Center for Applied Proteomics and Molecular Medicine, George Mason University, Fairfax, Virginia, USA

5. Indivumed GmbH, Hamburg, Germany

Abstract

ABSTRACT The human genome contains approximately 50 copies of the replication-defective human endogenous retrovirus 9 (ERV-9) and thousands of copies of its solitary long term repeat (sLTR) element. While some sLTRs are located upstream of critical genes and have enhancer activity, other sLTRs are located within introns and may be transcribed as RNAs. We found that intronic RNAs arising from U3 sLTRs of ERV-9 were expressed as both sense (S) and antisense (AS) transcripts in all human cells tested but that expression levels differed in malignant versus nonmalignant cells. In nonmalignant cells, AS was expressed at higher levels than S and at higher levels than in malignant cells; in malignant cells, AS was expressed at amounts equivalent to those of S RNA. Critically, U3 AS RNA was found to physically bind to key transcription factors for cellular proliferation, including NF-Y, p53, and sp1, indicating that such RNA transcripts may function as decoy targets or traps for NF-Y and thus inhibit the growth of human cancer cells. Indeed, short U3 oligodeoxynucleotides (ODNs) based on these RNA sequences ably inhibited proliferation of cancer cell lines driven by cyclins B1/B2, the gene targets of NF-Y.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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