Genome-wide computational and expression analyses reveal G-quadruplex DNA motifs as conserved cis-regulatory elements in human and related species

Verma, Anjali ; Halder, Kangkan ; Halder, Rashi ; Yadav, Vinod Kumar ; Rawal, Pooja ; Thakur, Ram Krishna ; Mohd, Farhan ; Sharma, Abhay ; Chowdhury, Shantanu (2008) Genome-wide computational and expression analyses reveal G-quadruplex DNA motifs as conserved cis-regulatory elements in human and related species Journal of Medicinal Chemistry, 51 (18). pp. 5641-5649. ISSN 0022-2623

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Official URL: http://pubs.acs.org/doi/abs/10.1021/jm800448a

Related URL: http://dx.doi.org/10.1021/jm800448a

Abstract

Using a combination of in silico and experimental approaches, we present evidence that the G-quadruplex (G4) motif (an alternative higher-order DNA conformation) has regulatory potential. Genome-wide analyses of 99980 human, chimpanzee, mouse and rat promoters showed enrichment of sequence with potential to adopt G4 (potential G4 or PG4) motifs near transcription start sites (TSS; P<0.0001), supporting earlier findings. Interestingly, we found >700 orthologously related promoters in human, mouse and rat conserve PG4 motif(s). The corresponding genes have enriched (z score >4.0) tissue-specific expression in 75 of 79 human tissues and are significantly overrepresented in signaling and regulation of cell-cycle (P<10(−05)). This is supported by results from whole genome expression experiments in human HeLa S3 cells following treatment with TMPyP4 [5,10,15,20-tetra(N-methyl-4-pyridyl) porphine chloride], which is known to bind the G4 motif inside cells. Our results implicate G4-motif mediated regulation as a more general mode of transcription control than currently appreciated.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:100940
Deposited On:09 Dec 2016 12:18
Last Modified:09 Dec 2016 12:18

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