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Pena Martinez, C. D.

Publications and source records attributed to Pena Martinez, C. D..

2 recordsLinked to original sources

The iMab antibody selectively binds to intramolecular and intermolecular i-motif structures

i-Motifs are quadruplex nucleic acid conformations that form in cytosine-rich regions. Because of their acidic pH dependence, iMs were thought to form only in vitro. The recent development of an iM-selective antibody, iMab, has allowed iM detection in cells, which revealed their presence at gene promoters and their cell cycle dependence. However, recently evidence emerged which seemed to suggest that iMab recognizes C-rich sequences regardless of their iM conformation. To further investigate the selectivity of iMab, we examined the binding of iMab to C-rich sequences, using a combination of pull-down and Western blot assays. Here we observe that the composition of buffers used during binding and washing steps strongly influences the selectivity of antibody binding. In addition, we demonstrate by NMR that several of the previously reported C-rich sequences, which were not expected to form iMs, actually form intermolecular iMs which are selectively recognized by iMab. Our results highlight the specificity of the iMab antibody, emphasize the importance of optimizing DNA concentrations, blocking and washing conditions, and confirm iMab selectivity not only for intramolecular iMs, but also for intermolecular iMs.

genetics↗

Human genomic DNA is widely interspersed with i-motif structures

DNA i-motif structures are formed in the nucleus of human cells and are believed to provide critical genomic regulation. While the existence of i-motif structures in human cells has been demonstrated by immunofluorescent staining and by characterisation of select model genes, the abundance and distribution of such structures in the human genome has remained unclear. Here we utilize high affinity i-motif immunoprecipitation followed by sequencing to map i-motifs in human genomic DNA. Validated by biolayer interferometry and circular dichroism spectroscopy, our approach identified over 650,000 i-motif structures in human genomic DNA. The i-motif structures are widely distributed throughout the human genome and are common among highly expressed genes and in genes upregulated in G0/G1 cell cycle phase. Our findings provide experimental evidence for the widespread formation of i-motif structures in human genomic DNA.

genetics↗