Abstract
An analysis of the human chromosome 22 genomic sequence shows that both Z-DNA forming regions (ZDRs) and promoter sites for nuclear factor-I (NFI) are correlated with the locations of known and predicted genes across the chromosome and accumulate around the transcriptional start sites of the known genes. Thus, the occurrence of Z-DNA across human genonic sequences mirrors that of a known eukaryotic transcription factor. In addition, 43 of the 383 fully annotated chromosomal genes have ZDRs within 2 nucleosomes upstream of strong NFIs. This suggests a distinct class of human genes that may potentially be transcriptionally regulated by a mechanism that couples Z-DNA with NFI activation, similar to the mechanism previously elucidated for the human colony stimulation factor-I promoter [Liu et al. (2001) Cell, 106, 309-318]. The results from this study will facilitate the design of experimental studies to test the generality of this mechanism for other genes in the cell. © Oxford University Press 2004; all rights reserved.
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CITATION STYLE
Champ, P. C., Maurice, S., Vargason, J. M., Camp, T., & Ho, P. S. (2004). Distributions of Z-DNA and nuclear factor I in human chromosome 22: A model for coupled transcriptional regulation. Nucleic Acids Research, 32(22), 6501–6510. https://doi.org/10.1093/nar/gkh988
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