TY - JOUR TI - Condensin controls recruitment of RNA polymerase II to achieve nematode X-chromosome dosage compensation AU - Kruesi, William S AU - Core, Leighton J AU - Waters, Colin T AU - Lis, John T AU - Meyer, Barbara J A2 - Proudfoot, Nick VL - 2 PY - 2013 DA - 2013/06/18 SP - e00808 C1 - eLife 2013;2:e00808 DO - 10.7554/eLife.00808 UR - https://doi.org/10.7554/eLife.00808 AB - The X-chromosome gene regulatory process called dosage compensation ensures that males (1X) and females (2X) express equal levels of X-chromosome transcripts. The mechanism in Caenorhabditis elegans has been elusive due to improperly annotated transcription start sites (TSSs). Here we define TSSs and the distribution of transcriptionally engaged RNA polymerase II (Pol II) genome-wide in wild-type and dosage-compensation-defective animals to dissect this regulatory mechanism. Our TSS-mapping strategy integrates GRO-seq, which tracks nascent transcription, with a new derivative of this method, called GRO-cap, which recovers nascent RNAs with 5′ caps prior to their removal by co-transcriptional processing. Our analyses reveal that promoter-proximal pausing is rare, unlike in other metazoans, and promoters are unexpectedly far upstream from the 5′ ends of mature mRNAs. We find that C. elegans equalizes X-chromosome expression between the sexes, to a level equivalent to autosomes, by reducing Pol II recruitment to promoters of hermaphrodite X-linked genes using a chromosome-restructuring condensin complex. KW - dosage compensation KW - transcription KW - X-chromosome KW - transcription start site identification technology KW - X chromosome KW - autosome balance JF - eLife SN - 2050-084X PB - eLife Sciences Publications, Ltd ER -