TY - JOUR
T1 - Endomitosis controls tissue-specific gene expression during development
AU - van Rijnberk, Lotte M.
AU - Barrull-Mascaró, Ramon
AU - van der Palen, Reinier L.
AU - Schild, Erik S.
AU - Korswagen, Hendrik C.
AU - Galli, Matilde
N1 - Funding Information:
Dutch Research Council (Nederlandse Organisatie voor Wetenschappelijk Onderzoek, https://www.nwo.nl/en): NWO-Veni grant to MG (016.Veni.181.016). Human frontiers science program organization (https://www.hfsp.org): HFSP Career Development Award to MG (CDA00018/2017-C) and HFSP Program Grant to HCK and ESS (RGP0030/2016). Netherlands Organisation for Health Research and Development (Nederlandse organisatie voor gezondheidsonderzoek en zorginnovatie, https:// www.zonmw.nl/en): ZonMw Enabling Technologies Hotel grant to MG (ETH 40-43500-98-4087). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. We thank members of the Galli, Korswagen, and Kops labs for helpful discussions; Tim Hoek for help and feedback on fitness assay modeling; and Marvin Tanenbaum for critical reading of the manuscript. We also thank Anko de Graaff and the Hubrecht Imaging Center (HIC) for assistance with microscopy. The spinning disk microscope is funded by equipment grant 834.11.002 from the Dutch Organization of Scientific Research (NWO). We thank the Temmerman lab for sharing the plasmid containing Pelt-2::ceh-60. Some strains were provided by the CGC, which is funded by the NIH Office of Research Infrastructure Programs (P40 OD010440).
Publisher Copyright:
© 2022 van Rijnberk et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
PY - 2022/5
Y1 - 2022/5
N2 - Polyploid cells contain more than 2 copies of the genome and are found in many plant and animal tissues. Different types of polyploidy exist, in which the genome is confined to either 1 nucleus (mononucleation) or 2 or more nuclei (multinucleation). Despite the widespread occurrence of polyploidy, the functional significance of different types of polyploidy is largely unknown. Here, we assess the function of multinucleation in Caenorhabditis elegans intestinal cells through specific inhibition of binucleation without altering genome ploidy. Through single-worm RNA sequencing, we find that binucleation is important for tissue-specific gene expression, most prominently for genes that show a rapid up-regulation at the transition from larval development to adulthood. Regulated genes include vitellogenins, which encode yolk proteins that facilitate nutrient transport to the germline. We find that reduced expression of vitellogenins in mononucleated intestinal cells leads to progeny with developmental delays and reduced fitness. Together, our results show that binucleation facilitates rapid up-regulation of intestine-specific gene expression during development, independently of genome ploidy, underscoring the importance of spatial genome organization for polyploid cell function.
AB - Polyploid cells contain more than 2 copies of the genome and are found in many plant and animal tissues. Different types of polyploidy exist, in which the genome is confined to either 1 nucleus (mononucleation) or 2 or more nuclei (multinucleation). Despite the widespread occurrence of polyploidy, the functional significance of different types of polyploidy is largely unknown. Here, we assess the function of multinucleation in Caenorhabditis elegans intestinal cells through specific inhibition of binucleation without altering genome ploidy. Through single-worm RNA sequencing, we find that binucleation is important for tissue-specific gene expression, most prominently for genes that show a rapid up-regulation at the transition from larval development to adulthood. Regulated genes include vitellogenins, which encode yolk proteins that facilitate nutrient transport to the germline. We find that reduced expression of vitellogenins in mononucleated intestinal cells leads to progeny with developmental delays and reduced fitness. Together, our results show that binucleation facilitates rapid up-regulation of intestine-specific gene expression during development, independently of genome ploidy, underscoring the importance of spatial genome organization for polyploid cell function.
UR - https://www.scopus.com/pages/publications/85131017297
U2 - 10.1371/journal.pbio.3001597
DO - 10.1371/journal.pbio.3001597
M3 - Article
C2 - 35609035
AN - SCOPUS:85131017297
SN - 1544-9173
VL - 20
SP - 1
EP - 29
JO - PLoS Biology
JF - PLoS Biology
IS - 5
M1 - e3001597
ER -