Publications after arrival at the Sars Centre

Preprints:

Peer-reviewed manuscripts:

  • Lagman D, Leon A, Cieminska N, Deng W, Chatzigeorgiou M, Henriet S, Chourrout D. Pax3/7 gene function in Oikopleura dioica supports a neuroepithelial-like origin for its house-making Fol territory. Dev Biol. 2024 Aug 22:S0012-1606(24)00217-3.

    doi: 10.1016/j.ydbio.2024.08.012.

  • Liang Z, Dondorp D C, Chatzigeorgiou M. The ion channel Anoctamin 10/TMEM16K coordinates organ morphogenesis across scales in the urochordate notochord. PLoS Biol. 2024 Aug 22;22(8):e3002762. doi: 10.1371/journal.pbio.3002762.

  • Schultze S, Langva HK, Wei J, Chatzigeorgiou M, Rundberget JT, Hessen DO, Ruus A, Andersen T, Borgå K. Do DOM quality and origin affect the uptake and accumulation of a lipid-soluble contaminant in a filter feeding ascidian species (Ciona) that can target small particle size classes? Aquat Toxicol. 2024 Aug:273:107026. doi: 10.1016/j.aquatox.2024.107026.

Publications prior to arrival at the Sars Centre

  • Choi S, Taylor KP, Chatzigeorgiou M, Hu Z, Schafer WR, Kaplan JM (2015). Sensory Neurons Arouse C. elegans Locomotion via Both Glutamate and Neuropeptide Release. PLoS Genet Jul 8;11(7):e1005359. doi: 10.1371/journal.pgen.1005359.

  • Cohen E, Chatzigeorgiou M, Husson SJ, Steuer-Costa W, Gottschalk A, Schafer WR, Treinin M (2014). C. elegans nicotinic acetylcholine receptors are required for nociception. Mol Cell Neurosci Feb 8. pii: S1044-7431(14)00010-4. doi: 10.1016/j.mcn.2014.02.001.

  • Rabinowitch I*, Chatzigeorgiou M*, Zhao B, Treinin M, Schafer WR (2014). Rewiring neural circuits by the insertion of ectopic electrical synapses in transgenic C. elegans. Nat Commun Jul 16;5:4442. doi: 10.1038/ncomms5442. *Contributed equally

  • Chatzigeorgiou M*, Bang S*, Hwang SW, Schafer WR (2013). tmc-1 encodes a sodium-sensitive channel required for salt chemosensation in C. elegans. Nature Jan 30;494(7435):95–9. * Contributed equally

  • Rabinowitch I*, Chatzigeorgiou M*, Schafer WR (2013). A gap junction circuit enhances processing of coincident mechanosensory inputs. Curr Biol Jun 3;23(11):963–7. *Contributed equally

  • Choi S, Chatzigeorgiou M, Taylor KP, Schafer WR, Kaplan JM (2013). Analysis of NPR-1 Reveals a Circuit Mechanism for Behavioral Quiescence in C.elegans. Neuron Jun 5;78(5):869–80.

  • Smith CJ*, O'Brien T*, Chatzigeorgiou M, Spencer WC, Feingold-Link E, Husson SJ, et al. (2013). Sensory neuron fates are distinguished by a transcriptional switch that regulates dendrite branch stabilization. Neuron Jul 24;79(2):266–80. *Contributed equally

  • Albeg A, Smith CJ, Chatzigeorgiou M, Feitelson DG, Hall DH, Schafer WR, et al. (2011). C. elegans multi-dendritic sensory neurons: morphology and function. Mol Cell Neurosci Jan;46(1):308–17.

  • Chatzigeorgiou M, Schafer WR (2011). Lateral facilitation between primary mechanosensory neurons controls nose touch perception in C. elegans. Neuron Apr 28;70(2):299–309.

  • Chatzigeorgiou M, Yoo S, Watson JD, Lee W-H, Spencer WC, Kindt KS, et al. (2010) Specific roles for DEG/ENaC and TRP channels in touch and thermosensation in C. elegans nociceptors. Nat Neurosci Jul;13(7):861–8.

  • Chatzigeorgiou M, Grundy L, Kindt KS, Lee W-H, Driscoll M, Schafer WR (2010). Spatial asymmetry in the mechanosensory phenotypes of the C. elegans DEG/ENaC gene mec-10. J Neurophysiol Dec;104(6):3334–44.