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Items: 28

1.

Proneural factors Ascl1 and Neurog2 contribute to neuronal subtype identities by establishing distinct chromatin landscapes.

Aydin B, Kakumanu A, Rossillo M, Moreno-Estellés M, Garipler G, Ringstad N, Flames N, Mahony S, Mazzoni EO.

Nat Neurosci. 2019 Jun;22(6):897-908. doi: 10.1038/s41593-019-0399-y. Epub 2019 May 13.

PMID:
31086315
2.

Lineage context switches the function of a C. elegans Pax6 homolog in determining a neuronal fate.

Brandt JP, Rossillo M, Du Z, Ichikawa D, Barnes K, Chen A, Noyes M, Bao Z, Ringstad N.

Development. 2019 Apr 15;146(8). pii: dev168153. doi: 10.1242/dev.168153.

PMID:
30890567
3.

Mass spectrometric evidence for neuropeptide-amidating enzymes in Caenorhabditis elegans.

Van Bael S, Watteyne J, Boonen K, De Haes W, Menschaert G, Ringstad N, Horvitz HR, Schoofs L, Husson SJ, Temmerman L.

J Biol Chem. 2018 Apr 20;293(16):6052-6063. doi: 10.1074/jbc.RA117.000731. Epub 2018 Feb 27.

4.

Antagonistic regulation of trafficking to Caenorhabditis elegans sensory cilia by a Retinal Degeneration 3 homolog and retromer.

Martínez-Velázquez LA, Ringstad N.

Proc Natl Acad Sci U S A. 2018 Jan 16;115(3):E438-E447. doi: 10.1073/pnas.1712302115. Epub 2017 Dec 27.

5.

Neuromodulation: The Fevered Mind of the Worm.

Ringstad N.

Curr Biol. 2017 Apr 24;27(8):R315-R317. doi: 10.1016/j.cub.2017.03.005.

6.

Inhibitory peptidergic modulation of C. elegans serotonin neurons is gated by T-type calcium channels.

Zang KE, Ho E, Ringstad N.

Elife. 2017 Feb 6;6. pii: e22771. doi: 10.7554/eLife.22771.

7.

A Controlled Burn: Sensing Oxygen to Tune Fat Metabolism.

Ringstad N.

Cell Rep. 2016 Feb 23;14(7):1569-1570. doi: 10.1016/j.celrep.2016.02.015.

8.

Nek2 activation of Kif24 ensures cilium disassembly during the cell cycle.

Kim S, Lee K, Choi JH, Ringstad N, Dynlacht BD.

Nat Commun. 2015 Aug 20;6:8087. doi: 10.1038/ncomms9087.

9.

Toll-like Receptor Signaling Promotes Development and Function of Sensory Neurons Required for a C. elegans Pathogen-Avoidance Behavior.

Brandt JP, Ringstad N.

Curr Biol. 2015 Aug 31;25(17):2228-37. doi: 10.1016/j.cub.2015.07.037. Epub 2015 Aug 13.

10.

Fatal attraction.

Ringstad N.

Elife. 2014 Nov 25;3. doi: 10.7554/eLife.05259. No abstract available.

11.

A chemoreceptor that detects molecular carbon dioxide.

Smith ES, Martinez-Velazquez L, Ringstad N.

J Biol Chem. 2013 Dec 27;288(52):37071-81. doi: 10.1074/jbc.M113.517367. Epub 2013 Nov 15.

12.

IRK-1 potassium channels mediate peptidergic inhibition of Caenorhabditis elegans serotonin neurons via a G(o) signaling pathway.

Emtage L, Aziz-Zaman S, Padovan-Merhar O, Horvitz HR, Fang-Yen C, Ringstad N.

J Neurosci. 2012 Nov 14;32(46):16285-95. doi: 10.1523/JNEUROSCI.2667-12.2012.

13.

The neurobiology of sensing respiratory gases for the control of animal behavior.

Ma DK, Ringstad N.

Front Biol (Beijing). 2012 Jun;7(3):246-253.

14.

A single gene target of an ETS-family transcription factor determines neuronal CO2-chemosensitivity.

Brandt JP, Aziz-Zaman S, Juozaityte V, Martinez-Velazquez LA, Petersen JG, Pocock R, Ringstad N.

PLoS One. 2012;7(3):e34014. doi: 10.1371/journal.pone.0034014. Epub 2012 Mar 29.

15.

Receptor-type guanylate cyclase is required for carbon dioxide sensation by Caenorhabditis elegans.

Hallem EA, Spencer WC, McWhirter RD, Zeller G, Henz SR, Rätsch G, Miller DM 3rd, Horvitz HR, Sternberg PW, Ringstad N.

Proc Natl Acad Sci U S A. 2011 Jan 4;108(1):254-9. doi: 10.1073/pnas.1017354108. Epub 2010 Dec 20.

16.

Ligand-gated chloride channels are receptors for biogenic amines in C. elegans.

Ringstad N, Abe N, Horvitz HR.

Science. 2009 Jul 3;325(5936):96-100. doi: 10.1126/science.1169243.

17.

FMRFamide neuropeptides and acetylcholine synergistically inhibit egg-laying by C. elegans.

Ringstad N, Horvitz HR.

Nat Neurosci. 2008 Oct;11(10):1168-76. doi: 10.1038/nn.2186. Epub 2008 Sep 21.

18.

Tyramine Functions independently of octopamine in the Caenorhabditis elegans nervous system.

Alkema MJ, Hunter-Ensor M, Ringstad N, Horvitz HR.

Neuron. 2005 Apr 21;46(2):247-60.

19.

Generation of high curvature membranes mediated by direct endophilin bilayer interactions.

Farsad K, Ringstad N, Takei K, Floyd SR, Rose K, De Camilli P.

J Cell Biol. 2001 Oct 15;155(2):193-200. Epub 2001 Oct 15.

20.

Differential expression of endophilin 1 and 2 dimers at central nervous system synapses.

Ringstad N, Nemoto Y, De Camilli P.

J Biol Chem. 2001 Nov 2;276(44):40424-30. Epub 2001 Aug 22.

21.

Identification and characterization of a synaptojanin 2 splice isoform predominantly expressed in nerve terminals.

Nemoto Y, Wenk MR, Watanabe M, Daniell L, Murakami T, Ringstad N, Yamada H, Takei K, De Camilli P.

J Biol Chem. 2001 Nov 2;276(44):41133-42. Epub 2001 Aug 9.

22.

Fission and uncoating of synaptic clathrin-coated vesicles are perturbed by disruption of interactions with the SH3 domain of endophilin.

Gad H, Ringstad N, Löw P, Kjaerulff O, Gustafsson J, Wenk M, Di Paolo G, Nemoto Y, Crun J, Ellisman MH, De Camilli P, Shupliakov O, Brodin L.

Neuron. 2000 Aug;27(2):301-12.

23.

A functional link between dynamin and the actin cytoskeleton at podosomes.

Ochoa GC, Slepnev VI, Neff L, Ringstad N, Takei K, Daniell L, Kim W, Cao H, McNiven M, Baron R, De Camilli P.

J Cell Biol. 2000 Jul 24;150(2):377-89.

24.

Endophilin/SH3p4 is required for the transition from early to late stages in clathrin-mediated synaptic vesicle endocytosis.

Ringstad N, Gad H, Löw P, Di Paolo G, Brodin L, Shupliakov O, De Camilli P.

Neuron. 1999 Sep;24(1):143-54.

25.

Identification of the endophilins (SH3p4/p8/p13) as novel binding partners for the beta1-adrenergic receptor.

Tang Y, Hu LA, Miller WE, Ringstad N, Hall RA, Pitcher JA, DeCamilli P, Lefkowitz RJ.

Proc Natl Acad Sci U S A. 1999 Oct 26;96(22):12559-64.

26.

Synaptojanin 1: localization on coated endocytic intermediates in nerve terminals and interaction of its 170 kDa isoform with Eps15.

Haffner C, Takei K, Chen H, Ringstad N, Hudson A, Butler MH, Salcini AE, Di Fiore PP, De Camilli P.

FEBS Lett. 1997 Dec 15;419(2-3):175-80.

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