Niels Skotte

Niels Skotte

Assistant Professor, Visiting professor


  1. A fully humanized transgenic mouse model of Huntington disease

    Southwell, A. L., Warby, S. C., Carroll, J. B., Doty, C. N., Skotte, Niels Henning, Zhang, W., Villanueva, Erika Bianca, Kovalik, V., Xie, Y., Pouladi, M. A., Collins, J. A., Yang, X. W., Franciosi, S. & Hayden, M. R., 1 Jan 2013, In: Human Molecular Genetics. 22, 1, p. 18-34 17 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  2. Published

    A novel humanized mouse model of Huntington disease for preclinical development of therapeutics targeting mutant huntingtin alleles

    Southwell, A. L., Skotte, N. H., Villanueva, E. B., Østergaard, M. E., Gu, X., Kordasiewicz, H. B., Kay, C., Cheung, D., Xie, Y., Waltl, S., Dal Cengio, L., Findlay-Black, H., Doty, C. N., Petoukhov, E., Iworima, D., Slama, R., Ooi, J., Pouladi, M. A., Yang, X. W., Swayze, E. E. & 2 others, Seth, P. P. & Hayden, M. R., 15 Mar 2017, In: Human Molecular Genetics. 26, 6, p. 1115-1132 18 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  3. Published

    A quantitative method for the specific assessment of caspase-6 activity in cell culture

    Ehrnhoefer, D. E., Skotte, Niels Henning, Savill, J., Nguyen, Y. T. N., Ladha, S., Cao, L., Dullaghan, E. & Hayden, M. R., 2011, In: PLOS ONE. 6, 11, p. e27680

    Research output: Contribution to journalJournal articleResearchpeer-review

  4. Activation of Caspase-6 Is Promoted by a Mutant Huntingtin Fragment and Blocked by an Allosteric Inhibitor Compound

    Ehrnhoefer, D. E., Skotte, N. H., Reinshagen, J., Qiu, X., Windshuegel, B., Jaishankar, P., Ladha, S., Petina, O., Khankischpur, M., Nguyen, Y. T. N., Caron, N. S., Razeto, A., Zu Rheda, M. M., Deng, Y., Huynh, K. T., Wittig, I., Gribbon, P., Renslo, A. R., Geffken, D., Gul, S. & 1 others, Hayden, M. R., 2019, In: Cell Chemical Biology. 26, 9, p. 1295-1305.e6

    Research output: Contribution to journalJournal articleResearchpeer-review

  5. Allele-specific suppression of mutant huntingtin using antisense oligonucleotides: providing a therapeutic option for all Huntington disease patients

    Skotte, Niels Henning, Southwell, A. L., Østergaard, M. E., Carroll, J. B., Warby, S. C., Doty, C. N., Petoukhov, E., Vaid, K., Kordasiewicz, H., Watt, A. T., Freier, S. M., Hung, G., Seth, P. P., Bennett, C. F., Swayze, E. E. & Hayden, M. R., 2014, In: PLOS ONE. 9, 9, p. e107434

    Research output: Contribution to journalJournal articleResearchpeer-review

  6. Antisense oligonucleotide therapeutics for inherited neurodegenerative diseases

    Southwell, A. L., Skotte, Niels Henning, Bennett, C. F. & Hayden, M. R., Nov 2012, In: Trends in Molecular Medicine. 18, 11, p. 634-43 10 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  7. Published

    Characterising the RNA-binding protein atlas of the mammalian brain uncovers RBM5 misregulation in mouse models of Huntington's disease

    Mullari, M., Fossat, Nicolas Julien, Skotte, Niels Henning, Asenjo-Martinez, A., Humphreys, D. T., Bukh, Jens, Kirkeby, Agnete, Scheel, Troels Kasper Høyer & Nielsen, Michael Lund, 2023, In: Nature Communications. 14, 20 p., 4348.

    Research output: Contribution to journalJournal articleResearchpeer-review

  8. Published

    Compromised IGF signaling causes caspase-6 activation in Huntington disease

    Skotte, Niels Henning, Pouladi, M. A., Ehrnhoefer, D. E., Huynh, K., Qiu, X., Nielsen, S. M. B., Nielsen, T. T., Nørremølle, Anne & Hayden, M. R., 2020, In: Experimental Neurology. 332, 113396.

    Research output: Contribution to journalJournal articleResearchpeer-review

  9. Published

    D13 Saliva biomarker discovery in Huntington’s disease

    Qvist, Filippa Liliendahl, Hellem, M. N., Nielsen, Jørgen Erik, Mann, Matthias & Skotte, Niels Henning, 2022, In: Journal of Neurology, Neurosurgery and Psychiatry. 93, Suppl. 1, p. A24-A25

    Research output: Contribution to journalConference abstract in journalResearchpeer-review

  10. Accepted/In press

    Deletion of CaMKIIα disrupts glucose metabolism, glutamate uptake, and synaptic energetics in the cerebral cortex

    Andersen, Jens Velde, Westi, Emil Winther, Griem-Krey, Nane, Skotte, Niels Henning, Schousboe, Arne, Aldana, Blanca & Wellendorph, Petrine, 2023, (Accepted/In press) In: Journal of Neurochemistry.

    Research output: Contribution to journalJournal articleResearchpeer-review

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