Exome sequencing of individuals with Huntington's disease implicates FAN1 nuclease activity in slowing CAG expansion and disease onset.

McAllister B, Donaldson J, Binda CS, Powell S, Chughtai U, Edwards G, Stone J, Lobanov S, Elliston L, Schuhmacher LN, Rees E, Menzies G, Ciosi M, Maxwell A, Chao MJ, Hong EP, Lucente D, Wheeler V, Lee JM, MacDonald ME, Long JD, Aylward EH, Landwehrmeyer GB, Rosser AE, REGISTRY Investigators of the European Huntington’s disease network, Paulsen JS, PREDICT-HD Investigators of the Huntington Study Group, Williams NM, Gusella JF, Monckton DG, Allen ND, Holmans P, Jones L, Massey TH

Open source

DOI
10.1038/s41593-022-01033-5
Published
2022 Apr
Container
Nature neuroscience
Publisher
Not recorded
Open access
yes

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BibTeX

@article{allodium:10.1038/s41593-022-01033-5,
  title = {Exome sequencing of individuals with Huntington's disease implicates FAN1 nuclease activity in slowing CAG expansion and disease onset.},
  author = {McAllister B and Donaldson J and Binda CS and Powell S and Chughtai U and Edwards G and Stone J and Lobanov S and Elliston L and Schuhmacher LN and Rees E and Menzies G and Ciosi M and Maxwell A and Chao MJ and Hong EP and Lucente D and Wheeler V and Lee JM and MacDonald ME and Long JD and Aylward EH and Landwehrmeyer GB and Rosser AE and REGISTRY Investigators of the European Huntington’s disease network and Paulsen JS and PREDICT-HD Investigators of the Huntington Study Group and Williams NM and Gusella JF and Monckton DG and Allen ND and Holmans P and Jones L and Massey TH},
  year = {2022},
  journal = {Nature neuroscience},
  doi = {10.1038/s41593-022-01033-5},
  url = {https://doi.org/10.1038/s41593-022-01033-5}
}

RIS

TY  - JOUR
TI  - Exome sequencing of individuals with Huntington's disease implicates FAN1 nuclease activity in slowing CAG expansion and disease onset.
AU  - McAllister B
AU  - Donaldson J
AU  - Binda CS
AU  - Powell S
AU  - Chughtai U
AU  - Edwards G
AU  - Stone J
AU  - Lobanov S
AU  - Elliston L
AU  - Schuhmacher LN
AU  - Rees E
AU  - Menzies G
AU  - Ciosi M
AU  - Maxwell A
AU  - Chao MJ
AU  - Hong EP
AU  - Lucente D
AU  - Wheeler V
AU  - Lee JM
AU  - MacDonald ME
AU  - Long JD
AU  - Aylward EH
AU  - Landwehrmeyer GB
AU  - Rosser AE
AU  - REGISTRY Investigators of the European Huntington’s disease network
AU  - Paulsen JS
AU  - PREDICT-HD Investigators of the Huntington Study Group
AU  - Williams NM
AU  - Gusella JF
AU  - Monckton DG
AU  - Allen ND
AU  - Holmans P
AU  - Jones L
AU  - Massey TH
PY  - 2022
JO  - Nature neuroscience
DO  - 10.1038/s41593-022-01033-5
UR  - https://doi.org/10.1038/s41593-022-01033-5
ER  - 

APA

B, M., J, D., CS, B., S, P., U, C., G, E., J, S., S, L., L, E., LN, S., E, R., G, M., M, C., A, M., MJ, C., EP, H., D, L., V, W., JM, L., ME, M., JD, L., EH, A., GB, L., AE, R., network, R. I. O. T. E. H. D., JS, P., Group, P. I. O. T. H. S., NM, W., JF, G., DG, M., ND, A., P, H., L, J., & TH, M. (2022). Exome sequencing of individuals with Huntington's disease implicates FAN1 nuclease activity in slowing CAG expansion and disease onset.. Nature neuroscience. https://doi.org/10.1038/s41593-022-01033-5

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