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Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci

OBJECTIVE: Given evidence from genetic studies, we hypothesized that there may be a shared component to the role of myeloid function in Parkinson and Alzheimer disease (PD and AD) and assessed whether PD susceptibility variants influenced protein expression of well-established AD-associated myeloid...

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Autores principales: Chan, Gail, White, Charles C., Winn, Phoebe A., Cimpean, Maria, Replogle, Joseph M., Glick, Laura R., Cuerdon, Nicole E., Ryan, Katie J., Johnson, Keith A., Schneider, Julie A., Bennett, David A., Chibnik, Lori B., Sperling, Reisa A., De Jager, Philip L., Bradshaw, Elizabeth M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962525/
https://www.ncbi.nlm.nih.gov/pubmed/27504496
http://dx.doi.org/10.1212/NXG.0000000000000090
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author Chan, Gail
White, Charles C.
Winn, Phoebe A.
Cimpean, Maria
Replogle, Joseph M.
Glick, Laura R.
Cuerdon, Nicole E.
Ryan, Katie J.
Johnson, Keith A.
Schneider, Julie A.
Bennett, David A.
Chibnik, Lori B.
Sperling, Reisa A.
De Jager, Philip L.
Bradshaw, Elizabeth M.
author_facet Chan, Gail
White, Charles C.
Winn, Phoebe A.
Cimpean, Maria
Replogle, Joseph M.
Glick, Laura R.
Cuerdon, Nicole E.
Ryan, Katie J.
Johnson, Keith A.
Schneider, Julie A.
Bennett, David A.
Chibnik, Lori B.
Sperling, Reisa A.
De Jager, Philip L.
Bradshaw, Elizabeth M.
author_sort Chan, Gail
collection PubMed
description OBJECTIVE: Given evidence from genetic studies, we hypothesized that there may be a shared component to the role of myeloid function in Parkinson and Alzheimer disease (PD and AD) and assessed whether PD susceptibility variants influenced protein expression of well-established AD-associated myeloid genes in human monocytes. METHODS: We repurposed data in which AD-related myeloid proteins CD33, TREM1, TREM2, TREML2, TYROBP, and PTK2B were measured by flow cytometry in monocytes from 176 participants of the PhenoGenetic Project (PGP) and Harvard Aging Brain Study. Linear regression was used to identify associations between 24 PD risk variants and protein expression. The 2 cohorts were meta-analyzed in a discovery analysis, and the 4 most strongly suggestive results were validated in an independent cohort of 50 PGP participants. RESULTS: We discovered and validated an association between the PD risk allele rs12456492(G) in the RIT2 locus and increased CD33 expression (p(joint) = 3.50 × 10(−5)) and found strongly suggestive evidence that rs11060180(A) in the CCDC62/HIP1R locus decreased PTK2B expression (p(joint) = 1.12 × 10(−4)). Furthermore, in older individuals, increased CD33 expression on peripheral monocytes was associated with a greater burden of parkinsonism (p = 0.047), particularly bradykinesia (p = 6.64 × 10(−3)). CONCLUSIONS: We find that the rs12456492 PD risk variant affects expression of AD-associated protein CD33 in peripheral monocytes, which suggests that genetic factors for these 2 diseases may converge to influence overlapping innate immune-mediated mechanisms that contribute to neurodegeneration. Furthermore, the effect of the rs12456492(G) PD risk allele on increased CD33 suggests that the inhibition of certain myeloid functions may contribute to PD susceptibility, as is the case for AD.
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spelling pubmed-49625252016-08-08 Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci Chan, Gail White, Charles C. Winn, Phoebe A. Cimpean, Maria Replogle, Joseph M. Glick, Laura R. Cuerdon, Nicole E. Ryan, Katie J. Johnson, Keith A. Schneider, Julie A. Bennett, David A. Chibnik, Lori B. Sperling, Reisa A. De Jager, Philip L. Bradshaw, Elizabeth M. Neurol Genet Article OBJECTIVE: Given evidence from genetic studies, we hypothesized that there may be a shared component to the role of myeloid function in Parkinson and Alzheimer disease (PD and AD) and assessed whether PD susceptibility variants influenced protein expression of well-established AD-associated myeloid genes in human monocytes. METHODS: We repurposed data in which AD-related myeloid proteins CD33, TREM1, TREM2, TREML2, TYROBP, and PTK2B were measured by flow cytometry in monocytes from 176 participants of the PhenoGenetic Project (PGP) and Harvard Aging Brain Study. Linear regression was used to identify associations between 24 PD risk variants and protein expression. The 2 cohorts were meta-analyzed in a discovery analysis, and the 4 most strongly suggestive results were validated in an independent cohort of 50 PGP participants. RESULTS: We discovered and validated an association between the PD risk allele rs12456492(G) in the RIT2 locus and increased CD33 expression (p(joint) = 3.50 × 10(−5)) and found strongly suggestive evidence that rs11060180(A) in the CCDC62/HIP1R locus decreased PTK2B expression (p(joint) = 1.12 × 10(−4)). Furthermore, in older individuals, increased CD33 expression on peripheral monocytes was associated with a greater burden of parkinsonism (p = 0.047), particularly bradykinesia (p = 6.64 × 10(−3)). CONCLUSIONS: We find that the rs12456492 PD risk variant affects expression of AD-associated protein CD33 in peripheral monocytes, which suggests that genetic factors for these 2 diseases may converge to influence overlapping innate immune-mediated mechanisms that contribute to neurodegeneration. Furthermore, the effect of the rs12456492(G) PD risk allele on increased CD33 suggests that the inhibition of certain myeloid functions may contribute to PD susceptibility, as is the case for AD. Wolters Kluwer 2016-07-26 /pmc/articles/PMC4962525/ /pubmed/27504496 http://dx.doi.org/10.1212/NXG.0000000000000090 Text en © 2016 American Academy of Neurology This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially.
spellingShingle Article
Chan, Gail
White, Charles C.
Winn, Phoebe A.
Cimpean, Maria
Replogle, Joseph M.
Glick, Laura R.
Cuerdon, Nicole E.
Ryan, Katie J.
Johnson, Keith A.
Schneider, Julie A.
Bennett, David A.
Chibnik, Lori B.
Sperling, Reisa A.
De Jager, Philip L.
Bradshaw, Elizabeth M.
Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title_full Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title_fullStr Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title_full_unstemmed Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title_short Trans-pQTL study identifies immune crosstalk between Parkinson and Alzheimer loci
title_sort trans-pqtl study identifies immune crosstalk between parkinson and alzheimer loci
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962525/
https://www.ncbi.nlm.nih.gov/pubmed/27504496
http://dx.doi.org/10.1212/NXG.0000000000000090
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