John SK Kauwe

Brigham Young University, Provo, UT, United States 
Alzheimer's disease genetics
"John Kauwe"
Mean distance: 18.85 (cluster 28)
Cross-listing: Alzheimer's Tree


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Alison M. Goate grad student 2003-2007 Washington University
 (Using cerebrospinal fluid protein levels as quantitative endophenotypes to identify novel genetic risk factors for Alzheimer's disease.)


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Perry G. Ridge grad student 2013 BYU
Mark T. Ebbert grad student 2014 BYU


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Carlos Cruchaga collaborator
BETA: Related publications


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Dugan AJ, Nelson PT, Katsumata Y, et al. (2021) Analysis of genes (TMEM106B, GRN, ABCC9, KCNMB2, and APOE) implicated in risk for LATE-NC and hippocampal sclerosis provides pathogenetic insights: a retrospective genetic association study. Acta Neuropathologica Communications. 9: 152
Teerlink CC, Miller JB, Vance EL, et al. (2021) Analysis of high-risk pedigrees identifies 12 candidate variants for Alzheimer's disease. Alzheimer's & Dementia : the Journal of the Alzheimer's Association
Saito ER, Miller JB, Harari O, et al. (2021) Alzheimer's disease alters oligodendrocytic glycolytic and ketolytic gene expression. Alzheimer's & Dementia : the Journal of the Alzheimer's Association
McKinnon LM, Miller JB, Whiting MF, et al. (2021) A comprehensive analysis of the phylogenetic signal in ramp sequences in 211 vertebrates. Scientific Reports. 11: 622
Hodgman MW, Miller JB, Meurs TE, et al. (2020) CUBAP: an interactive web portal for analyzing codon usage biases across populations. Nucleic Acids Research
Katsumata Y, Abner EL, Karanth S, et al. (2020) Distinct clinicopathologic clusters of persons with TDP-43 proteinopathy. Acta Neuropathologica
Miller JB, Kauwe JSK. (2020) Predicting Clinical Dementia Rating Using Blood RNA Levels. Genes. 11
Miller JB, Ward E, Staley LA, et al. (2020) Identification and genomic analysis of pedigrees with exceptional longevity identifies candidate rare variants. Neurobiology of Disease. 104972
Sherva R, Gross A, Mukherjee S, et al. (2020) Genome-wide association study of rate of cognitive decline in Alzheimer's disease patients identifies novel genes and pathways. Alzheimer's & Dementia : the Journal of the Alzheimer's Association
Murcia JDG, Weinert A, Freitas CMT, et al. (2020) Atypical chemokine receptor ACKR2-V41A has decreased CCL2 binding, scavenging, and activation, supporting sustained inflammation and increased Alzheimer's disease risk. Scientific Reports. 10: 8019
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