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Graeme I. Bell

Affiliations: 
University of Chicago, Chicago, IL 
Area:
Molecular Biology, Biochemistry, Physiology Biology
Website:
https://biomedsciences.uchicago.edu/page/graeme-bell-phd
Google:
"Graeme Ian Bell"
Bio:

http://texts.cdlib.org/view?docId=kt7q2nb2hm&chunk.id=d0e7135&brand=calisphere&doc.view=entire_text

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Parents

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William J. Rutter grad student 1977 UCSF
 (Yeast DNA-dependent RNA polymerases.)

Children

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Markus Stoffel grad student
Sergio Y. Alcoser grad student 2006 Chicago
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Publications

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Støy J, De Franco E, Ye H, et al. (2021) In celebration of a century with insulin - Update of insulin gene mutations in diabetes. Molecular Metabolism. 101280
Petty LE, Highland HM, Gamazon ER, et al. (2019) Functionally oriented analysis of cardiometabolic traits in a trans-ethnic sample. Human Molecular Genetics
Jun G, Manning A, Almeida M, et al. (2017) Evaluating the contribution of rare variants to type 2 diabetes and related traits using pedigrees. Proceedings of the National Academy of Sciences of the United States of America
Jason F, Fuchsberger C, Mahajan A, et al. (2017) Sequence data and association statistics from 12,940 type 2 diabetes cases and controls. Scientific Data. 4: 170179
Mercader JM, Liao RG, Davis A, et al. (2017) A Loss-Of-Function Splice Acceptor Variant in IGF2 is Protective for Type 2 Diabetes. Diabetes
Støy J, Olsen J, Park SY, et al. (2017) In vivo measurement and biological characterisation of the diabetes-associated mutant insulin p.R46Q (GlnB22-insulin). Diabetologia
Manning A, Highland HM, Gasser J, et al. (2017) A Low-Frequency Inactivating Akt2 Variant Enriched in the Finnish Population is Associated With Fasting Insulin Levels and Type 2 Diabetes Risk. Diabetes
Im HK, Barbeira A, Zheng J, et al. (2017) Generating A Database of Phenotypic Consequences of Gene Regulation Across 40 Human Tissues European Neuropsychopharmacology. 27
Fuchsberger C, Flannick J, Teslovich TM, et al. (2016) The genetic architecture of type 2 diabetes. Nature
Horikoshi M, Pasquali L, Wiltshire S, et al. (2016) Transancestral fine-mapping of four type 2 diabetes susceptibility loci highlights potential causal regulatory mechanisms. Human Molecular Genetics
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