30 results on '"Stapleton, Donald S."'
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2. Author Correction: Genetic mapping of microbial and host traits reveals production of immunomodulatory lipids by Akkermansia muciniphila in the murine gut
3. Genetic analysis of obesity-induced diabetic nephropathy in BTBR mice
4. A large-scale genome–lipid association map guides lipid identification
5. Genetic Analysis of Obesity-Induced Diabetic Nephropathy in BTBR Mice.
6. Coding variants identified in diabetic patients alter PICK1 BAR domain function in insulin granule biogenesis
7. A Quantitative Map of the Liver Mitochondrial Phosphoproteome Reveals Posttranslational Control of Ketogenesis
8. Coding variants identified in diabetic patients alter PICK1 BAR domain function in insulin granule biogenesis
9. Systems genetics uncovers microbe-lipid-host connections in the murine gut
10. Application of 2D IR Bioimaging: Hyperspectral Images of Formalin-Fixed Pancreatic Tissues and Observation of Slow Protein Degradation
11. Cholecystokinin Is Up-Regulated in Obese Mouse Islets and Expands β-Cell Mass by Increasing β-Cell Survival
12. Genetic determinants of gut microbiota composition and bile acid profiles in mice
13. Exploiting Prophage-Mediated Lysis for Biotherapeutic Release by Lactobacillus reuteri
14. Islet proteomics reveals genetic variation in dopamine production resulting in altered insulin secretion
15. Host Genotype and Gut Microbiome Modulate Insulin Secretion and Diet-Induced Metabolic Phenotypes
16. Histone chaperone ASF1B promotes humanβ-cell proliferation via recruitment of histone H3.3
17. A gene expression network model of type 2 diabetes links cell cycle regulation in islets with diabetes susceptibility
18. NeuCode Proteomics Reveals Bap1 Regulation of Metabolism
19. Identification of the Bile Acid Transporter Slco1a6 as a Candidate Gene That Broadly Affects Gene Expression in Mouse Pancreatic Islets
20. Identification of Slco1a6 as a candidate gene that broadly affects gene expression in mouse pancreatic islets
21. Histone chaperone ASF1B promotes human β -cell proliferation via recruitment of histone H3.3.
22. Quantification of Mitochondrial Acetylation Dynamics Highlights Prominent Sites of Metabolic Regulation
23. Tsc2, a positional candidate gene underlying a quantitative trait locus for hepatic steatosis
24. Positional Cloning of a Type 2 Diabetes Quantitative Trait Locus; Tomosyn-2, a Negative Regulator of Insulin Secretion
25. Loss of PDGF-B activity increases hepatic vascular permeability and enhances insulin sensitivity
26. Positional cloning of Sorcs1, a type 2 diabetes quantitative trait locus
27. Combined Expression Trait Correlations and Expression Quantitative Trait Locus Mapping
28. Tsc2, a positional candidate gene underlying a quantitative trait locus for hepatic steatosis.
29. Loss of PDGF-B activity increases hepatic vascular permeability and enhances insulin sensitivity.
30. Cholecystokinin is up-regulated in obese mouse islets and expands beta-cell mass by increasing beta-cell survival.
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