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Targeting hepatic glutaminase activity to ameliorate hyperglycemia
Russell A. Miller
, Yuji Shi
, Wenyun Lu
, David A. Pirman
, Aditi Jatkar
, Matthew Blatnik
, Hong Wu
, César Cárdenas
, Min Wan
, J. Kevin Foskett
, Junyoung O. Park
, Yiyi Zhang
, William L. Holland
,
Joshua D. Rabinowitz
, Morris J. Birnbaum
Chemistry
High Meadows Environmental Institute
Lewis-Sigler Institute for Integrative Genomics
Molecular Biology
Princeton Branch of the Ludwig Institute for Cancer Research
Research output
:
Contribution to journal
›
Article
›
peer-review
62
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Scopus citations
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Keyphrases
Glucagon
100%
Hyperglycemia
100%
Glutaminase Activity
100%
Glutamine
50%
Glutaminase 2
50%
Gluconeogenesis
37%
Amino Acids
25%
Glutaminolysis
25%
Glucose Production
25%
Glucagon Signaling Pathway
25%
Liver
12%
Primary Hepatocytes
12%
α-ketoglutarate (α-KG)
12%
Human Genetic Variation
12%
New Therapeutics
12%
Genome-wide Association Study
12%
Gain-of-function
12%
Calcium Release
12%
Endoplasmic Reticulum
12%
Missense mutation
12%
Type 2 Diabetes Mellitus (T2DM)
12%
Protein Kinase
12%
Insulin Resistance
12%
Pathological State
12%
Dehydrogenase
12%
Glycogen
12%
Nuclear Targeting
12%
Therapeutic Avenues
12%
Dysregulated
12%
Hepatic Glucose Production
12%
Glutamine Metabolism
12%
Anaplerotic Flux
12%
Glycogenolysis
12%
Cryopreserved
12%
Fasting Hyperglycemia
12%
Glucose Flux
12%
Impaired Fasting Glucose
12%
Fasting Condition
12%
Fasting Blood Glucose
12%
Glucogenic
12%
Biochemistry, Genetics and Molecular Biology
Glutaminase
100%
Hyperglycemia
100%
Glucagon
100%
Glutamine
55%
Gluconeogenesis
55%
Glucose
44%
Amino Acids
22%
Glutaminolysis
22%
Glucose Blood Level
22%
Enzyme
11%
Metabolic Pathway
11%
Hepatocyte
11%
Oxidoreductase
11%
Dehydrogenase
11%
Protein Kinase A
11%
Genome-Wide Association Study
11%
Missense Mutation
11%
Calcium Transport
11%
Glycogenolysis
11%
Glucagon Blood Level
11%
Human Genetic Variation
11%
Insulin
11%
Glycogen
11%
Maturity Onset Diabetes of the Young
11%