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Role of branched‐chain amino acid–catabolizing enzymes in intertissue  signaling, metabolic remodeling, and energy homeostasis - Biswas - 2019 -  The FASEB Journal - Wiley Online Library
Role of branched‐chain amino acid–catabolizing enzymes in intertissue signaling, metabolic remodeling, and energy homeostasis - Biswas - 2019 - The FASEB Journal - Wiley Online Library

Branched-chain amino acids differently modulate catabolic and anabolic  states in mammals: a pharmacological point of view
Branched-chain amino acids differently modulate catabolic and anabolic states in mammals: a pharmacological point of view

Branched-chain amino acids in metabolic signalling and insulin resistance |  Nature Reviews Endocrinology
Branched-chain amino acids in metabolic signalling and insulin resistance | Nature Reviews Endocrinology

Glucose promotes cell growth by suppressing branched-chain amino acid  degradation | Nature Communications
Glucose promotes cell growth by suppressing branched-chain amino acid degradation | Nature Communications

Obesity-related elevations in plasma leucine are associated with  alterations in enzymes involved in branched-chain amino acid metabolism |  American Journal of Physiology-Endocrinology and Metabolism
Obesity-related elevations in plasma leucine are associated with alterations in enzymes involved in branched-chain amino acid metabolism | American Journal of Physiology-Endocrinology and Metabolism

The BCAA catabolic pathway in human and mouse adipose tissues a,... |  Download Scientific Diagram
The BCAA catabolic pathway in human and mouse adipose tissues a,... | Download Scientific Diagram

A new branch connecting thermogenesis and diabetes | Nature Metabolism
A new branch connecting thermogenesis and diabetes | Nature Metabolism

Targeting BCAA Catabolism to Treat Obesity-Associated Insulin Resistance |  Diabetes
Targeting BCAA Catabolism to Treat Obesity-Associated Insulin Resistance | Diabetes

Metabolic effects of milk protein intake strongly depend on pre-existing  metabolic and exercise status | SpringerLink
Metabolic effects of milk protein intake strongly depend on pre-existing metabolic and exercise status | SpringerLink

Targeting BCAA Catabolism to Treat Obesity-Associated Insulin Resistance |  Diabetes
Targeting BCAA Catabolism to Treat Obesity-Associated Insulin Resistance | Diabetes

BCAA: Beware Valine the Villain! Linked to Obesity and Diabetes.
BCAA: Beware Valine the Villain! Linked to Obesity and Diabetes.

Effect of obesity on plasma BCAA concentrations Plasma BCAAs were... |  Download Scientific Diagram
Effect of obesity on plasma BCAA concentrations Plasma BCAAs were... | Download Scientific Diagram

Сыромоноедение | Branched-chain amino acids in metabolic signalling and  insulin resistance - Сыромоноедение
Сыромоноедение | Branched-chain amino acids in metabolic signalling and insulin resistance - Сыромоноедение

Branched-chain amino acids impact health and lifespan indirectly via amino  acid balance and appetite control | Nature Metabolism
Branched-chain amino acids impact health and lifespan indirectly via amino acid balance and appetite control | Nature Metabolism

The ratio of dietary BCAA to non-BCAA influences hypothalamic gene... |  Download Scientific Diagram
The ratio of dietary BCAA to non-BCAA influences hypothalamic gene... | Download Scientific Diagram

Amazon.com: Natura BCAA Capsules - All Natural BCAAs for Recovery and  Muscle Growth - Clean Branched Chain Amino Acids - Essential 2:1:1 Ratio -  Pre and Post Workout Supplement for Men and
Amazon.com: Natura BCAA Capsules - All Natural BCAAs for Recovery and Muscle Growth - Clean Branched Chain Amino Acids - Essential 2:1:1 Ratio - Pre and Post Workout Supplement for Men and

BCAA flux to mmBCFAs is decreased by diet-induced obesity a, Relative... |  Download Scientific Diagram
BCAA flux to mmBCFAs is decreased by diet-induced obesity a, Relative... | Download Scientific Diagram

Fine-scale haplotype mapping of MUT, AACS, SLC6A15 and PRKCA genes  indicates association with insulin resistance of metabolic syndrome and  relationship with branched chain amino acid metabolism or regulation
Fine-scale haplotype mapping of MUT, AACS, SLC6A15 and PRKCA genes indicates association with insulin resistance of metabolic syndrome and relationship with branched chain amino acid metabolism or regulation

BCAA catabolism in brown fat controls energy homeostasis through SLC25A44 |  Nature
BCAA catabolism in brown fat controls energy homeostasis through SLC25A44 | Nature

Excessive BCAA intake linked to over-eating and obesity: Australian mice  study
Excessive BCAA intake linked to over-eating and obesity: Australian mice study

Glucose promotes cell growth by suppressing branched-chain amino acid  degradation | Nature Communications
Glucose promotes cell growth by suppressing branched-chain amino acid degradation | Nature Communications

Frontiers | Coordinated Modulation of Energy Metabolism and Inflammation by  Branched-Chain Amino Acids and Fatty Acids | Endocrinology
Frontiers | Coordinated Modulation of Energy Metabolism and Inflammation by Branched-Chain Amino Acids and Fatty Acids | Endocrinology

BCAA catabolism in brown fat controls energy homeostasis through SLC25A44 |  Nature
BCAA catabolism in brown fat controls energy homeostasis through SLC25A44 | Nature

JCM | Free Full-Text | High Plasma Branched-Chain Amino Acids Are  Associated with Higher Risk of Post-Transplant Diabetes Mellitus in Renal  Transplant Recipients | HTML
JCM | Free Full-Text | High Plasma Branched-Chain Amino Acids Are Associated with Higher Risk of Post-Transplant Diabetes Mellitus in Renal Transplant Recipients | HTML

The effect of noradrenaline on BCAA metabolism in brown adipocytes a,... |  Download Scientific Diagram
The effect of noradrenaline on BCAA metabolism in brown adipocytes a,... | Download Scientific Diagram

Genetic Predisposition to an Impaired Metabolism of the Branched-Chain  Amino Acids and Risk of Type 2 Diabetes: A Mendelian Randomisation Analysis
Genetic Predisposition to an Impaired Metabolism of the Branched-Chain Amino Acids and Risk of Type 2 Diabetes: A Mendelian Randomisation Analysis