» Articles » PMID: 17767905

Disruption of BCATm in Mice Leads to Increased Energy Expenditure Associated with the Activation of a Futile Protein Turnover Cycle

Overview
Journal Cell Metab
Publisher Cell Press
Date 2007 Sep 5
PMID 17767905
Citations 191
Authors
Affiliations
Soon will be listed here.
Abstract

Leucine is recognized as a nutrient signal; however, the long-term in vivo consequences of leucine signaling and the role of branched-chain amino acid (BCAA) metabolism in this signaling remain unclear. To investigate these questions, we disrupted the BCATm gene, which encodes the enzyme catalyzing the first step in peripheral BCAA metabolism. BCATm(-/-) mice exhibited elevated plasma BCAAs and decreased adiposity and body weight, despite eating more food, along with increased energy expenditure, remarkable improvements in glucose and insulin tolerance, and protection from diet-induced obesity. The increased energy expenditure did not seem to be due to altered locomotor activity, uncoupling proteins, sympathetic activity, or thyroid hormones but was strongly associated with food consumption and an active futile cycle of increased protein degradation and synthesis. These observations suggest that elevated BCAAs and/or loss of BCAA catabolism in peripheral tissues play an important role in regulating insulin sensitivity and energy expenditure.

Citing Articles

Primary Roles of Branched Chain Amino Acids (BCAAs) and Their Metabolism in Physiology and Metabolic Disorders.

Bo T, Fujii J Molecules. 2025; 30(1.

PMID: 39795113 PMC: 11721030. DOI: 10.3390/molecules30010056.


Human HDAC6 senses valine abundancy to regulate DNA damage.

Jin J, Meng T, Yu Y, Wu S, Jiao C, Song S Nature. 2024; 637(8044):215-223.

PMID: 39567688 DOI: 10.1038/s41586-024-08248-5.


Oligonol, an Oligomerized Polyphenol from , Enhances Branched-Chain Amino Acid Transportation and Catabolism to Alleviate Sarcopenia.

Chang Y, Chen Y, Chan Y, Liu C, Chang S Int J Mol Sci. 2024; 25(21).

PMID: 39519101 PMC: 11546093. DOI: 10.3390/ijms252111549.


BCKDH kinase promotes hepatic gluconeogenesis independent of BCKDHA.

Zhou F, Sheng C, Ma X, Li T, Ming X, Wang S Cell Death Dis. 2024; 15(10):736.

PMID: 39389936 PMC: 11467410. DOI: 10.1038/s41419-024-07071-0.


Exploring protein relative relations in skeletal muscle proteomic analysis for insights into insulin resistance and type 2 diabetes.

Czajkowska A, Czajkowski M, Szczerbinski L, Jurczuk K, Reska D, Kwedlo W Sci Rep. 2024; 14(1):17631.

PMID: 39085321 PMC: 11292014. DOI: 10.1038/s41598-024-68568-4.


References
1.
Buttgereit F, Brand M . A hierarchy of ATP-consuming processes in mammalian cells. Biochem J. 1995; 312 ( Pt 1):163-7. PMC: 1136240. DOI: 10.1042/bj3120163. View

2.
BUSE M, Reid S . Leucine. A possible regulator of protein turnover in muscle. J Clin Invest. 1975; 56(5):1250-61. PMC: 301988. DOI: 10.1172/JCI108201. View

3.
Lowell B, Bachman E . Beta-Adrenergic receptors, diet-induced thermogenesis, and obesity. J Biol Chem. 2003; 278(32):29385-8. DOI: 10.1074/jbc.R300011200. View

4.
Handschin C, Spiegelman B . Peroxisome proliferator-activated receptor gamma coactivator 1 coactivators, energy homeostasis, and metabolism. Endocr Rev. 2006; 27(7):728-35. DOI: 10.1210/er.2006-0037. View

5.
Sapir D, Stewart P, Walser M, Moreadith C, Moyer E, Imbembo A . Effects of alpha-ketoisocaproate and of leucine on nitrogen metabolism in postoperative patients. Lancet. 1983; 1(8332):1010-4. DOI: 10.1016/s0140-6736(83)92643-0. View