Alterations in protein and amino acid metabolism in rats fed a branched-chain amino acid- or leucine-enriched diet during postprandial and postabsorptive states.
分岐鎖アミノ酸またはロイシン強化食を摂取したラットにおける食後および食後吸収状態でのタンパク質およびアミノ酸代謝の変化 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
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- 出版年
- 2016
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- doi.org
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- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
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日本語要約(機械生成)
分岐鎖アミノ酸(BCAA)特にロイシンの筋肉タンパク質への有益な効果が信じられているが、慢性摂取の影響を検討した研究は少ない。本研究では、ラットに標準食、BCAA高含有食(HVLID)、またはロイシン高含有食(HLD)を2ヶ月間与え、食後および絶食状態でのタンパク質代謝を調べた。その結果、HVLIDとHLDは血漿尿素、アラニン、グルタミンを増加させた。HVLIDはBCAAと分岐鎖ケト酸を増加させ、HLDはロイシンとケトイソカプロン酸を増加させ、バリン、イソロイシン、LDLコレステロールを減少させた。筋肉では、HVLIDで食後タンパク質合成が高く、両群でキモトリプシン様活性が低下した。しかし、絶食時にはHVLIDとHLDでタンパク質合成が対照より低下し、特に速筋で顕著だった。結論として、BCAA強化食の慢性摂取は筋肉タンパク質バランスに有益な効果を示さず、むしろロイシン強化食では負の効果が示唆された。主な影響はBCAA異化の亢進と、絶食時のタンパク質合成障害である。
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抄録
Background: Many people believe in favourable effects of branched-chain amino acids (BCAAs; valine, leucine, and isoleucine), especially leucine, on muscle protein balance and consume BCAAs for many years. We determined the effects of the chronic intake of a BCAA- or leucine-enriched diet on protein and amino acid metabolism in fed and postabsorptive states.Methods: Rats were fed a standard diet, a diet with a high content of valine, leucine, and isoleucine (HVLID), or a high content of leucine (HLD) for 2 months. Half of the animals in each group were sacrificed in the fed state on the last day, and the other half were sacrificed after overnight fast. Protein synthesis was assessed using the flooding dose method (L-[3,4,5-(3)H]phenylalanine), proteolysis on the basis of chymotrypsin-like activity (CHTLA) of proteasome and cathepsin B and L activities.Results: Chronic intake of HVLID or HLD enhanced plasma levels of urea, alanine and glutamine. HVLID also increased levels of all three BCAA and branched-chain keto acids (BCKA), HLD increased leucine, ketoisocaproate and alanine aminotransferase and decreased valine, ketovaline, isoleucine, ketoisoleucine, and LDL cholesterol. Tissue weight and protein content were lower in extensor digitorum longus muscles in the HLD group and higher in kidneys in the HVLID and HLD groups. Muscle protein synthesis in postprandial state was higher in the HVLID group, and CHTLA was lower in muscles of the HVLID and HLD groups compared to controls. Overnight starvation enhanced alanine aminotransferase activity in muscles, and decreased protein synthesis in gastrocnemius (in HVLID group) and extensor digitorum longus (in HLD group) muscles more than in controls. Effect of HVLID and HLD on CHTLA in muscles in postabsorptive state was insignificant.Conclusions: The results failed to demonstrate positive effects of the chronic consumption of a BCAA-enriched diet on protein balance in skeletal muscle and indicate rather negative effects from a leucine-enriched diet. The primary effects of both diets are an activated catabolism of BCAAs, which leads to an enhanced production of BCKA, alanine and glutamine and their utilization in visceral tissues and an impaired protein synthesis in postabsorptive state, particularly in fast-twitch (white) muscles.
DOI 10.1186/s12986-016-0072-3
PMID 26877757
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