Hansen H O, Grunnet I, Knudsen J
Biochem J. 1984 Jun 1;220(2):513-9. doi: 10.1042/bj2200513.
Goat mammary-gland microsomal fraction by itself induces synthesis of medium-chain-length fatty acids by goat mammary fatty acid synthetase and incorporates short- and medium-chain fatty acids into triacylglycerol. Addition of ATP in the absence or presence of Mg2+ totally inhibits triacylglycerol synthesis from short- and medium-chain fatty acids, and severely inhibits synthesis de novo of medium-chain fatty acids. The inhibition by ATP of fatty acid synthesis and triacylglycerol synthesis de novo can be relieved by glycerol 3-phosphate. The effect of ATP could not be mimicked by the non-hydrolysable ATP analogue, adenosine 5'-[beta,gamma-methylene]triphosphate and could not be shown to be caused by inhibition of the diacylglycerol acyltransferase by a phosphorylation reaction. Possible explanations for the mechanism of the inhibition by ATP are discussed, and a hypothetical model for its action is outlined.
山羊乳腺微粒体部分自身可诱导山羊乳腺脂肪酸合成酶合成中链长度脂肪酸,并将短链和中链脂肪酸掺入三酰甘油中。在不存在或存在Mg2+的情况下添加ATP可完全抑制由短链和中链脂肪酸合成三酰甘油,并严重抑制中链脂肪酸的从头合成。ATP对脂肪酸合成和三酰甘油从头合成的抑制作用可被3-磷酸甘油缓解。不可水解的ATP类似物5'-[β,γ-亚甲基]三磷酸腺苷无法模拟ATP的作用,且未表明其是由磷酸化反应抑制二酰甘油酰基转移酶所致。文中讨论了ATP抑制机制的可能解释,并概述了其作用的假设模型。