Blomquist G J, Tillman J A, Reed J R, Gu P, Vanderwel D, Choi S, Reitz R C
Department of Biochemistry, University of Nevada, Reno 89557-0014, USA.
Insect Biochem Mol Biol. 1995 Jun;25(6):751-7. doi: 10.1016/0965-1748(95)00015-n.
Ovarian produced ecdysteroids regulate sex pheromone production in the female housefly, inducing the synthesis of (Z)-9-tricosene (Z9-23:Hy), cis-9,10-epoxytricosane, (Z)-14-tricosen-10-one and methylalkanes. Experiments were performed to gain a detailed understanding of the processes affected by 20-hydroxyecdysone (20-HE) that result in sex pheromone production as the female becomes reproductively mature. A novel microsomal fatty acid synthetase (FAS) is present in the epidermal tissue and plays a role in producing the methyl-branched fatty acid precursors to the methylalkanes. This FAS is released from the microsomes in the presence of 3 M KCl. A major enzyme activity influenced by 20-HE is the fatty acyl-CoA elongation system. A shift in the chain length specificity of the products of the elongation system causes the change in the chain lengths of the alkenes produced to switch from C27 and longer in the previtellogenic female to C23 in the mature female. Data is presented indicating that it is the condensation activity of the elongation system that is affected. Z9-23:Hy arises from a 24 carbon acyl group which is reduced to an aldehyde, and then converted to the hydrocarbon. Data is presented demonstrating that it is the fatty acyl-CoA derivative and not the free fatty acid that is the substrate. There does not appear to be a chain length specificity which regulates the conversion of fatty acyl-CoAs to hydrocarbons as both 24 and 28 carbon fatty acyl-CoAs are converted to hydrocarbon by both males and females of all ages.
卵巢产生的蜕皮甾体调节雌性家蝇性信息素的产生,诱导合成(Z)-9-二十三碳烯(Z9-23:Hy)、顺-9,10-环氧二十三烷、(Z)-14-二十三碳烯-10-酮和甲基烷烃。进行了实验以详细了解20-羟基蜕皮酮(20-HE)影响的过程,这些过程导致雌性家蝇生殖成熟时产生性信息素。一种新型微粒体脂肪酸合成酶(FAS)存在于表皮组织中,在产生甲基烷烃的甲基支链脂肪酸前体过程中发挥作用。这种FAS在3 M KCl存在下从微粒体中释放出来。受20-HE影响的一种主要酶活性是脂肪酰辅酶A延长系统。延长系统产物的链长特异性发生变化,导致所产生烯烃的链长从卵黄生成前雌性的C27及更长变为成熟雌性的C23。所呈现的数据表明受影响的是延长系统的缩合活性。Z9-23:Hy由一个24碳酰基产生,该酰基先还原为醛,然后转化为烃。所呈现的数据表明作为底物的是脂肪酰辅酶A衍生物而非游离脂肪酸。似乎不存在调节脂肪酰辅酶A向烃转化的链长特异性,因为所有年龄段的雄性和雌性都能将24碳和28碳脂肪酰辅酶A转化为烃。