Arsequell G, Fabriàs G, Camps F
Department of Biological Organic Chemistry (CID--CSIC), Barcelona, Spain.
Arch Insect Biochem Physiol. 1990;14(1):47-56. doi: 10.1002/arch.940140106.
In vivo treatments of female sex pheromone glands of the processionary moth, Thaumetopoea pityocampa, with mass-labeled fatty acids showed that (Z)-13-hexadecen-11-ynyl acetate, the main sex pheromone component, is biosynthesized from palmitic acid by the combined action of delta-11 and delta-13 desaturases. The involvement of this unusual delta-13 has been proven by application of [16,16,16-2H3] [1,2-13C2]-hexadecanoic acid to the glands with a resultant incorporation of all labeled atoms into the pheromone and each one of the corresponding intermediates. These results seem to exclude alternative biosynthetic pathways, such as chain shortening and elongation combined with delta-11 desaturation. The delta-11 desaturase responsible for the formation of the triple bond in both the 11-hexadecynoyl and (Z)-13-hexadecen-11-ynoyl intermediates is also an unusual enzyme not previously reported in lepidopteran sex pheromone biosynthesis.
用大量标记的脂肪酸对松异舟蛾雌性性信息素腺体进行体内处理表明,主要性信息素成分(Z)-13-十六碳烯-11-炔基乙酸酯是由棕榈酸通过δ-11和δ-13去饱和酶的联合作用生物合成的。通过将[16,16,16-2H3][1,2-13C2]-十六烷酸应用于腺体,所有标记原子都掺入到性信息素及相应的每种中间体中,从而证明了这种不寻常的δ-13的参与。这些结果似乎排除了其他生物合成途径,例如链缩短和延长与δ-11去饱和相结合的途径。负责在11-十六碳炔酰基和(Z)-13-十六碳烯-11-炔酰基中间体中形成三键的δ-11去饱和酶也是一种以前在鳞翅目性信息素生物合成中未报道过的不寻常酶。