Riddiford L M, Palli S R, Hiruma K, Li W, Green J, Hice R H, Wolfgang W J, Webb B A
Department of Zoology, University of Washington, Seattle 98195.
Arch Insect Biochem Physiol. 1990;14(3):171-90. doi: 10.1002/arch.940140305.
Insecticyanin was found to be synthesized in several isoelectric forms and stored in the pigment granules in the epidermis. Both major epidermal forms (INS-a, pl 5.5; INS-b, pl 5.7) were found in the cuticle, but only the most basic form, INS-b, was present in the hemolymph. In vitro the epidermis synthesized and secreted both forms into both the cuticle and the medium. Isolation of two cDNA clones for insecticyanin followed by hybridization to epidermal mRNA showed the presence of only one 1.1 kb mRNA, but transcription of the longer cDNA yielded a RNA which produced INS-a but no INS-b. Insecticyanin mRNA was present during the intermolt feeding stages of the 4th and 5th instars and absent during the larval molt and after the onset of metamorphosis. Exposure of either day 2 4th-instar or day 1 5th-instar larval epidermis to 20-hydroxyecdysone (20HE) in vitro caused a dose-dependent decline in this mRNA that was not prevented by simultaneous exposure to JH. When synthesis resumes just before ecdysis, INS-b appears before INS-a; then on the final day of feeding, synthesis of INS-a ceases before that of INS-b. Culture experiments showed that exposure of day 15th epidermis to a small pulse of 20HE followed by an ecdysteroid-free period was best to mimic the in vivo situation, indicating that the small rise of ecdysteroid in the absence of JH on day-2 was responsible for this differential cessation.
昆虫花青素以几种等电形式合成,并储存在表皮的色素颗粒中。在表皮中发现了两种主要形式(INS-a,pI 5.5;INS-b,pI 5.7),角质层中都存在这两种形式,但血淋巴中只存在最碱性的形式INS-b。在体外,表皮将这两种形式都合成并分泌到角质层和培养基中。分离出两个昆虫花青素的cDNA克隆,然后与表皮mRNA杂交,结果显示只存在一种1.1 kb的mRNA,但较长cDNA的转录产生了一种RNA,它产生INS-a但不产生INS-b。昆虫花青素mRNA在四龄和五龄幼虫的蜕皮间取食阶段存在,在幼虫蜕皮期间和变态开始后不存在。将二日龄四龄幼虫或一日龄五龄幼虫的表皮在体外暴露于20-羟基蜕皮酮(20HE)会导致这种mRNA呈剂量依赖性下降,同时暴露于保幼激素并不能阻止这种下降。当在蜕皮前恢复合成时,INS-b在INS-a之前出现;然后在取食的最后一天,INS-a的合成在INS-b之前停止。培养实验表明,将15日龄的表皮暴露于一小脉冲的20HE,随后经历一个无蜕皮甾类的时期,最能模拟体内情况,这表明在第二天无保幼激素时蜕皮甾类的小幅升高是造成这种差异停止的原因。