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TMOF-Like Factor Controls the Biosynthesis of Serine Proteases in the Larval Gut of Heliothis virescens

机译:TMOF样因子控制棉铃虫幼虫肠道丝氨酸蛋白酶的生物合成。

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Proteolytic enzyme biosynthesis in the midgut of the 4th in-star larva of Heliothis virescens is cyclical. Protease activity increases immediately after the molt from the 3rd to the 4th instar larvae and declines just before the molt into the 5th instar. Characterization of the midgut proteases using soy-bean tryspin inhibitor (SBTI) Bowman Birk Inhibitor (BBI) 4-(2-aminoethyl)benzensulfonylfluoride (AEBSF) and N-tosyl-L-phenylalanine chloromethylketone (TPCK) indicate that protease activity is mostly trypsinlike (80%) with a small amount of chymotrypsinlike activity (20%). Injections of late 3rd and 4th instar larval hemolymph into H. virescens larvae inhibited tryspin biosynthesis in the larval midgut. Similar results were obtained when highly purified 4th instar larval hemolymph that crossreacted with Aea-TMOF antisurm using ELISA was injected into 2nd instar larvae. Injections of Aca-TMOF and its analogues into 2nd instar, and Aea-TMOF alone into 4th instar larvae stopped trypsin biosynthesis 24 and 48 h after the injections, respectively. Injections of 4th instar H. virescens larval hemolymph into female Aedes aegypti that took a blood meal stopped trypsin biosynthesis and egg de-velopment. These results show that the biosynthesis of trypsin-like enzymes in the midgut of a lepidoptera is modulated with a hemolymph circulating TMOF-like factor that is closely re-lated to Aea-TMOF. Arch. Insect Biochem. Physiol.
机译:棉铃虫第四龄幼虫中肠中的蛋白水解酶生物合成是周期性的。从第3龄到第4龄幼虫蜕皮后,蛋白酶活性立即增加,而在第5龄蜕变之前,蛋白酶活性下降。使用大豆类胰蛋白酶抑制剂(SBTI)Bowman Birk抑制剂(BBI)4-(2-氨基乙基)苯磺酰氟(AEBSF)和N-甲苯磺酰基-L-苯丙氨酸氯甲基酮(TPCK)对中肠蛋白酶进行表征表明,蛋白酶活性主要类似于胰蛋白酶。 (80%)具有少量胰凝乳蛋白酶样活性(20%)。将三龄和四龄幼虫幼虫淋巴液注射到粘膜线虫幼虫中可抑制幼虫中肠的锥虫生物合成。当将高纯度纯化的四龄幼虫血淋巴与Aea-TMOF抗surm酶联反应后,将其纯化后注射到二龄幼虫中,可获得相似的结果。分别在注射后24小时和48小时向第二龄幼虫注射Aca-TMOF及其类似物,并向第四龄幼虫单独注射Aea-TMOF停止胰蛋白酶的生物合成。向雌性埃及伊蚊(Aedes aegypti)进食第四次新生的H. virescens幼虫血淋巴,以止血胰蛋白酶的生物合成和卵子的发育。这些结果表明,鳞翅目中肠中胰蛋白酶样酶的生物合成受到与Aea-TMOF密切相关的血淋巴循环TMOF样因子的调节。拱。昆虫生化。生理学。

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