Lee Kwang Sik, Kim Bo Yeon, Kim Hong Ja, Seo Sook Jae, Yoon Hyung Joo, Choi Yong Soo, Kim Iksoo, Han Yeon Soo, Je Yeon Ho, Lee Sang Mong, Kim Doh Hoon, Sohn Hung Dae, Jin Byung Rae
College of Natural Resources and Life Science, Dong-A University, Busan 604-714, Korea.
Free Radic Biol Med. 2006 Oct 1;41(7):1151-61. doi: 10.1016/j.freeradbiomed.2006.07.001. Epub 2006 Jul 11.
Transferrin in insects is known as an iron transporter, an antibiotic agent, a vitellogenin, and a juvenile hormone-regulated protein. We show here a novel functional role for insect transferrin. Stresses, such as iron overload, bacterial or fungal challenge, cold or heat shock, wounding, and H2O2 or paraquat exposure, cause upregulation of the beetle Apriona germari transferrin (AgTf) gene in the fat body and epidermis, and they cause increased AgTf protein levels. RNA interference (RNAi)-mediated AgTf reduction results in rapid induction of apoptotic cell death in the fat body during exposure to heat stress. The observed effect of AgTf RNAi indicates that AgTf inhibits heat stress-induced apoptotic cell death, suggesting a functional role for AgTf in defense and stress responses in the beetle.
昆虫中的转铁蛋白被认为是一种铁转运蛋白、抗生素、卵黄原蛋白和一种受保幼激素调节的蛋白质。我们在此展示了昆虫转铁蛋白的一种新功能。诸如铁过载、细菌或真菌攻击、冷或热休克、创伤以及接触过氧化氢或百草枯等应激,会导致甲虫桑天牛转铁蛋白(AgTf)基因在脂肪体和表皮中上调,并导致AgTf蛋白水平升高。RNA干扰(RNAi)介导的AgTf减少会导致在热应激期间脂肪体中凋亡细胞死亡的快速诱导。观察到的AgTf RNAi效应表明,AgTf抑制热应激诱导的凋亡细胞死亡,这表明AgTf在甲虫的防御和应激反应中具有功能作用。