Target of rapamycin-mediated amino acid signaling in mosquito anautogeny

被引:217
作者
Hansen, IA
Attardo, GM
Park, JH
Peng, Q
Raikhel, AS [1 ]
机构
[1] Univ Calif Riverside, Dept Entomol, Riverside, CA 92506 USA
[2] Univ Calif Riverside, Program Biochem & Mol Biol, Riverside, CA 92506 USA
关键词
D O I
10.1073/pnas.0403460101
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 [理学]; 0710 [生物学]; 09 [农学];
摘要
Mosquitoes generate an enormous burden on human health worldwide. Disease-transmitting species use a reproductive strategy, termed anautogeny, that requires a blood meal to initiate egg maturation. Whereas this strategy is important for driving disease transmission, the molecular mechanisms underlying this phenomenon are still poorly understood. The production of yolk protein precursors (YPPs), a central event in egg maturation, is called vitellogenesis. YPPs are synthesized in the fat body, the insect analogue of the vertebrate liver. Mosquito vitellogenesis is regulated by the steroid hormone 20 hydroxyecdysone (20E). However, 20E alone is not capable of activating vitellogenesis in vivo. Here, we report that amino acid signaling through the nutrient-sensitive target of rapamycin (TOR) pathway is essential for the activation of YPP gene expression. An increase in extracellular amino acid levels, similar to the increase observed after a blood meal, is critical for 20E stimulation of YPP gene expression. Treatment with the TOR kinase inhibitor rapamycin significantly inhibits YPP expression. We used RNA interference to knockdown the expression of two key proteins of the TOR signaling pathway, TOR, and tuberous sclerosis complex 2. Knockdown of TOR inhibited amino acid stimulation while knockdown of tuberous sclerosis complex 2, a negative regulator of TOR signaling, resulted in enhanced YPP expression. Thus, amino acid-based TOR signaling regulates the activation of egg development after a blood meal, an adaptation to the unique life style of mosquitoes.
引用
收藏
页码:10626 / 10631
页数:6
相关论文
共 34 条
[1]
RNA interference-mediated knockdown of a GATA factor reveals a link to anautogeny in the mosquito Aedes aegypti [J].
Attardo, GM ;
Higgs, S ;
Klingler, KA ;
Vanlandingham, DL ;
Raikhel, AS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (23) :13374-13379
[2]
Ausubel F.M., 1991, CURRENT PROTOCOLS MO
[3]
Tripartite regulation of Gln3p by TOR, Ure2p, and phosphatases [J].
Bertram, PG ;
Choi, JH ;
Carvalho, J ;
Ai, WD ;
Zeng, CB ;
Chan, TF ;
Zheng, XFS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (46) :35727-35733
[4]
A MAMMALIAN PROTEIN TARGETED BY G1-ARRESTING RAPAMYCIN-RECEPTOR COMPLEX [J].
BROWN, EJ ;
ALBERS, MW ;
SHIN, TB ;
ICHIKAWA, K ;
KEITH, CT ;
LANE, WS ;
SCHREIBER, SL .
NATURE, 1994, 369 (6483) :756-758
[5]
NUTRITIONAL RESERVES OF AUTOGENOUS AND ANAUTOGENOUS SELECTED STRAINS OF AEDES-ALBOPICTUS (DIPTERA, CULICIDAE) [J].
CHAMBERS, GM ;
KLOWDEN, MJ .
JOURNAL OF MEDICAL ENTOMOLOGY, 1994, 31 (04) :554-560
[6]
Clements AN., 1992, BIOL MOSQUITOES DEV, V1
[7]
A nutrient sensor mechanism controls Drosophila growth [J].
Colombani, J ;
Raisin, S ;
Pantalacci, S ;
Radimerski, T ;
Montagne, J ;
Léopold, P .
CELL, 2003, 114 (06) :739-749
[8]
Transmitting the signal of excess nitrogen in Saccharomyces cerevisiae from the Tor proteins to the GATA factors:: connecting the dots [J].
Cooper, TG .
FEMS MICROBIOLOGY REVIEWS, 2002, 26 (03) :223-238
[9]
INDIRECT CONTROL OF YOLK PROTEIN GENES BY 20-HYDROXYECDYSONE IN THE FAT-BODY OF THE MOSQUITO, AEDES-AEGYPTI [J].
DEITSCH, KW ;
CHEN, JS ;
RAIKHEL, AS .
INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY, 1995, 25 (04) :449-454
[10]
EBERLE MW, 1986, J AM MOSQUITO CONTR, V2, P38