Geiser Dawn L, Zhang Dianzheng, Winzerling Joy J
Department of Nutritional Science, College of Agriculture and Life Sciences and Center for Insect Science, University of Arizona, 1177 East 4th Street, Shantz Building, Room 405, Tucson, AZ 85721-0038, USA.
Insect Biochem Mol Biol. 2006 Mar;36(3):177-87. doi: 10.1016/j.ibmb.2005.12.001. Epub 2006 Jan 11.
The yellow fever mosquito, Aedes aegypti, must blood feed in order to complete her life cycle. The blood meal provides a high level of iron that is required for egg development. We are interested in developing control strategies that interfere with this process. We show that A. aegypti larval cells synthesize and secrete ferritin in response to iron exposure. Cytoplasmic ferritin is maximal at low levels of iron, consists of both the light chain (LCH) and heavy chain (HCH) subunits and reflects cytoplasmic iron levels. Secreted ferritin increases in direct linear relationship to iron dose and consists primarily of HCH subunits. Although the messages for both subunits increase with iron treatment, our data indicate that mosquito HCH synthesis could be partially controlled at the translational level as well. Importantly, we show that exposure of mosquito cells to iron at low concentrations increases cytoplasmic iron, while higher iron levels results in a decline in cytoplasmic iron levels indicating that excess iron is removed from mosquito cells. Our work indicates that HCH synthesis and ferritin secretion are key factors in the response of mosquito cells to iron exposure and could be the primary mechanisms that allow these insects to defend against an intracellular iron overload.
黄热病蚊子埃及伊蚊必须吸食血液才能完成其生命周期。血餐提供了卵子发育所需的高水平铁。我们有兴趣开发干扰这一过程的控制策略。我们发现埃及伊蚊幼虫细胞在暴露于铁时会合成并分泌铁蛋白。细胞质铁蛋白在低铁水平时达到最大值,由轻链(LCH)和重链(HCH)亚基组成,反映细胞质铁水平。分泌的铁蛋白与铁剂量呈直接线性关系增加,主要由HCH亚基组成。虽然两个亚基的信息都随着铁处理而增加,但我们的数据表明蚊子HCH的合成在翻译水平上也可能受到部分控制。重要的是,我们表明将蚊子细胞暴露于低浓度的铁会增加细胞质铁,而较高的铁水平会导致细胞质铁水平下降,这表明过量的铁从蚊子细胞中被清除。我们的工作表明HCH合成和铁蛋白分泌是蚊子细胞对铁暴露反应的关键因素,可能是这些昆虫抵御细胞内铁过载的主要机制。