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Enzyme
Compound
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Gene/Protein
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Target Concepts:
Gene/Protein
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Query: UNIPROT:P02794 (
ferritin
)
17,525
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Ferritin is a multimer of 24 subunits of heavy and light chains. In mammals, iron taken into cells is stored in
ferritin
or incorporated into iron-containing proteins. Very little
ferritin
is found circulating in mammalian serum; most is retained in the cytoplasm. Female mosquitoes, such as Aedes aegypti (yellow fever mosquito, Diptera), require a blood meal for oogenesis. Mosquitoes receive a potentially toxic level of iron in the blood meal which must be processed and stored. We demonstrate by (59)Fe pulse-chase experiments that cultured A. aegypti larval
CCL
-125 cells take up iron from culture media and store it in
ferritin
found mainly in the membrane fraction and secrete iron-loaded
ferritin
. We observe that in these larval cells
ferritin
co-localizes with ceramide-containing membranes in the absence of iron. With iron treatment,
ferritin
is found associated with ceramide-containing membranes as well as in cytoplasmic non-ceramide vesicles. Treatment of
CCL
-125 cells with iron and CI-976, an inhibitor of lysophospholipid acyl transferases, disrupts
ferritin
secretion with a concomitant decrease in cell viability. Interfering with
ferritin
secretion may limit the ability of mosquitoes to adjust to the high iron load of the blood meal and decrease iron delivery to the ovaries reducing egg numbers.
...
PMID:Iron loaded ferritin secretion and inhibition by CI-976 in Aedes aegypti larval cells. 1916 45
Ferritin is a 24-subunit molecule, made up of heavy chain (HC) and light chain (LC) subunits, which stores and controls the release of dietary iron in mammals, plants, and insects. In mosquitoes, dietary iron taken in a bloodmeal is stored inside
ferritin
. Our previous work has demonstrated the transport of dietary iron to the ovaries via
ferritin
during oogenesis. We evaluated the localization of
ferritin
subunits inside
CCL
-125 [Aedes aegypti Linnaeus (Diptera: Culicidae), yellow fever mosquito] and 4a3b [Anopheles gambiae Giles (Diptera: Culicidae), African malaria mosquito] cells under various iron treatment conditions to further elucidate the regulation of iron metabolism in these important disease vectors and to observe the dynamics of the intracellular
ferritin
subunits following iron administration. Deconvolution microscopy captured 3D fluorescent images of iron-treated mosquito cells to visualize the
ferritin
HC and LC homologue subunits (HCH and LCH, respectively) in multiple focal planes. Fluorescent probes were used to illuminate cell organelles (i.e., Golgi apparatus, lysosomes, and nuclei) while secondary probes for specific
ferritin
subunits demonstrated abundance and co-localization within organelles. These images will help to develop a model for the biochemical regulation of
ferritin
under conditions of iron exposure, and to advance novel hypotheses for the crucial role of iron in mosquito vectors.
...
PMID:Characterization of Anopheles gambiae (African Malaria Mosquito) Ferritin and the Effect of Iron on Intracellular Localization in Mosquito Cells. 2607 2