Ironing out the Details: Exploring the Role of Iron and Heme in Blood-Sucking Arthropods

Уточняя детали: исследование роли железа и гема у кровососущих членистоногих
Shavonn R. Whiten, Heather Eggleston, Zach N. Adelman
2018-01-17

blood-sucking arthropodsheme and ironheme detoxificationheme transportershemozoin
Heme and iron are essential molecules for many physiological processes and yet have the ability to cause oxidative damage such as lipid peroxidation, protein degradation, and ultimately cell death if not controlled. Blood-sucking arthropods have evolved diverse methods to protect themselves against iron/heme-related damage, as the act of bloodfeeding itself is high risk, high reward process. Protective mechanisms in medically important arthropods include the midgut peritrophic matrix in mosquitoes, heme aggregation into the crystalline structure hemozoin in kissing bugs and hemosomes in ticks. Once heme and iron pass these protective mechanisms they are presumed to enter the midgut epithelial cells via membrane-bound transporters, though relatively few iron or heme transporters have been identified in bloodsucking arthropods. Upon iron entry into midgut epithelial cells, ferritin serves as the universal storage protein and transport for dietary iron in many organisms including arthropods. In addition to its role as a nutrient, heme is also an important signaling molecule in the midgut epithelial cells for many physiological processes including vitellogenesis. This review article will summarize recent advancements in heme/iron uptake, detoxification and exportation in bloodfeeding arthropods. While initial strides have been made at ironing out the role of dietary iron and heme in arthropods, much still remains to be discovered as these molecules may serve as novel targets for the control of many arthropod pests.
1
Blood-sucking arthropods use diverse protective mechanisms, including mosquito midgut peritrophic matrices, kissing bug hemozoin crystals, and tick hemosomes.
2
Ferritin serves as a broadly conserved protein for dietary iron storage and transport after iron enters arthropod midgut epithelial cells.
3
Heme also functions as a midgut signaling molecule, including regulation of physiological processes such as vitellogenesis, and may provide novel pest-control targets.
4
Heme and iron are essential for arthropod physiology but can cause lipid peroxidation, protein degradation, and cell death when inadequately controlled.
5
Relatively few membrane-bound heme or iron transporters have been identified in blood-feeding arthropods, despite presumed uptake into midgut epithelial cells.

blood-sucking arthropods and their midgut epithelial cells

the uptake, detoxification, storage, transport, export, and physiological signaling roles of dietary iron and heme, including mechanisms protecting against iron/heme-induced oxidative damage

Publication Details
Publication Date
2018-01-17
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Shavonn R. Whiten
Heather Eggleston
Zach N. Adelman
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%