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Using Caenorhabditis elegans as a Model System to Study Protein Homeostasis in a Multicellular Organism
Published on: December 18, 2013
AvaKa, a protein of unknown function, contributes to iron homeostasis in the cyanobacterium Anabaena sp. strain PCC
Nozomi Kikuchi1, Kento Tominaga2, Eno Taniguchi1
1Department of Biological Sciences, Graduate School of Science, Tokyo Metropolitan University.
Abstract:
Water is indispensable to life, yet some cyanobacteria inhabit hyper-arid deserts and withstand complete desiccation. However, the molecular mechanisms enabling such acclimation remain incompletely understood. In Anabaena sp. strain PCC 7120, the gene avaKa, which encodes a protein of unknown function, has been shown to be required for desiccation tolerance. Here, we characterized the avaKa disruptant DRavaKa under dehydration-related stress conditions. DRavaKa displayed hypersensitivity to EDTA, and transcripts of iron-deficiency-inducible genes (isiA1, isiB, furA, and sufB) were elevated even in the absence of EDTA. Whole-cell absorption spectra of DRavaKa revealed a blue shift of the chlorophyll absorption peak, a characteristic feature of iron-deficient cyanobacteria. In addition, the oxidative-stress-inducible gene trxA2 was likewise upregulated. These results indicate that AvaKa contributes to iron homeostasis and that iron deficiency-induced oxidative stress likely underlies the dehydration sensitivity of DRavaKa.
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