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Functional Characterization of Endogenously Expressed Human RYR1 Variants
Published on: June 9, 2021
Cloning and functional characterization of the Rhizopus oryzae high affinity iron permease (rFTR1) gene
Yue Fu1, Helen Lee, Mary Collins
1Harbor-UCLA Research and Education Institute, Torrance, CA 90502, USA.
Abstract:
Rhizopus oryzae is the most common etiologic agent of mucormycosis. Clinical and animal model data clearly demonstrate that the presence of elevated available serum iron predisposes the host to develop mucormycosis. Therefore, the high affinity iron permease (rFTR1) which encodes a protein required to scavenge iron from the environment, is highly likely to be a critical determinant of virulence for R. oryzae. We have cloned rFTR1 by using a PCR approach relying on degenerate primers designed from the conserved regions of Saccharomyces cerevisiae high affinity iron permease. Sequence analysis of a 2.0 kb EcoRI genomic clone revealed a single open reading frame of 1107 bp that lacked introns. The putative rFtr1p had significant homology to known fungal high affinity iron permeases from Candida albicans (46% identity) and S. cerevisiae (44% identity). In R. oryzae, rFTR1 was expressed in iron-depleted and not in iron-rich media. Finally, rFTR1 restored the ability of an ftr1 null mutant of S. cerevisiae to grow on iron-limited medium and to take up radiolabeled iron, whereas S. cerevisiae transformed with the empty vector did not. These data demonstrate that we have cloned the gene encoding a R. oryzae high affinity iron permease and the putative rFtr1p is involved in assimilation of iron from iron-depleted environments.
Insights
Rhizopus oryzae uses the high affinity iron permease (rFTR1) to scavenge iron, which is crucial for virulence in mucormycosis. This study cloned and characterized the rFTR1 gene, confirming its role in iron assimilation.
Area of Science:
- Mycology
- Molecular Biology
- Infectious Diseases
Background:
- Rhizopus oryzae is a primary cause of mucormycosis.
- High serum iron levels increase susceptibility to mucormycosis.
- Iron scavenging is critical for fungal pathogens.
Purpose of the Study:
- To clone and characterize the high affinity iron permease gene (rFTR1) from Rhizopus oryzae.
- To investigate the role of rFTR1 in iron assimilation and virulence.
Main Methods:
- Polymerase chain reaction (PCR) with degenerate primers.
- Gene sequencing and analysis.
- Functional complementation in Saccharomyces cerevisiae.
Main Results:
- The rFTR1 gene was successfully cloned and sequenced.
- The putative rFtr1p showed homology to known fungal iron permeases.
- rFTR1 expression is regulated by iron availability.
- rFTR1 restored iron uptake and growth in an ftr1 null mutant.
Conclusions:
- The cloned gene encodes a functional high affinity iron permease from R. oryzae.
- rFtr1p is essential for iron assimilation in iron-depleted environments.
- rFTR1 is a potential virulence factor for R. oryzae in mucormycosis.