Affiliation:
1. Instituto de Microbiología-Bioquímica, Centro mixto CSIC/USAL, Departamento de Microbiología y Genética (Universidad de Salamanca), Lab. 218, Plaza Doctores de la Reina s/n, 37007 Salamanca, Spain
Abstract
ABSTRACT
Aspergillus fumigatus
has three zinc transporter-encoding genes whose expression is regulated by both pH and the environmental concentration of zinc. We have previously reported that the
zrfA
and
zrfB
genes of
A. fumigatus
are transcribed at higher levels and are required for fungal growth under acidic zinc-limiting conditions whereas they are dispensable for growth in neutral or alkaline zinc-limiting media. Here we report that the transporter of the zinc uptake system that functions in
A. fumigatus
growing in neutral or alkaline environments is encoded by
zrfC
. The transcription of
zrfC
occurs divergently with respect to the adjacent
aspf2
gene, which encodes an immunodominant antigen secreted by
A. fumigatus
. The two genes—
zrfC
and
aspf2
—are required to different extents for fungal growth in alkaline and extreme zinc-limiting media. Indeed, these environmental conditions induce the simultaneous transcription of both genes mediated by the transcriptional regulators ZafA and PacC. ZafA upregulates the expression of
zrfC
and
aspf2
under zinc-limiting conditions regardless of the ambient pH, whereas PacC represses the expression of these genes under acidic growth conditions. Interestingly, the mode of action of PacC for
zrfC-aspf2
transcription contrasts with the more widely accepted model for PacC function, according to which under alkaline growth conditions PacC would activate the transcription of alkaline-expressed genes but would repress the transcription of acid-expressed genes. In sum, this report provides a good framework for investigating several important aspects of the biology of species of
Aspergillus
, including the repression of alkaline genes by PacC at acidic pH and the interrelationship that must exist between tissue pH, metal availability in the host tissue, and fungal virulence.
Publisher
American Society for Microbiology
Subject
Molecular Biology,General Medicine,Microbiology
Cited by
99 articles.
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