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Molecular detection and characterisation of fungal heat shock protein 60
Authors:Egon Marth  Bettina Heiling  Astrid H. Paulitsch  Walter Buzina
Affiliation:Institute of Hygiene, Microbiology and Environmental Medicine, Medical University of Graz, Austria
Abstract:
Heat shock proteins (Hsp) are highly conserved molecules, which are both constitutively expressed and up‐regulated in response to various stress conditions. In particular, fungal Hsp60 can act as immunodominant antigens and facilitate powerful immunological properties. A possible cellular heat shock response was investigated in eight fungi (Aspergillus fumigatus, Aspergillus terreus, Penicillium chrysogenum, Cladosporium cladosporioides, Scedosporium apiospermum, Trichophyton mentagrophytes, Candida albicans and Saccharomyces cerevisiae). Fully automated RNA extraction was followed by quantitative real‐time RT‐PCR targeting fungus‐specific Hsp60 mRNA and sequencing of the amplicon. Levels of temperature‐dependent gene expression were evaluated and rates of similarity and identity were compared. While Hsp60 mRNA was constitutively expressed in all the samples tested, a temperature‐dependent induction was not shown in C. cladosporioides. In the 80‐amino acid fragment from the hypothetical protein, 66% of the amino acids were identical, 20% showed a conserved and 8% a semi‐conserved substitution. Our findings should contribute to a better understanding of host–pathogen relationship and suggest that fungal Hsp60 under temperature‐related stress conditions might act as an immunogenic trigger in orchestrating fungi‐related diseases.
Keywords:Heat shock protein  fungal Hsp60  heat shock response  real‐time RT‐PCR  similarity and identity
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