Functional Analysis of Peptidyl-prolyl cis-trans Isomerase from Aspergillus flavus
Saleem Ahmad1, Sen Wang2, Weizhong Wu3
1Key Laboratory of Pathogenic Fungi and Mycotoxins of Fujian Province, Key Laboratory of Chemical Biology and Biopesticide of Education Ministry, and School of Life Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China. ahmad.chilas@gmail.com.
Abstract:
Aspergillus flavus, a ubiquitous filamentous fungus found in soil, plants and other substrates has been reported not only as a pathogen for plants, but also a carcinogen producing fungus for human. Peptidyl-Prolyl Isomerase (PPIases) plays an important role in cell process such as protein secretion cell cycle control and RNA processing. However, the function of PPIase has not yet been identified in A. flavus. In this study, the PPIases gene from A. flavus named ppci1 was cloned into expression vector and the protein was expressed in prokaryotic expression system. Activity of recombinant ppci1 protein was particularly inhibited by FK506, CsA and rapamycin. 3D-Homology model of ppci1 has been constructed with the template, based on 59.7% amino acid similarity. The homologous recombination method was used to construct the single ppci1 gene deletion strain Δppci1. We found that, the ppci1 gene plays important roles in A. flavus growth, conidiation, and sclerotia formation, all of which showed reduction in Δppci1 and increased in conidiation compared with the wild-type and complementary strains in A. flavus. Furthermore, aflatoxin and peanut seeds infection assays indicated that ppci1 contributes to virulence of A. flavus. Furthermore, we evaluated the effect of PPIase inhibitors on A. flavus growth, whereby these were used to treat wild-type strains. We found that the growths were inhibited under every inhibitor. All, these results may provide valuable information for designing inhibitors in the controlling infections of A. flavus.
Insights
The Peptidyl-Prolyl Isomerase 1 (ppci1) gene is crucial for Aspergillus flavus growth, development, and virulence. Inhibiting this gene and its protein product offers a potential strategy for controlling fungal infections.
Area of Science:
- Mycology
- Molecular Biology
- Biochemistry
Background:
- * Aspergillus flavus* is a significant plant pathogen and a human carcinogen.
- * Peptidyl-Prolyl Isomerase (PPIase)* enzymes are vital for cellular processes, but their role in *A. flavus* was unknown.
Purpose of the Study:
- To investigate the function of the *A. flavus* PPIase gene, designated *ppci1*.
- To explore the potential of PPIase inhibitors for controlling *A. flavus* infections.
Main Methods:
- Cloning and prokaryotic expression of the *ppci1* gene.
- Construction of a *ppci1* gene deletion strain (Δ*ppci1*) using homologous recombination.
- 3D homology modeling of the ppci1 protein.
- Assays for fungal growth, conidiation, sclerotia formation, aflatoxin production, and pathogenicity.
Main Results:
- Recombinant ppci1 protein activity was inhibited by FK506, CsA, and rapamycin.
- The *ppci1* gene deletion significantly reduced *A. flavus* growth, conidiation, and sclerotia formation.
- *ppci1* contributes to fungal virulence, including aflatoxin production and peanut seed infection.
- PPIase inhibitors effectively inhibited the growth of wild-type *A. flavus*.
Conclusions:
- The *ppci1* gene plays a critical role in the growth, development, and virulence of *Aspergillus flavus*.
- Targeting PPIase with inhibitors presents a promising therapeutic strategy for managing *A. flavus* infections.
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