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Published on: October 8, 2015
Small GTPase Rac promotes hyphal formation and microconidiogenesis in Trichophyton rubrum
1Research Institute of Pharmaceutical Sciences, Faculty of Pharmacy, Musashino University, Nishi-Tokyo, Japan.
Abstract:
Morphogenesis plays a pivotal role in the infection process of Trichophyton rubrum, a primary aetiological agent of dermatophytosis that inhabits superficial human tissues. T. rubrum proliferates by extending filamentous structures, or hyphae, which are composed of highly polarized cells. In response to environmental stimuli, T. rubrum also produces asexual spores called microconidia, consisting of individual cells. Although these dynamic morphological changes are critical for T. rubrum proliferation and environmental adaptation, the molecular mechanisms underlying these processes remain poorly understood. In previous research, we demonstrated that repressing Cdc24, a guanine nucleotide exchange factor (GEF) for the small GTPases Rac and Cdc42, disrupts fungal cell polarity and impairs hyphal formation in T. rubrum. In this study, we show that Rac deficiency in the Δrac strain minimally affects hyphal formation, as indicated by the cell polarity index (the ratio of a cell's long to short diameter in hyphae). However, simultaneous Rac deficiency and Cdc42 repression in the Δrac/Pctr4 cdc42 strain significantly disrupted cell polarity, suggesting that Rac and Cdc42 perform overlapping functions in hyphal morphogenesis. Interestingly, Rac deficiency inhibited microconidia formation, whereas cdc42 repression had no detectable impact. Furthermore, adding cysteine, a radical scavenger abundant in keratins, to the growth medium reduced microconidia production in the wild-type strain but not in the Δrac strain. These findings suggest that cysteine in host tissues inhibits Rac-mediated microconidia formation. Overall, this study identifies Rac as a key regulator of T. rubrum morphogenesis, with specific roles in both hyphal development and microconidia formation.
Insights
Rac is crucial for Trichophyton rubrum morphogenesis, controlling hyphal growth and microconidia formation. Cysteine in skin inhibits Rac-mediated microconidia production, impacting fungal infection.
Area of Science:
- Medical Mycology
- Cell Biology
- Molecular Biology
Background:
- Trichophyton rubrum causes dermatophytosis, thriving via hyphal growth and microconidia formation.
- Morphogenesis is vital for T. rubrum infection, but its molecular control is unclear.
- Cdc24 (guanine nucleotide exchange factor) is known to regulate polarity and hyphal growth.
Purpose of the Study:
- Investigate the roles of Rac and Cdc42 in T. rubrum morphogenesis.
- Elucidate the molecular mechanisms of hyphal and microconidia formation.
- Determine the impact of host factors like cysteine on fungal development.
Main Methods:
- Genetic manipulation of T. rubrum strains (Δrac, Δrac/Pcdc42).
- Assessment of cell polarity using the cell polarity index.
- Quantification of microconidia formation with and without cysteine supplementation.
Main Results:
- Rac deficiency minimally impacted hyphal formation, but combined with Cdc42 repression, it significantly disrupted cell polarity.
- Rac deficiency inhibited microconidia formation, while Cdc42 repression did not.
- Cysteine reduced microconidia in wild-type but not Δrac strains, suggesting Rac-mediated inhibition.
Conclusions:
- Rac and Cdc42 have overlapping roles in hyphal morphogenesis.
- Rac is a key regulator of T. rubrum hyphal development and microconidia formation.
- Host cysteine inhibits Rac-mediated microconidia production, influencing dermatophytosis pathogenesis.
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