Related Experiment Video
Updated: Mar 4, 2026

Purification and Quality Control of Recombinant Septin Complexes for Cell-Free Reconstitution
Published on: June 23, 2022
Septins Focus Cellular Growth for Host Infection by Pathogenic Fungi
Michelle Momany1, Nicholas J Talbot2
1Department of Plant Biology, University of GeorgiaAthens, OH, USA.
Abstract:
One of the key challenges faced by microbial pathogens is invasion of host tissue. Fungal pathogens adopt a number of distinct strategies to overcome host cell defenses, including the development of specialized infection structures, the secretion of proteins that manipulate host responses or cellular organization, and the ability to facilitate their own uptake by phagocytic mechanisms. Key to many of these adaptations is the considerable morphogenetic plasticity displayed by pathogenic species. Fungal pathogens can, for example, shift their growth habit between non-polarized spores, or yeast-like cells, and highly polarized hyphal filaments. These polarized filaments can then elaborate differentiated cells, specialized to breach host barriers. Septins play fundamental roles in the ability of diverse fungi to undergo shape changes and organize the F-actin cytoskeleton to facilitate invasive growth. As a consequence, septins are increasingly implicated in fungal pathogenesis, with many septin mutants displaying impairment in their ability to cause diseases of both plants and animals. In this mini-review, we show that a common feature of septin mutants is the emergence of extra polar outgrowths during morphological transitions, such as emergence of germ tubes from conidia or branches from hyphae. We propose that because septins detect and stabilize membrane curvature, they prevent extra polar outgrowths and thereby focus fungal invasive force, allowing substrate invasion.
Insights
Septins are crucial for fungal pathogens to invade host tissues by controlling cell shape and growth. These proteins prevent abnormal outgrowths, focusing the force needed for effective invasion.
Area of Science:
- Microbiology
- Mycology
- Cell Biology
Background:
- Fungal pathogens invade host tissues using specialized structures and secreted proteins.
- Morphogenetic plasticity, including shape-shifting between yeast and hyphal forms, is key to fungal pathogenesis.
- Septins are essential for fungal morphogenesis and actin cytoskeleton organization, impacting invasive growth.
Purpose of the Study:
- To review the role of septins in fungal pathogenesis.
- To highlight how septins regulate fungal morphology during host invasion.
- To propose a mechanism for septin-mediated control of invasive growth.
Main Methods:
- Review of existing literature on fungal pathogenesis and septin function.
- Analysis of septin mutant phenotypes in pathogenic fungi.
- Focus on morphological transitions and invasive growth.
Main Results:
- Septin mutants exhibit extra polar outgrowths during morphological transitions (e.g., germ tube emergence).
- Septins are implicated in preventing aberrant growth patterns in pathogenic fungi.
- Impaired septin function leads to reduced pathogenicity in plant and animal models.
Conclusions:
- Septins detect and stabilize membrane curvature, preventing extra polar outgrowths.
- By focusing invasive force, septins enable fungal pathogens to effectively invade substrates.
- Septins are critical regulators of fungal invasive growth and pathogenesis.
More Related Videos
09:09Bottom-Up In Vitro Methods to Assay the Ultrastructural Organization, Membrane Reshaping, and Curvature Sensitivity Behavior of Septins
Published on: August 17, 2022
06:32Reconstitution of Septin Assembly at Membranes to Study Biophysical Properties and Functions
Published on: July 28, 2022
Related Concept Videos
Role of Septins
Cellular Functions of Septins
Recent studies have revealed the multifaceted roles of septins in various cellular processes such as cytokinesis, ciliogenesis, and neurogenesis. Septins act as scaffolds and...
Septins
Gene Regulation in Microbial Communities: Quorum Sensing
Intracellular Movement of Viruses and Bacteria
Yeast Signaling
Fungal Phylum Microsporidia