🏆 Foundational Paper

Patterning of the cell cortex by Rho GTPases.

Bement William M, Goryachev Andrew B, Miller Ann L, von Dassow George

📰 Nature reviews. Molecular cell biology 📅 2024 📊 131 citations

Abstract

The Rho GTPases - RHOA, RAC1 and CDC42 - are small GTP binding proteins that regulate basic biological processes such as cell locomotion, cell division and morphogenesis by promoting cytoskeleton-based changes in the cell cortex. This regulation results from active (GTP-bound) Rho GTPases stimulating target proteins that, in turn, promote actin assembly and myosin 2-based contraction to organize the cortex. This basic regulatory scheme, well supported by in vitro studies, led to the natural assumption that Rho GTPases function in vivo in an essentially linear matter, with a given process being initiated by GTPase activation and terminated by GTPase inactivation. However, a growing body of evidence based on live cell imaging, modelling and experimental manipulation indicates that Rho GTPase activation and inactivation are often tightly coupled in space and time via signalling circuits and networks based on positive and negative feedback. In this Review, we present and discuss this evidence, and we address one of the fundamental consequences of coupled activation and inactivation: the ability of the Rho GTPases to self-organize, that is, direct their own transition from states of low order to states of high order. We discuss how Rho GTPase self-organization results in the formation of diverse spatiotemporal cortical patterns such as static clusters, oscillatory pulses, travelling wave trains and ring-like waves. Finally, we discuss the advantages of Rho GTPase self-organization and pattern formation for cell function.

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📊 Figures

Fig. 1 u2223

Basic principles of Rho GTPase regulation.

a, The Rho GTPase cycle. Activation of Rho GTPase (that is, exchange of GDP for GTP) results from interaction with a GEF (guanine nucleotide exchange factor). The active GTPase can then bind to an eff...

Fig. 2 u2223

Self-organizing Rho GTPase patterns.

a, Pulsed contractions in a Caenorhabditis elegans embryo. Top: single frame from TIRF movie showing RHOA-GTP (green) and myosin 2 (red); anterior end of the embryo on the left, posterior on the right...

Fig. 3 u2223

Feedback to Rho GTPase GEFs and GAPs.

a, Overview of known mechanisms of positive and negative feedback of Rho GTPases acting through their GEFs and GAPs. Feedback is considered positive if the end result is an increase in the activity of...

Fig. 4 u2223

Proposed feedbacks for examples of self-organization.

For each example, the upstream signal is indicated at the top and the pattern produced is indicated at the bottom. a, Formation of the polarizing CDC42 cluster in budding yeast relies on at least one ...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

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💬 Discussion

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