Computer vision profiling of neurite outgrowth dynamics reveals spatiotemporal modularity of Rho GTPase signaling
Профилирование динамики роста нейритов с помощью компьютерного зрения выявляет пространственно-временную модульность сигнальных путей Rho-GTPаз
2016-01-04
SCID: 54.1/4jav76r9
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NeuriteTrackerRNA interferenceRho GTPase signalingcomputer visionneurite outgrowth dynamics
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Abstract (AI)
Rho guanosine triphosphatases (GTPases) control the cytoskeletal dynamics that power neurite outgrowth. This process consists of dynamic neurite initiation, elongation, retraction, and branching cycles that are likely to be regulated by specific spatiotemporal signaling networks, which cannot be resolved with static, steady-state assays. We present NeuriteTracker, a computer-vision approach to automatically segment and track neuronal morphodynamics in time-lapse datasets. Feature extraction then quantifies dynamic neurite outgrowth phenotypes. We identify a set of stereotypic neurite outgrowth morphodynamic behaviors in a cultured neuronal cell system. Systematic RNA interference perturbation of a Rho GTPase interactome consisting of 219 proteins reveals a limited set of morphodynamic phenotypes. As proof of concept, we show that loss of function of two distinct RhoA-specific GTPase-activating proteins (GAPs) leads to opposite neurite outgrowth phenotypes. Imaging of RhoA activation dynamics indicates that both GAPs regulate different spatiotemporal Rho GTPase pools, with distinct functions. Our results provide a starting point to dissect spatiotemporal Rho GTPase signaling networks that regulate neurite outgrowth.
Key Findings
1
Loss of two distinct RhoA-specific GAPs produces opposite neurite outgrowth phenotypes, despite both regulating RhoA signaling.
2
NeuriteTracker automatically segments and tracks neuronal morphodynamics in time-lapse datasets, enabling quantitative analysis of dynamic neurite outgrowth phenotypes.
3
RhoA activation imaging shows that the two GAPs control distinct spatiotemporal Rho GTPase pools with different functions.
4
Systematic RNA interference of 219 proteins in a Rho GTPase interactome reveals a limited set of neurite morphodynamic phenotypes.
5
The study identifies stereotypic neurite outgrowth morphodynamic behaviors in a cultured neuronal cell system.
Research Object
Neurite outgrowth dynamics in cultured neuronal cells regulated by Rho GTPase signaling
Research Subject
Spatiotemporal modularity of Rho GTPase signaling and its effects on neurite initiation, elongation, retraction, branching, and morphodynamic phenotypes
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2016-01-04
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