what_can_do_hipathia_for_you
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what_can_do_hipathia_for_you [2020/01/27 20:20] – [Variant interpreter] krian | what_can_do_hipathia_for_you [2021/01/05 15:49] (current) – [Differential signaling] krian | ||
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Mechanistic models offer a realistic framework to understand how signal transduction depends on changes in the expression of genes involved in signaling pathway circuits (see [[http:// | Mechanistic models offer a realistic framework to understand how signal transduction depends on changes in the expression of genes involved in signaling pathway circuits (see [[http:// | ||
- | | + | ===== Hipathia mechanism ===== |
+ | HiPathia retrieves pathway information from [[https:// | ||
+ | |||
+ | The purpose of a signalling pathway is to activate a cellular function carried out by an effector protein. This activation is given as a result of a cascade of protein interactions triggered by a stimulus captured by a receptor protein. | ||
+ | {{ :: | ||
+ | In Hipathia, the activation values for the different effector circuit within a signalling pathway are calculated separately. One example might be the red-highlighted circuit on the figure below. These method was chosen because of the fact that many pathways are multifunctional and often trigger opposite functions (e.g. depending the receptor and the effector proteins involved in the transduction of the signal, the apoptosis pathway may trigger survival or cell death). | ||
+ | {{ :: | ||
+ | Once an " | ||
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+ | In order to calculate the circuit signal, once the node activity values have been estimated, we assume an incoming signal value of 1 in the input nodes (stimuli-receptor proteins) of any circuit. Then, the signal is propagated to the following nodes as shown in the image above until it reaches its effector node. This is going to be the values that will be taken as the activation value for each " | ||
+ | {{ :: | ||
+ | Finally, Hipathia also calculates the activation state of some molecular functions by looking at the functions annotated for the effector proteins in which the " | ||
+ | |||
+ | This video present a simple simulation of how Hipathia model calculates the propagated signal throw a signaling circuit: | ||
+ | {{ :: | ||
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+ | ===== HiPathia modules ===== | ||
The HiPathia web server integrates four different pathway analysis modules: | The HiPathia web server integrates four different pathway analysis modules: | ||
* **Differential signaling** | * **Differential signaling** | ||
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{{ :: | {{ :: | ||
- | ===== Differential signaling | + | ==== Differential signaling ==== |
This module provides an estimation of the significant cell signaling activity changes across different conditions. To achieve so, signal value activities are estimated for each signaling circuit for the studied samples. Then, these signaling activity profiles can be **compared** according to the experimental design of the used dataset: | This module provides an estimation of the significant cell signaling activity changes across different conditions. To achieve so, signal value activities are estimated for each signaling circuit for the studied samples. Then, these signaling activity profiles can be **compared** according to the experimental design of the used dataset: | ||
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See the [[differential_signaling|Differential signaling]] tool. | See the [[differential_signaling|Differential signaling]] tool. | ||
- | ===== Prediction | + | ==== Prediction ==== |
HiPathia allows you to train, download and test a prediction model for your dataset. The machine learning module can be trained either to: | HiPathia allows you to train, download and test a prediction model for your dataset. The machine learning module can be trained either to: | ||
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In order to check how to use these tool please see [[Prediction|Prediction]]. | In order to check how to use these tool please see [[Prediction|Prediction]]. | ||
- | ===== Perturbation effect | + | ==== Perturbation effect ==== |
This module offers an interactive working environment to simulate the effect of different interventions (e.g. knock-out, over-expression, | This module offers an interactive working environment to simulate the effect of different interventions (e.g. knock-out, over-expression, | ||
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See more about the [[Perturbation effect|Perturbation effect]] tool. | See more about the [[Perturbation effect|Perturbation effect]] tool. | ||
- | ===== Variant interpreter | + | ==== Variant interpreter ==== |
This tool provides an estimation of the potential impact of genomic variation over cell signaling and consequently on cell functionality. | This tool provides an estimation of the potential impact of genomic variation over cell signaling and consequently on cell functionality. |
what_can_do_hipathia_for_you.1580156407.txt.gz · Last modified: 2020/01/27 20:20 by krian