Portal:CPTAC

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Revision as of 17:33, 3 October 2017

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CPTAC Pathways

Welcome to the CPTAC Pathway Portal

This portal highlights pathway content relevant to the Clinical Proteomic Tumor Analysis Consortium (CPTAC).

The National Cancer Institute, part of the National Institutes of Health, announced the launch of a Clinical Proteomic Tumor Analysis Consortium in August 2011. CPTAC is a comprehensive and coordinated effort to accelerate the understanding of the molecular basis of cancer through the application of robust, quantitative, proteomic technologies and workflows. The overarching goal of CPTAC is to improve our ability to diagnose, treat and prevent cancer. To achieve this goal in a scientifically rigorous manner, the NCI launched CPTAC to systematically identify proteins that derive from alterations in cancer genomes and related biological processes, and provide this data with accompanying assays and protocols to the public.

The pathways included in this portal have been organized into classic cancer hallmark categories, based on the different biological capabilities acquired during the multistep development of human tumors. To read more, see Hallmarks of cancer: the next generation, Hanahan and Weinberg, Cell 2011.

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Pathway Curation

On this page you see rotating displays of hallmark and featured pathways. Where did these pathways come from? They came from people like you! The CPTAC set of pathways can be edited, fixed and added to using the pathway drawing and annotation tools here at WikiPathways.

Getting Started

Resources

Curation projects


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Cancer Hallmark Categories

Sustaining proliferative signaling

Hepatocyte growth factor receptor signaling (Homo sapiens)

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Hepatocyte growth factor receptor signaling
Evading growth suppressors

G1 to S cell cycle control (Homo sapiens)

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G1 to S cell cycle control
Activating invasion and metastasis

Neural crest cell migration in cancer (Homo sapiens)

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Neural crest cell migration in cancer
Enabling replicative immortality

Regulation of Wnt / B-catenin signaling by small molecule compounds (Homo sapiens)

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Regulation of Wnt / B-catenin signaling by small molecule compounds
Inducing angiogenesis

VEGFA-VEGFR2 signaling (Homo sapiens)

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VEGFA-VEGFR2 signaling
Resisting cell death

Apoptosis (Homo sapiens)

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Apoptosis
Deregulating cellular energetics

TCA cycle nutrient use and invasiveness of ovarian cancer (Homo sapiens)

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TCA cycle nutrient use and invasiveness of ovarian cancer
Genome instability and mutation

ATM signaling in development and disease (Homo sapiens)

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ATM signaling in development and disease
Tumor promoting inflammation

IL6 signaling (Homo sapiens)

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IL6 signaling
Avoiding immune destruction

Altered glycosylation of MUC1 in tumor microenvironment (Homo sapiens)

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Altered glycosylation of MUC1 in tumor microenvironment
Therapeutics

lncRNA-mediated mechanisms of therapeutic resistance (Homo sapiens)

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lncRNA-mediated mechanisms of therapeutic resistance

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Featured Pathways


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Useful Links

Personal tools