Accessory proteins of the RAS-MAPK pathway: moving from the side line to the front line
Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins m...
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Published in | Communications biology Vol. 4; no. 1; p. 696 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
England
Nature Publishing Group
08.06.2021
Nature Publishing Group UK Nature Portfolio |
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Abstract | Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins may resolve some parts of the puzzles in this field, as they safeguard the strength, efficiency and specificity of signal transduction. Targeting such modulators, rather than the constituent components of the RTK-RAS-MAPK signalling cascade may attenuate rather than inhibit disease-relevant signalling pathways. |
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AbstractList | Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins may resolve some parts of the puzzles in this field, as they safeguard the strength, efficiency and specificity of signal transduction. Targeting such modulators, rather than the constituent components of the RTK-RAS-MAPK signalling cascade may attenuate rather than inhibit disease-relevant signalling pathways.
Pudewell et al. discuss and advance our understanding of accessory proteins, which are crucial for the RTK-RAS-MAPK signalling cascade. They consider the therapeutic potential of targeting such modulators as an alternative to targeting constituent components of the RTK-RAS-MAPK signalling cascade in the treatment of diseases such as cancer. Pudewell et al. discuss and advance our understanding of accessory proteins, which are crucial for the RTK-RAS-MAPK signalling cascade. They consider the therapeutic potential of targeting such modulators as an alternative to targeting constituent components of the RTK-RAS-MAPK signalling cascade in the treatment of diseases such as cancer. Abstract Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins may resolve some parts of the puzzles in this field, as they safeguard the strength, efficiency and specificity of signal transduction. Targeting such modulators, rather than the constituent components of the RTK-RAS-MAPK signalling cascade may attenuate rather than inhibit disease-relevant signalling pathways. Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins may resolve some parts of the puzzles in this field, as they safeguard the strength, efficiency and specificity of signal transduction. Targeting such modulators, rather than the constituent components of the RTK-RAS-MAPK signalling cascade may attenuate rather than inhibit disease-relevant signalling pathways. Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its spatiotemporal features is afflicted with major conceptual shortcomings. Here we consider how the compilation of a vast array of accessory proteins may resolve some parts of the puzzles in this field, as they safeguard the strength, efficiency and specificity of signal transduction. Targeting such modulators, rather than the constituent components of the RTK-RAS-MAPK signalling cascade may attenuate rather than inhibit disease-relevant signalling pathways.Pudewell et al. discuss and advance our understanding of accessory proteins, which are crucial for the RTK-RAS-MAPK signalling cascade. They consider the therapeutic potential of targeting such modulators as an alternative to targeting constituent components of the RTK-RAS-MAPK signalling cascade in the treatment of diseases such as cancer. |
ArticleNumber | 696 |
Author | Pudewell, Silke Wittich, Christoph Kazemein Jasemi, Neda S Bazgir, Farhad Ahmadian, Mohammad R |
Author_xml | – sequence: 1 givenname: Silke surname: Pudewell fullname: Pudewell, Silke organization: Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich-Heine University, Düsseldorf, Germany – sequence: 2 givenname: Christoph surname: Wittich fullname: Wittich, Christoph organization: Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich-Heine University, Düsseldorf, Germany – sequence: 3 givenname: Neda S surname: Kazemein Jasemi fullname: Kazemein Jasemi, Neda S organization: Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich-Heine University, Düsseldorf, Germany – sequence: 4 givenname: Farhad surname: Bazgir fullname: Bazgir, Farhad organization: Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich-Heine University, Düsseldorf, Germany – sequence: 5 givenname: Mohammad R orcidid: 0000-0002-2034-8894 surname: Ahmadian fullname: Ahmadian, Mohammad R email: reza.ahmadian@hhu.de organization: Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich-Heine University, Düsseldorf, Germany. reza.ahmadian@hhu.de |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/34103645$$D View this record in MEDLINE/PubMed |
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Snippet | Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its... Abstract Health and disease are directly related to the RTK-RAS-MAPK signalling cascade. After more than three decades of intensive research, understanding its... Pudewell et al. discuss and advance our understanding of accessory proteins, which are crucial for the RTK-RAS-MAPK signalling cascade. They consider the... |
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SubjectTerms | Animals Biology Humans MAP kinase MAP Kinase Signaling System Mitogen-Activated Protein Kinases - metabolism Neoplasms - metabolism Proteins ras Proteins - metabolism Signal Transduction |
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Title | Accessory proteins of the RAS-MAPK pathway: moving from the side line to the front line |
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