2020Molecular Cancer ResearchRequires access

Abstract IA04: Regulation of the Hippo pathway in cancer

Kun‐Liang Guan

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Abstract

Abstract The Hippo pathway is crucial in organ size control and its dysregulation contributes to tumorigenesis. Core components of the Hippo pathway include the protein kinases of MST1/2, MAP4Ks, LATS1/2, the transcription co-activators YAP/TAZ, and their DNA binding partners TEADs. LATS phosphorylates YAP/TAZ to promote cytoplasmic localization and degradation, thereby inhibiting YAP/TAZ and cell growth. The Hippo pathway is regulated by a wide range of signals, including cell density, GPCR, cellular energy levels, and mechanical cues. We will present our recent progresses on Hippo pathway regulation and its role in cancer. The emerging role of the Hippo pathway in tumorigenesis suggests the potential therapeutic value of targeting this pathway for cancer treatment. Citation Format: Kun-Liang Guan. Regulation of the Hippo pathway in cancer [abstract]. In: Proceedings of the AACR Special Conference on the Hippo Pathway: Signaling, Cancer, and Beyond; 2019 May 8-11; San Diego, CA. Philadelphia (PA): AACR; Mol Cancer Res 2020;18(8_Suppl):Abstract nr IA04.

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Abstract The Hippo pathway is crucial in organ size control and its dysregulation contributes to tumorigenesis. Core components of the Hippo pathway include the protein kinases of MST1/2, MAP4Ks, LATS1/2, the transcription co-activators YAP/TAZ, and their DNA binding partners TEADs. LATS phosphorylates YAP/TAZ to promote cytoplasmic localization and degradation, thereby inhibiting YAP/TAZ and cell growth. The Hippo pathway is regulated by a wide range of signals, including cell density, GPCR, cellular energy levels, and mechanical cues. We will present our recent progresses on Hippo pathway regulation and its role in cancer. The emerging role of the Hippo pathway in tumorigenesis suggests the potential therapeutic value of targeting this pathway for cancer treatment. Citation Format: Kun-Liang Guan. Regulation of the Hippo pathway in cancer [abstract]. In: Proceedings of the AACR Special Conference on the Hippo Pathway: Signaling, Cancer, and Beyond; 2019 May 8-11; San Diego, CA. Philadelphia (PA): AACR; Mol Cancer Res 2020;18(8_Suppl):Abstract nr IA04.

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Available abstract

Abstract The Hippo pathway is crucial in organ size control and its dysregulation contributes to tumorigenesis. Core components of the Hippo pathway include the protein kinases of MST1/2, MAP4Ks, LATS1/2, the transcription co-activators YAP/TAZ, and their DNA binding partners TEADs. LATS phosphorylates YAP/TAZ to promote cytoplasmic localization and degradation, thereby inhibiting YAP/TAZ and cell growth. The Hippo pathway is regulated by a wide range of signals, including cell density, GPCR, cellular energy levels, and mechanical cues. We will present our recent progresses on Hippo pathway regulation and its role in cancer. The emerging role of the Hippo pathway in tumorigenesis suggests the potential therapeutic value of targeting this pathway for cancer treatment. Citation Format: Kun-Liang Guan. Regulation of the Hippo pathway in cancer [abstract]. In: Proceedings of the AACR Special Conference on the Hippo Pathway: Signaling, Cancer, and Beyond; 2019 May 8-11; San Diego, CA. Philadelphia (PA): AACR; Mol Cancer Res 2020;18(8_Suppl):Abstract nr IA04.

Key concepts: Hippo signaling pathway, Carcinogenesis, Cancer, Biology, Kinase, Cell biology, Cancer research, Signal transduction

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