The high mobility group protein HMG20A cooperates with the histone reader PHF14 to modulate TGFβ and Hippo pathways

Author:

Gómez-Marín Elena1,Posavec-Marjanović Melanija2,Zarzuela Laura3,Basurto-Cayuela Laura1,Guerrero-Martínez José A1,Arribas Gonzalo1,Yerbes Rosario3,Ceballos-Chávez María1,Rodríguez-Paredes Manuel4,Tomé Mercedes3,Durán Raúl V3,Buschbeck Marcus25ORCID,Reyes José C1ORCID

Affiliation:

1. Genome Biology Department. Centro Andaluz de Biología Molecular y Medicina Regenerativa-CABIMER, Consejo Superior de Investigaciones Científicas-Universidad de Sevilla-Universidad Pablo de Olavide (CSIC-USE-UPO) , Av. Americo Vespucio, 41092 Seville , Spain

2. Program for Predictive and Personalized Medicine of Cancer, Germans Trias i Pujol Research Institute (PMPPC-IGTP) , Badalona , Spain

3. Cell Dynamics and Signaling Department. Centro Andaluz de Biología Molecular y Medicina Regenerativa-CABIMER, Consejo Superior de Investigaciones Científicas-Universidad de Sevilla-Universidad Pablo de Olavide (CSIC-USE-UPO) , Av. Americo Vespucio, 41092 Seville , Spain

4. Institute of Toxicology, University Medical Center Mainz, Johannes Gutenberg University , 55131 Mainz , Germany

5. Cancer and Leukaemia Epigenetics and Biology Program, Josep Carreras Leukaemia Research Institute (IJC) , 08916   Badalona , Spain

Abstract

Abstract High mobility group (HMG) proteins are chromatin regulators with essential functions in development, cell differentiation and cell proliferation. The protein HMG20A is predicted by the AlphaFold2 software to contain three distinct structural elements, which we have functionally characterized: i) an amino-terminal, intrinsically disordered domain with transactivation activity; ii) an HMG box with higher binding affinity for double-stranded, four-way-junction DNA than for linear DNA; and iii) a long coiled-coil domain. Our proteomic study followed by a deletion analysis and structural modeling demonstrates that HMG20A forms a complex with the histone reader PHF14, via the establishment of a two-stranded alpha-helical coiled-coil structure. siRNA-mediated knockdown of either PHF14 or HMG20A in MDA-MB-231 cells causes similar defects in cell migration, invasion and homotypic cell–cell adhesion ability, but neither affects proliferation. Transcriptomic analyses demonstrate that PHF14 and HMG20A share a large subset of targets. We show that the PHF14-HMG20A complex modulates the Hippo pathway through a direct interaction with the TEAD1 transcription factor. PHF14 or HMG20A deficiency increases epithelial markers, including E-cadherin and the epithelial master regulator TP63 and impaired normal TGFβ-trigged epithelial-to-mesenchymal transition. Taken together, these data indicate that PHF14 and HMG20A cooperate in regulating several pathways involved in epithelial–mesenchymal plasticity.

Funder

Ministry of Economy and Competitiveness

Junta de Andalucía

Fundación Vencer El Cancer

European Union FEDER

FEDER/Ministerio de Ciencia e Innovación

Agencia Estatal de Investigación

Marie Skłodowska Curie

Deutsche José Carreras Leukämie-Stiftung

Fundació la Marató de TV3

Spanish Ministry of Science and Innovation

Spanish Ministry of Education

Publisher

Oxford University Press (OUP)

Subject

Genetics

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