Dual role of GRHL3 in bladder carcinogenesis depending on histological subtypes

Author:

Lammert Franziska C.12,Pannhausen Julia12,Noetzel Erik3,Friedland Florian3,Wirtz Julia12,Herfs Yannick3,Leypold Sophie12,Gan Lin4,Weiskirchen Ralf5,Schnitzler Tician1,Knüchel Ruth1,Maurer Jochen6,Jonigk Danny D.127ORCID,Rose Michael128ORCID,Gaisa Nadine T.128ORCID

Affiliation:

1. Institute of Pathology, University Hospital RWTH Aachen University Germany

2. Center for Integrated Oncology Aachen Bonn Cologne Duesseldorf (CIO ABCD) Germany

3. Institute of Biological Information Processing 2 (IBI‐2), Mechanobiology, Forschungszentrum Jülich GmbH Germany

4. IZKF Aachen Medical Faculty of the RWTH Aachen University Germany

5. Institute of Molecular Pathobiochemistry, Experimental Gene Therapy and Clinical Chemistry (IFMPEGKC), University Hospital RWTH Aachen University Germany

6. Department of Obstetrics and Gynecology University Hospital Aachen Germany

7. German Center for Lung Research, DZL, BREATH Hanover Germany

8. Institute of Pathology, University Hospital University of Ulm Germany

Abstract

The effect of grainyhead‐like transcription factor 3 (GRHL3) on cancer development depends on the cancer subtypes as shown in tumor entities such as colorectal or oral squamous cell carcinomas. Here, we analyzed the subtype‐specific role of GRHL3 in bladder carcinogenesis, comparing common urothelial carcinoma (UC) with squamous bladder cancer (sq‐BLCA). We examined GRHL3 mRNA and protein expression in cohorts of patient samples, its prognostic role and its functional impact on tumorigeneses in different molecular and histopathological subtypes of bladder cancer. We showed for GRHL3 a reverse expression in squamous and urothelial bladder cancer subtypes. Stably GRHL3overexpressing EJ28, J82, and SCaBER in vitro models revealed a tumor‐suppressive function in squamous and an oncogenic role in the urothelial cancer cells affecting cell and colony growth, and migratory and invasive capacities. Transcriptomic profiling demonstrated highly subtype‐specific GRHL3‐regulated expression networks coined by the enrichment of genes involved in integrin‐mediated pathways. In SCaBER, loss of ras homolog family member A (RHOA) GTPase activity was demonstrated to be associated with co‐regulation of eukaryotic translation initiation factor 4E family member 3 (EIF4E3), a potential tumor suppressor gene. Thus, our data provide for the first time a detailed insight into the role of the transcription factor GRHL3 in different histopathological subtypes of bladder cancer.

Publisher

Wiley

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