Spontaneous metastasis xenograft models link CD44 isoform 4 to angiogenesis, hypoxia, EMT and mitochondria‐related pathways in colorectal cancer

Author:

Everest‐Dass Arun1,Nersisyan Stepan234ORCID,Maar Hanna5,Novosad Victor26,Schröder‐Schwarz Jennifer5,Freytag Vera5,Stuke Johanna L.5,Beine Mia C.5,Schiecke Alina5,Haider Marie‐Therese5,Kriegs Malte7,Elakad Omar8,Bohnenberger Hanibal8,Conradi Lena‐Christin9,Raygorodskaya Maria2,Krause Linda10,von Itzstein Mark1,Tonevitsky Alexander2611,Schumacher Udo512,Maltseva Diana2,Wicklein Daniel513,Lange Tobias51415ORCID

Affiliation:

1. Institute for Glycomics Griffith University, Gold Coast Campus Australia

2. Faculty of Biology and Biotechnology HSE University Moscow Russia

3. Institute of Molecular Biology The National Academy of Sciences of the Republic of Armenia Yerevan Armenia

4. Armenian Bioinformatics Institute (ABI) Yerevan Armenia

5. Institute of Anatomy and Experimental Morphology University Medical Center Hamburg‐Eppendorf Germany

6. Shemyakin‐Ovchinnikov Institute of Bioorganic Chemistry Russian Academy of Sciences Moscow Russia

7. Department of Radiobiology and Radiation Oncology University Medical Center Hamburg‐Eppendorf Germany

8. Institute of Pathology University Medical Center Göttingen Germany

9. Clinic for General, Visceral and Pediatric Surgery University Medical Center Göttingen Germany

10. Institute of Medical Biometry and Epidemiology University Medical Center Hamburg‐Eppendorf Germany

11. Art Photonics GmbH Berlin Germany

12. Medical School Berlin Germany

13. Department of Anatomy and Cell Biology University of Marburg Germany

14. Institute of Anatomy I Jena University Hospital Germany

15. Comprehensive Cancer Center Central Germany (CCCG) Jena and Leipzig Germany

Abstract

Hematogenous metastasis limits the survival of colorectal cancer (CRC) patients. Here, we illuminated the roles of CD44 isoforms in this process. Isoforms 3 and 4 were predominantly expressed in CRC patients. CD44 isoform 4 indicated poor outcome and correlated with epithelial–mesenchymal transition (EMT) and decreased oxidative phosphorylation (OxPhos) in patients; opposite associations were found for isoform 3. Pan‐CD44 knockdown (kd) independently impaired primary tumor formation and abrogated distant metastasis in CRC xenografts. The xenograft tumors mainly expressed the clinically relevant CD44 isoforms 3 and 4. Both isoforms were enhanced in the paranecrotic, hypoxic tumor regions but were generally absent in lung metastases. Upon CD44 kd, tumor angiogenesis was increased in the paranecrotic areas, accompanied by reduced hypoxia‐inducible factor‐1α and CEACAM5 but increased E‐cadherin expression. Mitochondrial genes and proteins were induced upon pan‐CD44 kd, as were OxPhos genes. Hypoxia increased VEGF release from tumor spheres, particularly upon CD44 kd. Genes affected upon CD44 kd in xenografts specifically overlapped concordantly with genes correlating with CD44 isoform 4 (but not isoform 3) in patients, validating the clinical relevance of the used model and highlighting the metastasis‐promoting role of CD44 isoform 4.

Funder

ARC Centre for Nanoscale BioPhotonics

Deutsche Forschungsgemeinschaft

National Health and Medical Research Council

National Research University Higher School of Economics

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. RNA-binding proteins regulating the CD44 alternative splicing;Frontiers in Molecular Biosciences;2023-12-01

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