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Biomedical subjects

Ilse Hofmann

Publications and source records attributed to Ilse Hofmann.

2 recordsLinked to original sources

EML4-ALK Variant-Specific Genetic Interactions Shape Lung Tumorigenesis.

UNLABELLED: Diverse fusions of echinoderm microtubule-associated protein-like 4 (EML4) and anaplastic lymphoma kinase (ALK) are oncogenic drivers in lung adenocarcinoma. EML4-ALK variants have distinct breakpoints within EML4, but their functional differences remain poorly understood. In this study, we use somatic genome editing to generate autochthonous mouse models of EML4-ALK-driven lung tumors and show that variant 3 (V3) is more oncogenic than variant 1 (V1). By using multiplexed genome editing and quantifying the effects of 29 putative tumor-suppressor genes on V1- and V3-driven lung cancer growth, we show that many tumor-suppressor genes have variant-specific effects on tumorigenesis. Pharmacogenomic analyses further suggest that tumor genotype can influence therapeutic responses. Analysis of human EML4-ALK-positive lung cancers also identified variant-specific differences in their genomic landscapes. These findings suggest that EML4-ALK variants behave more like distinct oncogenes than a uniform entity and highlight the dramatic impact of oncogenic fusion partner proteins and coincident tumor-suppressor gene alterations on the biology of oncogenic fusion-driven cancers. SIGNIFICANCE: EML4-ALK-driven lung cancer is treated as a uniform disease despite the presence of distinct fusion variants in patients. Our findings show that EML4-ALK variants are functionally distinct, which may have implications for the treatment of this cancer type and highlights the need to consider differences among variants of other oncogenic fusions.

Animals

Expression of Bovine Meat and Milk Factor in Hepatocellular Carcinoma and Colorectal Liver Metastasis Patients.

Bovine meat and milk factors (BMMFs) are plasmid-like DNA molecules isolated from cow's milk, meat, and human cancer tissues proposed to contribute to the development of specific types of cancer including colorectal cancer (CRC) and breast cancer based on chronic inflammation-associated indirect carcinogenesis. Chronic necro-inflammation of the liver poses a strong risk factor for the induction of hepatocellular carcinoma (HCC), which is associated with high intake of meat. Whether BMMFs contribute to HCC carcinogenesis or the development of colorectal liver metastasis (CRLM) remains unknown. Therefore, in this study, the presence of BMMFs was assessed in the liver of patients with viral and nonviral hepatitis-related HCC (n = 25), CRLM (14) and in healthy liver tissue from autopsy specimens (18) using monoclonal antibodies against the conserved BMMF Rep protein for immunohistochemistry, immunofluorescence detection, and immunoblotting. Rep was expressed in all tumor-distant and peritumor tissue specimens of HCC and CRLM patients and associated with CD68+ macrophages around portal triads. The number of Rep+CD68+cells was increased in HCC and CRLM patients compared to healthy liver tissue, which may indicate a link between BMMFs and tumor-associated chronic inflammation in the liver. Exclusively in viral hepatitis-linked HCC, Rep expression was also detected in the tumor. In addition, specifically in the liver of healthy individuals, we observed a well-defined gradient Rep expression in hepatocytes around the central veins. Altogether, these observations may indicate that the presence of BMMFs in the liver is associated with chronic inflammation and may represent a novel risk factor or surrogate marker for liver cancer.

Humans