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Proto-oncogene tyrosine-protein kinase Fes (Fes (also called Fps, c-Fes, c-Fps))

Target
Fes (also called Fps, c-Fes, c-Fps)
Molecular classification
Enzyme, Non-receptor tyrosine kinase[4][8], Cytoplasmic protein-tyrosine kinase
01

Overview

Proto-oncogene tyrosine-protein kinase Fes is a human non-receptor tyrosine kinase encoded by the FES gene. It was first identified as a viral oncogene in feline and avian tumors, then cloned as a cellular proto-oncogene (c-Fes/c-Fps). Fes is mainly expressed in myeloid, endothelial, and some epithelial and neuronal cells. It acts downstream of multiple cell surface receptors, regulating the actin cytoskeleton, cell adhesion, migration, and signal transduction. Fes is involved in hematopoietic cell differentiation, mast cell function, neurite outgrowth, and immune signaling. Fes has notable roles in cancer, particularly leukemia and tumor development. It is implicated in promoting tumor angiogenesis and metastasis by influencing the tumor microenvironment and the function of tumor-associated macrophages. Genetic alterations in FES are rare but have been found in some cancers, where its function as either oncogene or tumor suppressor is context-dependent. Fes also operates downstream of KIT mutations, which drive neoplastic growth in certain hematologic tumors. While specific drugs targeting Fes are not currently marketed, it is of strong therapeutic interest, especially as a target in cancers with aberrant KIT or STAT signaling[1][2][3][4][5][6][7][8][9].

Other names
Tyrosine-protein kinase FesProto-oncogene c-FesProto-oncogene c-FpsFES (gene/protein)FPSFeline sarcoma/Fujinami avian sarcoma oncogene homologp93c-fes[1][7]
02

Mechanism of action

Inhibition of Fes kinase activity is being studied to block cell proliferation, angiogenesis, and metastasis in cancer settings[2][5]. Targeting Fes downstream of activated KIT receptor in diseases where KIT is constitutively active (e.g., KIT D816V mutation)[5].

03

Biological functions

Signal transductionCell proliferationCell differentiation[1][7]Regulation of actin cytoskeletonMicrotubule assemblyCell adhesionCell migrationRegulation of monocyte differentiationInnate immune response[3][9]Mast cell degranulation[7]
04

Disease associations

Cancer (particularly involvement in leukemia and colorectal cancer)[1][2]Tumor angiogenesis[2]Potential tumor suppressor[2]KIT-related pathologies, especially in hematological neoplasms[5]Other (cell growth, immune modulation)[2][3]
05

Safety considerations

Potential risk due to broad expression in myeloid, endothelial, and select epithelial and neuronal cells—may impact normal immune and vascular functions if inhibited[2][3].Inhibition could alter normal hematopoiesis and immune response[2][3].
06

Biomarkers

Fes expression itself may serve as a biomarker for tumor-associated macrophages and vascularity within the tumor microenvironment, with potential links to prognostic significance in breast cancer models[2].No specific, validated companion diagnostic biomarkers listed.

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