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Rearranged during transfection (RET) is a receptor tyrosine kinase with roles in cell proliferation, survival, metabolism, and migration, as well as in the development of the peripheral and central nervous systems.1,2 It is composed of an extracellular domain, containing four cadherin-like domains (CLDs), a calcium-binding site, and a cysteine-rich region, a transmembrane domain, and an intracellular kinase domain.1,3 RET forms heterodimeric complexes with the glial cell line-derived neurotrophic factor (GDNF) ligands GDNF, neurturin (NRTN), artemin (ARTN), and persephin (PSPN), and the GDNF family co-receptors GFRα1-4, which induces autophosphorylation of the intracellular kinase domain and activates cellular signaling.3 Germline nonsense and/or missense mutations in RET decrease functional RET in gut tissue during development and are associated with Hirschsprung’s disease.1,3 Loss-of-function mutations in RET are associated with congenital anomalies of the kidney and urinary tract (CAKUT) and renal agenesis.3 Gain-of-function mutations in RET are associated with medullary thyroid cancer, pheochromocytoma, and parathyroid hypoplasias, and RET gene fusions have been found in patients with lung, colon, or breast carcinomas.2,3 Cayman’s RET Extracellular Domain (human, recombinant) protein can be used for enzyme activity assays.
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1. RET receptor tyrosine kinase: Role in neurodegeneration, obesity, and cancer. Int. J. Mol. Sci. 21(19), 7108 (2020).
2. RET gene fusions in malignancies of the thyroid and other tissues. Genes (Basel) 11(4), 424 (2020).
3. RET fusions in solid tumors. Cancer Treat. Rev. 81, 101911 (2019).