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Cell-cell Fusion of Genome Edited Cell Lines for Perturbation of Cellular Structure and Function
Published on: December 7, 2019
Catalytic domain mutation in CYLD inactivates its enzyme function by structural perturbation and induces cell
Tanu Johari1, Tushar Kanti Maiti2
1Functional Proteomics Group, Regional Centre for Biotechnology (RCB), NCR Biotech Science Cluster, 3(rd) Milestone Gurgaon-Faridabad Expressway, Faridabad 121001, India; Manipal Academy of Higher Education, Manipal, Karnataka 576104, India.
Abstract:
Tumor suppressor cylindromatosis protein (CYLD), which specifically cleaves lysine 63-linked ubiquitin chain from its substrate molecules, contributes to myriad of important cellular events including cellular differentiation, oncogenesis, DNA repair and cell cycle control. It is a ubiquitously expressed protein, which negatively regulates NF-kB and JNK signaling pathways and mediates caspase dependent apoptosis through RIP1 deubiqutination. Germline mutations in CYLD are associated with a rare, hypertrophic skin cancer, termed Familial Cylindromatosis. Catalogue of Somatic Mutations in Cancer database ensembles accumulating CYLD point mutations in multiple benign and malignant tumors. However, the functional role of CYLD mutations and their association with cancer progression remains elusive. In the present report, we have shown that cancer associated mutations impose structural alteration in CYLD which impairs its binding to K63 ubiquitin chain. Here, we conclude that loss of CYLD catalytic activity potentiates its oncogenic gain of function through increased cell survival and migration.
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