Hematoxylin binds to mutant calreticulin and disrupts its abnormal interaction with thrombopoietin receptor.
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ABSTRACT: Somatic mutations of calreticulin (CALR) have been identified as a main disease driver of myeloproliferative neoplasms, suggesting that development of drugs targeting mutant CALR is of great significance. Site-directed mutagenesis in the N-glycan binding domain (GBD) abolishes the ability of mutant CALR to oncogenically activate the thrombopoietin receptor (MPL). We therefore hypothesized that a small molecule targeting the GBD might inhibit the oncogenicity of the mutant CALR. Using an in silico molecular docking study, we identified candidate binders to the GBD of CALR. Further experimental validation of the hits identified a group of catechols inducing a selective growth inhibitory effect on cells that depend on oncogenic CALR for survival and proliferation. Apoptosis-inducing effects b
SUBMITTER: Jia R
PROVIDER: S-EPMC8118640 | biostudies-literature | 2021 Apr
REPOSITORIES: biostudies-literature
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