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1.
Dis Model Mech ; 15(5)2022 05 01.
Article in English | MEDLINE | ID: mdl-35315486

ABSTRACT

Triosephosphate isomerase (TPI) deficiency (TPI Df) is an untreatable glycolytic enzymopathy that results in hemolytic anemia, progressive muscular impairment and irreversible brain damage. Although there is a 'common' mutation (TPIE105D), other pathogenic mutations have been described. We identified patients who were compound heterozygous for a newly described mutation, TPIQ181P, and the common TPIE105D mutation. Intriguingly, these patients lacked neuropathy or cognitive impairment. We then initiated biochemical and structural studies of TPIQ181P. Surprisingly, we found that purified TPIQ181P protein had markedly impaired catalytic properties whereas crystallographic studies demonstrated that the TPIQ181P mutation resulted in a highly disordered catalytic lid. We propose that genetic complementation occurs between the two alleles, one with little activity (TPIQ181P) and one with low stability (TPIE105D). Consistent with this, TPIQ181P/E105D fibroblasts exhibit a significant reduction in the TPI protein. These data suggest that impaired stability, and not catalytic activity, is a better predictor of TPI Df severity. Lastly, we tested two recently discovered chemical modulators of mutant TPI stability, itavastatin and resveratrol, and observed a significant increase in TPI in TPIQ181P/E105D patient cells.


Subject(s)
Anemia, Hemolytic, Congenital Nonspherocytic , Triose-Phosphate Isomerase , Anemia, Hemolytic, Congenital Nonspherocytic/genetics , Carbohydrate Metabolism, Inborn Errors , Humans , Quinolines , Resveratrol/pharmacology , Triose-Phosphate Isomerase/deficiency , Triose-Phosphate Isomerase/genetics
2.
Oncogene ; 38(12): 2092-2107, 2019 03.
Article in English | MEDLINE | ID: mdl-30442981

ABSTRACT

Aberrant Notch signaling is implicated in several cancers, including breast cancer. However, the mechanistic details of the specific receptors and function of ligand-mediated Notch signaling that promote breast cancer remains elusive. In our studies we show that DLL1, a Notch signaling ligand, is significantly overexpressed in ERα+ luminal breast cancer. Intriguingly, DLL1 overexpression correlates with poor prognosis in ERα+ luminal breast cancer, but not in other subtypes of breast cancer. In addition, this effect is specific to DLL1, as other Notch ligands (DLL3, JAGGED1, and JAGGED2) do not influence the clinical outcome of ERα+ patients. Genetic studies show that DLL1-mediated Notch signaling in breast cancer is important for tumor cell proliferation, angiogenesis, and cancer stem cell function. Consistent with prognostic clinical data, we found the tumor-promoting function of DLL1 is exclusive to ERα+ luminal breast cancer, as loss of DLL1 inhibits both tumor growth and lung metastasis of luminal breast cancer. Importantly, we find that estrogen signaling stabilizes DLL1 protein by preventing its proteasomal and lysososmal degradations. Moreover, estrogen inhibits ubiquitination of DLL1. Together, our results highlight an unexpected and novel subtype-specific function of DLL1 in promoting luminal breast cancer that is regulated by estrogen signaling. Our studies also emphasize the critical role of assessing subtype-specific mechanisms driving tumor growth and metastasis to generate effective subtype-specific therapeutics.


Subject(s)
Breast Neoplasms/pathology , Estrogens/metabolism , Intercellular Signaling Peptides and Proteins/metabolism , Membrane Proteins/metabolism , Receptors, Notch/metabolism , Signal Transduction , Animals , Breast Neoplasms/blood supply , Breast Neoplasms/diagnosis , Breast Neoplasms/metabolism , Calcium-Binding Proteins , Cell Line, Tumor , Cell Proliferation , Cell Transformation, Neoplastic , Disease Progression , Estrogen Receptor alpha/metabolism , Female , Gene Expression Regulation, Neoplastic , Humans , Lysosomes/metabolism , Mice , Neoplasm Metastasis , Neoplastic Stem Cells/pathology , Neovascularization, Pathologic , Prognosis , Ubiquitination
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