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1.
J Clin Invest ; 132(13)2022 07 01.
Article in English | MEDLINE | ID: mdl-35579943

ABSTRACT

Molecularly targeted cancer therapy has improved outcomes for patients with cancer with targetable oncoproteins, such as mutant EGFR in lung cancer. Yet, the long-term survival of these patients remains limited, because treatment responses are typically incomplete. One potential explanation for the lack of complete and durable responses is that oncogene-driven cancers with activating mutations of EGFR often harbor additional co-occurring genetic alterations. This hypothesis remains untested for most genetic alterations that co-occur with mutant EGFR. Here, we report the functional impact of inactivating genetic alterations of the mRNA splicing factor RNA-binding motif 10 (RBM10) that co-occur with mutant EGFR. RBM10 deficiency decreased EGFR inhibitor efficacy in patient-derived EGFR-mutant tumor models. RBM10 modulated mRNA alternative splicing of the mitochondrial apoptotic regulator Bcl-x to regulate tumor cell apoptosis during treatment. Genetic inactivation of RBM10 diminished EGFR inhibitor-mediated apoptosis by decreasing the ratio of (proapoptotic) Bcl-xS to (antiapoptotic) Bcl-xL isoforms of Bcl-x. RBM10 deficiency was a biomarker of poor response to EGFR inhibitor treatment in clinical samples. Coinhibition of Bcl-xL and mutant EGFR overcame the resistance induced by RBM10 deficiency. This study sheds light on the role of co-occurring genetic alterations and on the effect of splicing factor deficiency on the modulation of sensitivity to targeted kinase inhibitor cancer therapy.


Subject(s)
Factor X , Lung Neoplasms , Apoptosis/genetics , Cell Line, Tumor , ErbB Receptors/genetics , Factor X/therapeutic use , Humans , Lung Neoplasms/drug therapy , Lung Neoplasms/genetics , Lung Neoplasms/pathology , Protein Kinase Inhibitors/pharmacology , Protein Kinase Inhibitors/therapeutic use , RNA Splicing Factors , RNA, Messenger/genetics , RNA-Binding Motifs , RNA-Binding Proteins/metabolism
2.
Clin Cancer Res ; 26(2): 439-449, 2020 01 15.
Article in English | MEDLINE | ID: mdl-31548343

ABSTRACT

PURPOSE: Although patients with advanced-stage non-small cell lung cancers (NSCLC) harboring MET exon 14 skipping mutations (METex14) often benefit from MET tyrosine kinase inhibitor (TKI) treatment, clinical benefit is limited by primary and acquired drug resistance. The molecular basis for this resistance remains incompletely understood. EXPERIMENTAL DESIGN: Targeted sequencing analysis was performed on cell-free circulating tumor DNA obtained from 289 patients with advanced-stage METex14-mutated NSCLC. RESULTS: Prominent co-occurring RAS-MAPK pathway gene alterations (e.g., in KRAS, NF1) were detected in NSCLCs with METex14 skipping alterations as compared with EGFR-mutated NSCLCs. There was an association between decreased MET TKI treatment response and RAS-MAPK pathway co-occurring alterations. In a preclinical model expressing a canonical METex14 mutation, KRAS overexpression or NF1 downregulation hyperactivated MAPK signaling to promote MET TKI resistance. This resistance was overcome by cotreatment with crizotinib and the MEK inhibitor trametinib. CONCLUSIONS: Our study provides a genomic landscape of co-occurring alterations in advanced-stage METex14-mutated NSCLC and suggests a potential combination therapy strategy targeting MAPK pathway signaling to enhance clinical outcomes.


Subject(s)
Biomarkers, Tumor/genetics , Carcinoma, Non-Small-Cell Lung/pathology , Crizotinib/therapeutic use , Exons , MAP Kinase Signaling System/genetics , Oncogene Protein p21(ras)/genetics , Proto-Oncogene Proteins c-met/genetics , Aged , Animals , Carcinoma, Non-Small-Cell Lung/drug therapy , Carcinoma, Non-Small-Cell Lung/genetics , Cell-Free Nucleic Acids/blood , Cell-Free Nucleic Acids/genetics , Female , Humans , Lung Neoplasms/drug therapy , Lung Neoplasms/genetics , Lung Neoplasms/pathology , Male , Mice , Mice, Inbred BALB C , Middle Aged , Molecular Targeted Therapy/methods , Mutation , Protein Kinase Inhibitors/therapeutic use , Treatment Outcome , Tumor Cells, Cultured
3.
Nat Genet ; 49(12): 1693-1704, 2017 Dec.
Article in English | MEDLINE | ID: mdl-29106415

ABSTRACT

A widespread approach to modern cancer therapy is to identify a single oncogenic driver gene and target its mutant-protein product (for example, EGFR-inhibitor treatment in EGFR-mutant lung cancers). However, genetically driven resistance to targeted therapy limits patient survival. Through genomic analysis of 1,122 EGFR-mutant lung cancer cell-free DNA samples and whole-exome analysis of seven longitudinally collected tumor samples from a patient with EGFR-mutant lung cancer, we identified critical co-occurring oncogenic events present in most advanced-stage EGFR-mutant lung cancers. We defined new pathways limiting EGFR-inhibitor response, including WNT/ß-catenin alterations and cell-cycle-gene (CDK4 and CDK6) mutations. Tumor genomic complexity increases with EGFR-inhibitor treatment, and co-occurring alterations in CTNNB1 and PIK3CA exhibit nonredundant functions that cooperatively promote tumor metastasis or limit EGFR-inhibitor response. This study calls for revisiting the prevailing single-gene driver-oncogene view and links clinical outcomes to co-occurring genetic alterations in patients with advanced-stage EGFR-mutant lung cancer.


Subject(s)
Carcinoma, Non-Small-Cell Lung/genetics , ErbB Receptors/genetics , Lung Neoplasms/genetics , Mutation , Carcinoma, Non-Small-Cell Lung/drug therapy , Carcinoma, Non-Small-Cell Lung/pathology , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Proliferation/genetics , Class I Phosphatidylinositol 3-Kinases/genetics , Clonal Evolution , Cyclin-Dependent Kinases/genetics , ErbB Receptors/antagonists & inhibitors , Gene Expression Regulation, Neoplastic/drug effects , Humans , Kaplan-Meier Estimate , Lung Neoplasms/drug therapy , Lung Neoplasms/pathology , Neoplasm Staging , Protein Kinase Inhibitors/pharmacology , Wnt Signaling Pathway/drug effects , Wnt Signaling Pathway/genetics , beta Catenin/genetics
4.
Nat Genet ; 49(1): 87-96, 2017 01.
Article in English | MEDLINE | ID: mdl-27869830

ABSTRACT

Metastasis is the leading cause of death in people with lung cancer, yet the molecular effectors underlying tumor dissemination remain poorly defined. Through the development of an in vivo spontaneous lung cancer metastasis model, we show that the developmentally regulated transcriptional repressor Capicua (CIC) suppresses invasion and metastasis. Inactivation of CIC relieves repression of its effector ETV4, driving ETV4-mediated upregulation of MMP24, which is necessary and sufficient for metastasis. Loss of CIC, or an increase in levels of its effectors ETV4 and MMP24, is a biomarker of tumor progression and worse outcomes in people with lung and/or gastric cancer. Our findings reveal CIC as a conserved metastasis suppressor, highlighting new anti-metastatic strategies that could potentially improve patient outcomes.


Subject(s)
Adenovirus E1A Proteins/metabolism , Carcinoma, Non-Small-Cell Lung/secondary , Lung Neoplasms/pathology , Matrix Metalloproteinases, Membrane-Associated/metabolism , Proto-Oncogene Proteins/metabolism , Repressor Proteins/antagonists & inhibitors , Adenovirus E1A Proteins/genetics , Animals , Carcinoma, Non-Small-Cell Lung/genetics , Carcinoma, Non-Small-Cell Lung/metabolism , Female , Gene Expression Profiling , Humans , Lung Neoplasms/genetics , Lung Neoplasms/metabolism , Matrix Metalloproteinases, Membrane-Associated/genetics , Mice , Mice, SCID , Proto-Oncogene Proteins/genetics , Proto-Oncogene Proteins c-ets , Repressor Proteins/genetics , Repressor Proteins/metabolism , Tumor Cells, Cultured
5.
Am J Pathol ; 183(6): 1981-1992, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24113453

ABSTRACT

Diabetic patients are known to be more susceptible to atherosclerosis and its associated cardiovascular complications. However, the effects of hyperglycemia on atherosclerosis regression remain unclear. We hypothesized that hyperglycemia impairs atherosclerosis regression by modulating the biological function of lesional macrophages. HypoE (Apoe(h/h)Mx1-Cre) mice express low levels of apolipoprotein E (apoE) and develop atherosclerosis when fed a high-fat diet. Atherosclerosis regression occurs in these mice upon plasma lipid lowering induced by a change in diet and the restoration of apoE expression. We examined the morphological characteristics of regressed lesions and assessed the biological function of lesional macrophages isolated with laser-capture microdissection in euglycemic and hyperglycemic HypoE mice. Hyperglycemia induced by streptozotocin treatment impaired lesion size reduction (36% versus 14%) and lipid loss (38% versus 26%) after the reversal of hyperlipidemia. However, decreases in lesional macrophage content and remodeling in both groups of mice were similar. Gene expression analysis revealed that hyperglycemia impaired cholesterol transport by modulating ATP-binding cassette A1, ATP-binding cassette G1, scavenger receptor class B family member (CD36), scavenger receptor class B1, and wound healing pathways in lesional macrophages during atherosclerosis regression. Hyperglycemia impairs both reduction in size and loss of lipids from atherosclerotic lesions upon plasma lipid lowering without significantly affecting the remodeling of the vascular wall.


Subject(s)
Apolipoproteins E , Atherosclerosis , Gene Expression Regulation/genetics , Hyperglycemia , Lipids/blood , Macrophages , Animals , Apolipoproteins E/genetics , Apolipoproteins E/metabolism , Atherosclerosis/blood , Atherosclerosis/complications , Atherosclerosis/genetics , Atherosclerosis/pathology , Dietary Fats/adverse effects , Dietary Fats/pharmacology , Female , Hyperglycemia/blood , Hyperglycemia/complications , Hyperglycemia/genetics , Hyperglycemia/pathology , Macrophages/metabolism , Macrophages/pathology , Male , Mice , Mice, Transgenic
6.
Arterioscler Thromb Vasc Biol ; 33(8): 1759-67, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23788760

ABSTRACT

OBJECTIVE: To study atherosclerosis regression in mice after plasma lipid reduction to moderately elevated apolipoprotein B (apoB)-lipoprotein levels. APPROACH AND RESULTS: Chow-fed hypomorphic Apoe mice deficient in low-density lipoprotein receptor expression (Apoe(h/h)Ldlr(-/-)Mx1-cre mice) develop hyperlipidemia and atherosclerosis. These mice were studied before and after inducible cre-mediated Apoe gene repair. By 1 week, induced mice displayed a 2-fold reduction in plasma cholesterol and triglyceride levels and a decrease in the non-high-density lipoprotein:high-density lipoprotein-cholesterol ratio from 87%:13% to 60%:40%. This halted atherosclerotic lesion growth and promoted macrophage loss and accumulation of thick collagen fibers for up to 8 weeks. Concomitantly, blood Ly-6C(high) monocytes were decreased by 2-fold but lesional macrophage apoptosis was unchanged. The expression of several genes involved in extracellular matrix remodeling and cell migration was changed in lesional macrophages 1 week after Apoe gene repair. However, mRNA levels of numerous genes involved in cholesterol efflux and inflammation were not significantly changed at this time point. CONCLUSIONS: Restoring apoE expression in Apoe(h/h)Ldlr(-/-)Mx1-cre mice resulted in lesion stabilization in the context of a human-like ratio of non-high-density lipoprotein:high-density lipoprotein-cholesterol. Our data suggest that macrophage loss derived in part from reduced blood Ly-6C(high) monocytes levels and genetic reprogramming of lesional macrophages.


Subject(s)
Apolipoproteins E/genetics , Genetic Therapy/methods , Plaque, Atherosclerotic/genetics , Plaque, Atherosclerotic/therapy , Receptors, LDL/genetics , Animals , Apolipoprotein B-100 , Apolipoproteins B/blood , Apolipoproteins B/genetics , Apolipoproteins E/blood , Apolipoproteins E/deficiency , Apoptosis/physiology , Cholesterol/blood , Cholesterol, HDL/blood , Disease Models, Animal , Disease Progression , Gene Expression Regulation/physiology , Humans , Hyperlipidemias/genetics , Hyperlipidemias/metabolism , Hyperlipidemias/therapy , Macrophages/cytology , Mice , Mice, Knockout , Monocytes/cytology , Plaque, Atherosclerotic/metabolism , Receptors, LDL/deficiency , Triglycerides/blood
7.
PLoS One ; 7(5): e35816, 2012.
Article in English | MEDLINE | ID: mdl-22606237

ABSTRACT

BACKGROUND: Apolipoprotein (apo) E is best known for its ability to lower plasma cholesterol and protect against atherosclerosis. Although the liver is the major source of plasma apoE, extra-hepatic sources of apoE, including from macrophages, account for up to 10% of plasma apoE levels. This study examined the contribution of macrophage-derived apoE expression levels in diet-induced hyperlipidemia and atherosclerosis. METHODOLOGY/PRINCIPAL FINDINGS: Hypomorphic apoE (Apoe(h/h)) mice expressing wildtype mouse apoE at ∼2-5% of physiological levels in all tissues were derived by gene targeting in embryonic stem cells. Cre-mediated gene repair of the Apoe(h/h) allele in Apoe(h/h)LysM-Cre mice raised apoE expression levels by 26 fold in freshly isolated peritoneal macrophages, restoring it to 37% of levels seen in wildtype mice. Chow-fed Apoe(h/h)LysM-Cre and Apoe(h/h) mice displayed similar plasma apoE and cholesterol levels (55.53±2.90 mg/dl versus 62.70±2.77 mg/dl, n = 12). When fed a high-cholesterol diet (HCD) for 16 weeks, Apoe(h/h)LysM-Cre mice displayed a 3-fold increase in plasma apoE and a concomitant 32% decrease in plasma cholesterol when compared to Apoe(h/h) mice (602.20±22.30 mg/dl versus 888.80±24.99 mg/dl, n = 7). On HCD, Apoe(h/h)LysM-Cre mice showed increased apoE immunoreactivity in lesional macrophages and liver-associated Kupffer cells but not hepatocytes. In addition, Apoe(h/h)LysM-Cre mice developed 35% less atherosclerotic lesions in the aortic root than Apoe(h/h) mice (167×10(3)±16×10(3) µm(2) versus 259×10(3)±56×10(3) µm(2), n = 7). This difference in atherosclerosis lesions size was proportional to the observed reduction in plasma cholesterol. CONCLUSIONS/SIGNIFICANCE: Macrophage-derived apoE raises plasma apoE levels in response to diet-induced hyperlipidemia and by such reduces atherosclerosis proportionally to the extent to which it lowers plasma cholesterol levels.


Subject(s)
Apolipoproteins E/deficiency , Apolipoproteins E/genetics , Atherosclerosis/prevention & control , Hyperlipidemias/prevention & control , Macrophages/metabolism , Animals , Apolipoproteins E/blood , Atherosclerosis/blood , Atherosclerosis/etiology , Atherosclerosis/therapy , Cholesterol/blood , Diet, Atherogenic , Gene Expression , Genetic Therapy , Hyperlipidemias/blood , Hyperlipidemias/etiology , Hyperlipidemias/therapy , Kupffer Cells/metabolism , Mice , Mice, Knockout , Mice, Transgenic , RNA, Messenger/genetics , RNA, Messenger/metabolism
8.
Arterioscler Thromb Vasc Biol ; 32(5): 1116-23, 2012 May.
Article in English | MEDLINE | ID: mdl-22441102

ABSTRACT

OBJECTIVE: Apolipoprotein (apo) E4 is an established risk factor for atherosclerosis, but the structural components underlying this association remain unclear. ApoE4 is characterized by 2 biophysical properties: domain interaction and molten globule state. Substituting Arg-61 for Thr-61 in mouse apoE introduces domain interaction without molten globule state, allowing us to delineate potential proatherogenic effects of domain interaction in vivo. METHODS AND RESULTS: We studied atherosclerosis susceptibility of hypomorphic Apoe mice expressing either Thr-61 or Arg-61 apoE (ApoeT(h/h) or ApoeR(h/h)mice). On a chow diet, both mouse models were normolipidemic with similar levels of plasma apoE and lipoproteins. However, on a high-cholesterol diet, ApoeR(h/h) mice displayed increased levels of total plasma cholesterol and very-low-density lipoprotein as well as larger atherosclerotic plaques in the aortic root, arch, and descending aorta compared with ApoeT(h/h) mice. In addition, evidence of cellular dysfunction was identified in peritoneal ApoeR(h/h) macrophages which released lower amounts of apoE in culture medium and displayed increased expression of major histocompatibility complex class II molecules. CONCLUSIONS: These data indicate that domain interaction mediates proatherogenic effects of apoE4 in part by modulating lipoprotein metabolism and macrophage biology. Pharmaceutical targeting of domain interaction could lead to new treatments for atherosclerosis in apoE4 individuals.


Subject(s)
Apolipoprotein E4/genetics , Atherosclerosis/genetics , DNA/genetics , Gene Expression Regulation , Genetic Predisposition to Disease , Animals , Apolipoprotein E4/biosynthesis , Atherosclerosis/etiology , Atherosclerosis/metabolism , Diet, Atherogenic/adverse effects , Disease Models, Animal , Macrophages, Peritoneal/metabolism , Macrophages, Peritoneal/pathology , Mice , Mice, Inbred C57BL , Mice, Knockout
9.
Arterioscler Thromb Vasc Biol ; 32(2): 264-72, 2012 Feb.
Article in English | MEDLINE | ID: mdl-22053073

ABSTRACT

OBJECTIVE: We investigated atheroprotective properties of apolipoprotein (apo) E beyond its ability to lower plasma cholesterol. We hypothesized that apoE reduces atherosclerosis by decreasing lipid accumulation in circulating monocytes and the inflammatory state of monocytes and the vascular endothelium. METHODS AND RESULTS: We developed mice with spontaneous hyperlipidemia with and without plasma apoE. Hypomorphic apoE mice deficient in low-density lipoprotein receptor (Apoe(h/h)Ldlr(-/-)) were compared to Apoe(-/-)Ldlr(-/-) mice. Despite 4-fold more plasma apoE than WT mice, Apoe(h/h)Ldlr(-/-) mice displayed similar plasma cholesterol as Apoe(-/-) Ldlr(-/-) mice but developed 4-fold less atherosclerotic lesions by 5 months of age. The aortic arch of Apoe(h/h)Ldlr(-/-) mice showed decreased endothelial expression of ICAM-1, PECAM-1, and JAM-A. In addition, Apoe(h/h)Ldlr(-/-) mice had less circulating leukocytes and proinflammatory Ly6C(high) monocytes. These monocytes had decreased neutral lipid content and reduced surface expression of ICAM-1, VLA-4, and L-Selectin. Apoe(h/h)Ldlr(-/-) mice displayed increased levels of apoA1-rich HDL that were potent in promoting cellular cholesterol efflux. CONCLUSIONS: Our findings suggest that apoE reduces atherosclerosis in the setting of hyperlipidemia by increasing plasma apoA1-HDL that likely contribute to reduce intracellular lipid accumulation and thereby the activation of circulating leukocytes and the vascular endothelium.


Subject(s)
Apolipoproteins E/metabolism , Atherosclerosis/metabolism , Atherosclerosis/prevention & control , Endothelium, Vascular/metabolism , Inflammation Mediators/metabolism , Lipid Metabolism , Monocytes/metabolism , Animals , Apolipoproteins E/deficiency , Cell Adhesion Molecules/metabolism , Cholesterol/metabolism , Disease Models, Animal , Integrin alpha4beta1/metabolism , Intercellular Adhesion Molecule-1/metabolism , L-Selectin/metabolism , Mice , Mice, Inbred C57BL , Mice, Knockout , Platelet Endothelial Cell Adhesion Molecule-1/metabolism , Receptors, Cell Surface/metabolism , Receptors, LDL/deficiency , Receptors, LDL/metabolism
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