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1.
Mol Oncol ; 16(5): 1119-1131, 2022 03.
Article in English | MEDLINE | ID: mdl-35000262

ABSTRACT

Breast cancer is a heterogeneous disease that comprises multiple histological and molecular subtypes. To gain insight into mutations that drive breast tumorigenesis, we describe a pipeline for the identification and validation of tumor suppressor genes. Based on an in vivo genome-wide CRISPR/Cas9 screen in Trp53+/- heterozygous mice, we identified tumor suppressor genes that included the scaffold protein Axin1, the protein kinase A regulatory subunit gene Prkar1a, as well as the proof-of-concept genes Pten, Nf1, and Trp53 itself. Ex vivo editing of primary mammary epithelial organoids was performed to further interrogate the roles of Axin1 and Prkar1a. Increased proliferation and profound changes in mammary organoid morphology were observed for Axin1/Trp53 and Prkar1a/Trp53 double mutants compared to Pten/Trp53 double mutants. Furthermore, direct in vivo genome editing via intraductal injection of lentiviruses engineered to express dual short-guide RNAs revealed that mutagenesis of Trp53 and either Prkar1a, Axin1, or Pten markedly accelerated tumor development compared to Trp53-only mutants. This proof-of-principle study highlights the application of in vivo CRISPR/Cas9 editing for uncovering cooperativity between defects in tumor suppressor genes that elicit mammary tumorigenesis.


Subject(s)
CRISPR-Cas Systems , Gene Editing , Animals , CRISPR-Cas Systems/genetics , Cell Transformation, Neoplastic/genetics , Genes, Tumor Suppressor , Humans , Mice , Tumor Suppressor Protein p53/genetics , Tumor Suppressor Protein p53/metabolism
2.
Clin Cancer Res ; 26(15): 4120-4134, 2020 08 01.
Article in English | MEDLINE | ID: mdl-32245900

ABSTRACT

PURPOSE: Although cyclin-dependent kinase 4 and 6 (CDK4/6) inhibitors significantly extend tumor response in patients with metastatic estrogen receptor-positive (ER+) breast cancer, relapse is almost inevitable. This may, in part, reflect the failure of CDK4/6 inhibitors to induce apoptotic cell death. We therefore evaluated combination therapy with ABT-199 (venetoclax), a potent and selective BCL2 inhibitor. EXPERIMENTAL DESIGN: BCL2 family member expression was assessed following treatment with endocrine therapy and the CDK4/6 inhibitor palbociclib. Functional assays were used to determine the impact of adding ABT-199 to fulvestrant and palbociclib in ER+ breast cancer cell lines, patient-derived organoid (PDO), and patient-derived xenograft (PDX) models. A syngeneic ER+ mouse mammary tumor model was used to study the effect of combination therapy on the immune system. RESULTS: Triple therapy was well tolerated and produced a superior and more durable tumor response compared with single or doublet therapy. This was associated with marked apoptosis, including of senescent cells, indicative of senolysis. Unexpectedly, ABT-199 resulted in Rb dephosphorylation and reduced G1-S cyclins, most notably at high doses, thereby intensifying the fulvestrant/palbociclib-induced cell-cycle arrest. Interestingly, a CRISPR/Cas9 screen suggested that ABT-199 could mitigate loss of Rb (and potentially other mechanisms of acquired resistance) to palbociclib. ABT-199 did not abrogate the favorable immunomodulatory effects of palbociclib in a syngeneic ER+ mammary tumor model and extended tumor response when combined with anti-PD1 therapy. CONCLUSIONS: This study illustrates the potential for targeting BCL2 in combination with CDK4/6 inhibitors and supports investigation of combination therapy in ER+ breast cancer.


Subject(s)
Antineoplastic Combined Chemotherapy Protocols/pharmacology , Breast Neoplasms/therapy , Neoadjuvant Therapy/methods , Protein Kinase Inhibitors/therapeutic use , Proto-Oncogene Proteins c-bcl-2/antagonists & inhibitors , Adult , Aged , Animals , Antineoplastic Combined Chemotherapy Protocols/therapeutic use , Apoptosis/drug effects , Breast/pathology , Breast/surgery , Breast Neoplasms/pathology , Bridged Bicyclo Compounds, Heterocyclic/pharmacology , Bridged Bicyclo Compounds, Heterocyclic/therapeutic use , Cell Line, Tumor , Chemotherapy, Adjuvant/methods , Cyclin-Dependent Kinase 4/antagonists & inhibitors , Cyclin-Dependent Kinase 6/antagonists & inhibitors , Disease Models, Animal , Drug Resistance, Neoplasm/drug effects , Female , Fulvestrant/pharmacology , Fulvestrant/therapeutic use , Humans , Mastectomy , Mice , Middle Aged , Organoids , Piperazines/pharmacology , Piperazines/therapeutic use , Primary Cell Culture , Protein Kinase Inhibitors/pharmacology , Pyridines/pharmacology , Pyridines/therapeutic use , Receptors, Estrogen/analysis , Receptors, Estrogen/metabolism , Sulfonamides/pharmacology , Sulfonamides/therapeutic use , Xenograft Model Antitumor Assays
3.
J Natl Cancer Inst ; 112(5): 540-544, 2020 05 01.
Article in English | MEDLINE | ID: mdl-31589320

ABSTRACT

Breast cancer is characterized by histological and functional heterogeneity, posing a clinical challenge for patient treatment. Emerging evidence suggests that the distinct subtypes reflect the repertoire of genetic alterations and the target cell. However, the precise initiating events that predispose normal epithelium to neoplasia are poorly understood. Here, we demonstrate that breast epithelial organoids can be generated from human reduction mammoplasties (12 out of 12 donors), thus creating a tool to study the clonal evolution of breast cancer. To recapitulate de novo oncogenesis, we exploited clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 for targeted knockout of four breast cancer-associated tumor suppressor genes (P53, PTEN, RB1, NF1) in mammary progenitor cells from six donors. Mutant organoids gained long-term culturing capacity and formed estrogen-receptor positive luminal tumors on transplantation into mice for one out of six P53/PTEN/RB1-mutated and three out of six P53/PTEN/RB1/NF1-mutated lines. These organoids responded to endocrine therapy or chemotherapy, supporting the potential utility of this model to enhance our understanding of the molecular events that culminate in specific subtypes of breast cancer.


Subject(s)
Breast Neoplasms/genetics , Breast/physiology , Animals , Breast/cytology , Breast Neoplasms/pathology , CRISPR-Cas Systems , Clustered Regularly Interspaced Short Palindromic Repeats , Female , Gene Editing/methods , Gene Knockout Techniques , Genes, p53 , Heterografts , Humans , Mice, Inbred NOD , Mice, SCID , Organoids , PTEN Phosphohydrolase/genetics , Retinoblastoma Binding Proteins/genetics , Tissue Engineering/methods , Tumor Suppressor Protein p53/genetics , Ubiquitin-Protein Ligases/genetics
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