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1.
Anticancer Drugs ; 34(10): 1122-1131, 2023 11 01.
Article in English | MEDLINE | ID: mdl-37067993

ABSTRACT

Histone lysine demethylase 4 (KDM4) is an epigenetic regulator that facilitates the transition between transcriptionally silent and active chromatin states by catalyzing the removal of methyl groups on histones H3K9, H3K36, and H1.4K26. KDM4 overamplification or dysregulation has been reported in various cancers and has been shown to drive key processes linked to tumorigenesis, such as replicative immortality, evasion of apoptosis, metastasis, DNA repair deficiency, and genomic instability. KDM4 also plays a role in epigenetic regulation of cancer stem cell renewal and has been linked to more aggressive disease and poorer clinical outcomes. The KDM4 family is composed of four main isoforms (KDM4A-D) that demonstrate functional redundancy and cross-activity; thus, selective inhibition of one isoform appears to be ineffective and pan-inhibition targeting multiple KDM4 isoforms is required. Here, we describe TACH101, a novel, small-molecule pan-inhibitor of KDM4 that selectively targets KDM4A-D with no effect on other KDM families. TACH101 demonstrated potent antiproliferative activity in cancer cell lines and organoid models derived from various histologies, including colorectal, esophageal, gastric, breast, pancreatic, and hematological malignancies. In vivo , potent inhibition of KDM4 led to efficient tumor growth inhibition and regression in several xenograft models. A reduction in the population of tumor-initiating cells was observed following TACH101 treatment. Overall, these observations demonstrate the broad applicability of TACH101 as a potential anticancer agent and support its advancement into clinical trials.


Subject(s)
Histone Demethylases , Neoplasms , Humans , Histone Demethylases/genetics , Histone Demethylases/metabolism , Histone Demethylases/therapeutic use , Jumonji Domain-Containing Histone Demethylases/genetics , Jumonji Domain-Containing Histone Demethylases/metabolism , Epigenesis, Genetic , Neoplasms/drug therapy , Neoplasms/genetics , Protein Isoforms/genetics , Protein Isoforms/metabolism , Protein Isoforms/therapeutic use
2.
J Med Chem ; 63(23): 14522-14529, 2020 12 10.
Article in English | MEDLINE | ID: mdl-33034194

ABSTRACT

Histone demethylase LSDl (KDMlA) belongs to the flavin adenine dinucleotide (FAD) dependent family of monoamine oxidases and is vital in regulation of mammalian biology. Dysregulation and overexpression of LSD1 are hallmarks of a number of human diseases, particularly cancers that are characterized as morphologically poorly differentiated. As such, inhibitors of LSD1 have potential to be beneficial as a cancer therapy. The most clinically advanced inhibitors of LSDl are covalent inhibitors derived from tranylcypromine (TCP). Herein, we report the discovery of a novel series of reversible and selective LSDl inhibitors. Exploration of structure-activity relationships (SARs) and optimization of ADME properties resulted in the identification of clinical candidate CC-90011. CC-90011 exhibits potent on-target induction of cellular differentiation in acute myeloid leukemia (AML) and small cell lung cancer (SCLC) cell lines, and antitumor efficacy in patient-derived xenograft (PDX) SCLC models. CC-90011 is currently in phase 2 trials in patients with first line, extensive stage SCLC (ClinicalTrials.gov identifier: NCT03850067).


Subject(s)
Enzyme Inhibitors/pharmacology , Histone Demethylases/antagonists & inhibitors , Organic Chemicals/pharmacology , Cell Line, Tumor , Enzyme Inhibitors/chemistry , Humans , Organic Chemicals/chemistry , Structure-Activity Relationship
3.
Bioorg Med Chem Lett ; 29(1): 103-106, 2019 01 01.
Article in English | MEDLINE | ID: mdl-30409536

ABSTRACT

The histone demethylase LSD1 is a key enzyme in the epigenetic regulation of gene transcription. Here we present our efforts to discover small molecule reversible inhibitors of LSD1 as an attractive approach to treat hematologic malignancies and certain solid tumors. Using structure-based drug design, we designed and synthesized a novel series of heteroaromatic imidazole inhibitors that demonstrate potent inhibition of the demethylase activity and low nanomolar cell-based activity. This novel LSD1 inhibitor series was further optimized by attenuating the hERG inhibition and improving oral bioavailability.


Subject(s)
Drug Discovery , Enzyme Inhibitors/pharmacology , Histone Demethylases/antagonists & inhibitors , Imidazoles/pharmacology , Dose-Response Relationship, Drug , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Histone Demethylases/metabolism , Humans , Imidazoles/chemical synthesis , Imidazoles/chemistry , Models, Molecular , Molecular Structure , Structure-Activity Relationship
4.
Bioorg Med Chem Lett ; 28(10): 1811-1816, 2018 06 01.
Article in English | MEDLINE | ID: mdl-29657099

ABSTRACT

The bromodomain and extra-terminal (BET) family of epigenetic proteins has attracted considerable attention in drug discovery given its involvement in regulating gene transcription. Screening a focused small molecule library based on the bromodomain pharmacophore resulted in the identification of 2-methylisoquinoline-1-one as a novel BET bromodomain-binding motif. Structure guided SAR exploration resulted in >10,000-fold potency improvement for the BRD4-BD1 bromodomain. Lead compounds exhibited excellent potencies in both biochemical and cellular assays in MYC-dependent cell lines. Compound 36 demonstrated good physicochemical properties and promising exposure levels in exploratory PK studies.


Subject(s)
Drug Design , Isoquinolines/chemistry , Nuclear Proteins/antagonists & inhibitors , Transcription Factors/antagonists & inhibitors , Binding Sites , Cell Cycle Proteins , Cell Line, Tumor , Cell Survival/drug effects , Crystallography, X-Ray , Humans , Inhibitory Concentration 50 , Isoquinolines/chemical synthesis , Isoquinolines/pharmacology , Molecular Dynamics Simulation , Nuclear Proteins/metabolism , Protein Structure, Tertiary , Structure-Activity Relationship , Transcription Factors/metabolism
5.
ACS Med Chem Lett ; 8(8): 869-874, 2017 Aug 10.
Article in English | MEDLINE | ID: mdl-28835804

ABSTRACT

Histone lysine demethylases (KDMs) play a vital role in the regulation of chromatin-related processes. Herein, we describe our discovery of a series of potent KDM4 inhibitors that are both cell permeable and antiproliferative in cancer models. The modulation of histone H3K9me3 and H3K36me3 upon compound treatment was verified by homogeneous time-resolved fluorescence assay and by mass spectroscopy detection. Optimization of the series using structure-based drug design led to compound 6 (QC6352), a potent KDM4 family inhibitor that is efficacious in breast and colon cancer PDX models.

6.
Transl Oncol ; 6(5): 562-72, 2013.
Article in English | MEDLINE | ID: mdl-24151537

ABSTRACT

Poor drug delivery and penetration of antibody-mediated therapies pose significant obstacles to effective treatment of solid tumors. This study explored the role of pharmacokinetics, valency, and molecular weight in maximizing drug delivery. Biodistribution of a fibroblast growth factor receptor 4 (FGFR4) targeting CovX-body (an FGFR4-binding peptide covalently linked to a nontargeting IgG scaffold; 150 kDa) and enzymatically generated FGFR4 targeting F(ab)2 (100 kDa) and Fab (50 kDa) fragments was measured. Peak tumor levels were achieved in 1 to 2 hours for Fab and F(ab)2 versus 8 hours for IgG, and the percentage injected dose in tumors was 0.45%, 0.5%, and 2.5%, respectively, compared to 0.3%, 2%, and 6% of their nontargeting controls. To explore the contribution of multivalent binding, homodimeric peptides were conjugated to the different sized scaffolds, creating FGFR4 targeting IgG and F(ab)2 with four peptides and Fab with two peptides. Increased valency resulted in an increase in cell surface binding of the bivalent constructs. There was an inverse relationship between valency and intratumoral drug concentration, consistent with targeted consumption. Immunohistochemical analysis demonstrated increased size and increased cell binding decreased tumor penetration. The binding site barrier hypothesis suggests that limited tumor penetration, as a result of high-affinity binding, could result in decreased efficacy. In our studies, increased target binding translated into superior efficacy of the IgG instead, because of superior inhibition of FGFR4 proliferation pathways and dosing through the binding site barrier. Increasing valency is therefore an effective way to increase the efficacy of antibody-based drugs.

7.
Bioorg Med Chem Lett ; 23(2): 402-6, 2013 Jan 15.
Article in English | MEDLINE | ID: mdl-23253442

ABSTRACT

Human growth hormone was conjugated to a carrier aldolase antibody, using a novel linker by connecting a disulphide bond in growth hormone to a lysine-94 amine located on the Fab arm of the antibody. The resulting CovX body showed reduced affinity towards human growth hormone receptor, reduced cell-based activity, but improved pharmacodynamic properties. We have demonstrated that this CovX-body, given once a week, showed comparable activity as growth hormone given daily in an in vivo hypophysectomized rat model.


Subject(s)
Drug Design , Human Growth Hormone/analogs & derivatives , Human Growth Hormone/administration & dosage , Animals , Antibodies/metabolism , Crystallography, X-Ray , Disease Models, Animal , Drug Administration Schedule , Fructose-Bisphosphate Aldolase/metabolism , Humans , Hypophysectomy , Models, Molecular , Molecular Structure , Rats , Time Factors
8.
J Med Chem ; 54(5): 1256-65, 2011 Mar 10.
Article in English | MEDLINE | ID: mdl-21280651

ABSTRACT

Novel phage-derived peptides are the first reported molecules specifically targeting human placental growth factor 1 (PlGF-1). Phage data enabled peptide modifications that decreased IC(50) values in PlGF-1/VEGFR-1 competition ELISA from 100 to 1 µM. Peptides exhibiting enhanced potency were bioconjugated to the CovX antibody scaffold 1 (CVX-2000), generating bivalent CovX-Bodies with 2 nM K(D) against PlGF-1. In vitro and in vivo peptide cleavage mapping studies enabled the identification of proteolytic hotspots that were subsequently chemically modified. These changes decreased IC(50) to 0.4 nM and increased compound stability from 5% remaining at 6 h after injection to 35% remaining at 24 h with a ß phase half-life of 75 h in mice. In cynomolgus monkey, a 78 h ß half-life was observed for lead compound 2. The pharmacological properties of 2 are currently being explored.


Subject(s)
Antibodies/chemistry , Peptides/chemistry , Pregnancy Proteins/metabolism , Amino Acid Sequence , Amino Acid Substitution , Animals , Binding, Competitive , Cross Reactions , Drug Stability , Enzyme-Linked Immunosorbent Assay , Humans , Macaca fascicularis , Male , Mice , Models, Molecular , Molecular Sequence Data , Peptide Library , Peptides/pharmacokinetics , Peptides/pharmacology , Placenta Growth Factor , Protein Binding , Structure-Activity Relationship , Vascular Endothelial Growth Factor Receptor-1/antagonists & inhibitors
9.
Clin Cancer Res ; 17(5): 1001-11, 2011 Mar 01.
Article in English | MEDLINE | ID: mdl-21233403

ABSTRACT

PURPOSE: Angiopoietin-1 (Ang1) plays a key role in maintaining stable vasculature, whereas in a tumor Ang2 antagonizes Ang1's function and promotes the initiation of the angiogenic switch. Specifically targeting Ang2 is a promising anticancer strategy. Here we describe the development and characterization of a new class of biotherapeutics referred to as CovX-Bodies, which are created by chemical fusion of a peptide and a carrier antibody scaffold. EXPERIMENTAL DESIGN: Various linker tethering sites on peptides were examined for their effect on CovX-Body in vitro potency and pharmacokinetics. Ang2 CovX-Bodies with low nmol/L IC(50)s and significantly improved pharmacokinetics were tested in tumor xenograft studies alone or in combination with standard of care agents. Tumor samples were analyzed for target engagement, via Ang2 protein level, CD31-positive tumor vasculature, and Tie2 expressing monocyte penetration. RESULTS: Bivalent Ang2 CovX-Bodies selectively block the Ang2-Tie2 interaction (IC(50) < 1 nmol/L) with dramatically improved pharmacokinetics (T(½) > 100 hours). Using a staged Colo-205 xenograft model, significant tumor growth inhibition (TGI) was observed (40%-63%, P < 0.01). Ang2 protein levels were reduced by approximately 50% inside tumors (P < 0.01), whereas tumor microvessel density (P < 0.01) and intratumor proangiogenic Tie2(+)CD11b(+) cells (P < 0.05) were significantly reduced. When combined with sunitinib, sorafenib, bevacizumab, irinotecan, or docetaxel, Ang2 CovX-Bodies produced even greater efficacy (∼80% TGI, P < 0.01). CONCLUSION: CovX-Bodies provide an elegant solution to overcome the pharmacokinetic-pharmacodynamic problems of peptides. Long-acting Ang2 specific CovX-Bodies will be useful as single agents and in combination with standard-of-care agents.


Subject(s)
Angiogenesis Inhibitors/pharmacology , Angiopoietin-2/antagonists & inhibitors , Immunoconjugates/pharmacology , Neoplasms, Experimental/drug therapy , Neovascularization, Pathologic/metabolism , Peptides/therapeutic use , Receptor Protein-Tyrosine Kinases/metabolism , Angiogenesis Inhibitors/pharmacokinetics , Angiogenesis Inhibitors/therapeutic use , Angiopoietin-2/metabolism , Animals , Antineoplastic Combined Chemotherapy Protocols/pharmacokinetics , Antineoplastic Combined Chemotherapy Protocols/pharmacology , Antineoplastic Combined Chemotherapy Protocols/therapeutic use , CD11b Antigen/analysis , Cell Line, Tumor , Cell Proliferation/drug effects , Enzyme-Linked Immunosorbent Assay , Gene Expression , Humans , Immunoconjugates/pharmacokinetics , Immunoconjugates/therapeutic use , Macrophages/drug effects , Male , Mice , Monocytes , Neoplasms, Experimental/pathology , Platelet Endothelial Cell Adhesion Molecule-1/analysis , Rats , Rats, Sprague-Dawley , Receptor Protein-Tyrosine Kinases/genetics , Receptor, TIE-2 , Xenograft Model Antitumor Assays
10.
Proc Natl Acad Sci U S A ; 107(52): 22611-6, 2010 Dec 28.
Article in English | MEDLINE | ID: mdl-21149738

ABSTRACT

Bispecific antibodies (BsAbs) are regarded as promising therapeutic agents due to their ability to simultaneously bind two different antigens. Several bispecific modalities have been developed, but their utility is limited due to problems with stability and manufacturing complexity. Here we report a versatile technology, based on a scaffold antibody and pharmacophore peptide heterodimers, that enables rapid generation and chemical optimization of bispecific antibodies, which are termed bispecific CovX-Bodies. Two different peptides are joined together using a branched azetidinone linker and fused to the scaffold antibody under mild conditions in a site-specific manner. Whereas the pharmacophores are responsible for functional activities, the antibody scaffold imparts long half-life and Ig-like distribution. The pharmacophores can be chemically optimized or replaced with other pharmacophores to generate optimized or unique bispecific antibodies. As a prototype, we developed a bispecific antibody that binds both vascular endothelial growth factor (VEGF) and angiopoietin-2 (Ang2) simultaneously, inhibits their function, shows efficacy in tumor xenograft studies, and greatly augments the antitumor effects of standard chemotherapy. This unique antiangiogenic bispecific antibody is in phase-1 clinical trials.


Subject(s)
Angiopoietin-2/immunology , Antibodies, Bispecific/immunology , Antibodies, Bispecific/pharmacology , Vascular Endothelial Growth Factor A/immunology , Amino Acid Sequence , Angiopoietin-2/chemistry , Angiopoietin-2/metabolism , Animals , Antibodies, Bispecific/metabolism , Antibody Specificity , Antineoplastic Agents/immunology , Antineoplastic Agents/pharmacology , Azetidines/chemistry , Cell Line, Tumor , Enzyme-Linked Immunosorbent Assay , Humans , Immunologic Factors/immunology , Immunologic Factors/metabolism , Immunologic Factors/pharmacokinetics , Macaca fascicularis , Male , Mice , Mice, Nude , Molecular Sequence Data , Neoplasms/drug therapy , Neoplasms/immunology , Neoplasms/pathology , Protein Binding , Rats , Rats, Sprague-Dawley , Surface Plasmon Resonance , Tumor Burden/drug effects , Vascular Endothelial Growth Factor A/chemistry , Vascular Endothelial Growth Factor A/metabolism , Vascular Endothelial Growth Factor Receptor-2/metabolism , Xenograft Model Antitumor Assays
11.
J Pharm Biomed Anal ; 53(3): 221-7, 2010 Nov 02.
Article in English | MEDLINE | ID: mdl-20547023

ABSTRACT

Peptides and monoclonal antibodies have both emerged as important therapeutic modalities, but each has challenges which limit their use. Non-recombinant chemical conjugation of peptides onto antibodies has the potential to minimize or eliminate altogether many of these limitations. Once such approach, pioneered by CovX has created the possibility for rapid stoichiometric fusion of pharmacophores to a single antibody platform. These molecules, called CovX-Bodies, maintain both the pharmacologic properties of a given peptide and the pharmacokinetic properties of a monoclonal antibody. The result is a new class of molecules wherein each component contributes desirable traits. In this paper, we demonstrate the use of immunoassay and two-dimensional liquid chromatography mass spectrometry (2DLC/MS) in combination to investigate the antibody conjugates of Glucagon-like peptide-1 (GLP-1) and analogs for intact protein metabolite identification directly from mouse serum. The information gained from combining these approaches has helped guide and expedite the optimization of our drug product development efforts.


Subject(s)
Chromatography, High Pressure Liquid/methods , Enzyme-Linked Immunosorbent Assay/methods , Glucagon-Like Peptide 1/blood , Mass Spectrometry/methods , Peptides/blood , Venoms/blood , Amino Acid Sequence , Animals , Antibodies, Anti-Idiotypic/immunology , Antibody Specificity , Chromatography, Affinity , Exenatide , Male , Mice , Molecular Sequence Data
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