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Shulman, D. S.

Publications and source records attributed to Shulman, D. S..

3 recordsLinked to original sources

Clustered structural variant hotspots enable oncogenic addiction and plasticity in osteosarcoma

The genomic landscape of osteosarcoma, the most common bone cancer worldwide, is among the most structurally complex of all human malignancies. The identification of recurrent and functionally consequential patterns has thus remained a challenge. Across 236 whole-genome sequencing osteosarcoma samples, we uncovered five genomic hotspots of clustered structural variation collectively altered in 58% of tumors. Four were associated with amplification of oncogenes ( MYC , CCND3 , CCNE1 , CDK4) , while the fifth mapped largely upstream of TP53 . Hotspot events showed coordinated patterns of co-occurrence and mutual exclusivity with each other and with tumor suppressor alterations, suggesting genomic context-specific selection. We found localized transcriptional dysregulation at hotspot event loci, and single cells harboring these events converged on a neural crest-like program, linking these structural alterations to a less differentiated cell state. These events were also detectable non-invasively through liquid biopsies and displayed ongoing structural evolution throughout disease progression, a finding with potential clinical utility. Our results provide novel insight into how complex rearrangements shape oncogenesis in osteosarcoma, with broader relevance to other cancers characterized by complex genomes.

cancer biology↗

Multi-omic Longitudinal Analysis of Canine Osteosarcoma Identifies Inter-Patient Heterogeneity and Immune Enrichment in Metastatic Lesions

Osteosarcoma (OS) exhibits substantial genomic complexity and inter-patient heterogeneity, necessitating longitudinal, patient-matched analyses to understand acquired features of tumor evolution. However, most published OS data is limited to primary tumor samples, limiting insight into patient-specific resistance mechanisms. To address this, we characterized the genomic landscape of paired primary and metastatic tumor samples from dogs with spontaneous OS. Whole-genome and single-cell RNA sequencing reveal mutation and gene expression profiles that are predominantly organized by patient identity. Mutational burden and pathway alterations such as those involving PI3K, NOTCH, TP53, MAPK, RAS and epigenetic regulation differ between primary and metastatic samples. Variants present in tumor tissue are readily detectable in paired cfDNA samples, demonstrating the utility of this assay for identifying tumor-specific alterations associated with treatment resistance. Analysis of bulk RNA-seq data to estimate cell-type composition shows greater immune cell representation in metastases, underscoring the importance of immune signaling pathways in OS. These findings exemplify the presence of patient-specific alterations in genomic architecture over the course of tumor progression, linking CNV amplification, pathway reprogramming, and immune evasion in metastatic OS.

genomics↗

A novel combination of CDK4/6 and PI3K inhibitors exhibits highly synergistic activity and translational potential in Ewing sarcoma.

Ewing sarcoma is a highly aggressive solid malignancy affecting children and young adults. Ewing sarcoma is driven primarily by EWSR1::FLI1, a fusion oncoprotein that has been notoriously difficult to target with traditional pharmacologic agents. There are numerous examples of preclinical promising combinations of small molecules that are never tested in pediatric clinical trials because agents fail to reach the market due to limited efficacy for common adult cancers. Moreover, the effectiveness of single-agent therapies for cancer treatment is often limited. To address these limitations, we selected 28 compounds that were largely FDA approved or in late stages of clinical development and known to regulate important pathways in Ewing sarcoma. We performed a drug screen in Ewing sarcoma cell lines with 180 combinations of tyrosine kinase inhibitors, cell cycle inhibitors, and conventional chemotherapy. The results of the screen revealed that a PI3K inhibitor, copanlisib, combined with a CDK4/6 inhibitor, ribociclib, exhibited strong synergistic anti-Ewing sarcoma activity. Using proteomic methods such as a reverse-phase protein array and western immunoblotting, we demonstrated that this combination induced a downregulation of the PI3K/AKT pathway as well as proteins involved in cell cycle regulation. We further confirmed these in vitro data using bulk RNA-sequencing. To evaluate the phenotypic effect of the PI3K/CDK4/6 inhibition in Ewing sarcoma lines, we performed apoptosis and cell cycle analyses using flow cytometry and demonstrated that ribociclib primarily induced a G0/G1 arrest with minimal effect on Ewing cell viability but significantly enhanced the apoptotic effect of copanlisib treatment. In a xenograft model of Ewing sarcoma, we demonstrated that the combination therapy significantly prolonged survival compared to treatment with either vehicle or single-agent therapy alone. Our findings identify a new candidate therapy combination for Ewing sarcoma using FDA-approved drugs and provide a resource of additional potential synergistic combinations for future validation. Statement of translational relevanceTreatment of patients with newly diagnosed Ewing sarcoma involves intensive multi- agent chemotherapy, radiation, and surgery, often leading to long-term toxicities. Children with relapsed or metastatic disease experience poor outcomes with five-year overall survival rates of only 15 to 30 percent. Therefore, new therapeutic approaches are urgently needed. Our drug screen revealed several promising combinations with synergistic anti-Ewing sarcoma activity including the PI3K inhibitor copanlisib with the CDK4/6 inhibitor ribociclib. This combination also significantly improved survival in a mouse xenograft model of Ewing sarcoma compared to treatment with vehicle or either drug alone. Pre-clinical validation of a combination therapy composed of two FDA- approved drugs nominates this combination for early phase trials for patients with with relapsed or refractory Ewing sarcoma, a group of patients greatly in need of new therapeutic opportunities. The data generated by our drug screen may also be used as a resource to identify other promising combinations for future validation as Ewing sarcoma therapies.

cancer biology↗