AI Article Synopsis

  • The study utilizes ultra-deep exome sequencing to analyze the scarce malignant Hodgkin and Reed Sternberg (HRS) cells in classical Hodgkin lymphoma (cHL), enabling better detection of somatic mutations compared to traditional methods.* -
  • Researchers identified novel mutations in several genes and recurrent patterns affecting pathways related to Hippo signaling, thereby expanding the understanding of genetic factors involved in cHL.* -
  • Additionally, single-nuclei RNA sequencing confirmed the presence of somatic mutations in specific cell clusters, providing insight into the malignant characteristics of HRS cells and establishing a methodology for future genomic studies in larger cHL patient cohorts.*

Article Abstract

Unlabelled: The malignant Hodgkin and Reed Sternberg (HRS) cells of classical Hodgkin lymphoma (cHL) are scarce in affected lymph nodes, creating a challenge to detect driver somatic mutations. As an alternative to cell purification techniques, we hypothesized that ultra-deep exome sequencing would allow genomic study of HRS cells, thereby streamlining analysis and avoiding technical pitfalls. To test this, 31 cHL tumor/normal pairs were exome sequenced to approximately 1,000× median depth of coverage. An orthogonal error-corrected sequencing approach verified >95% of the discovered mutations. We identified mutations in genes novel to cHL including: CDH5 and PCDH7, novel stop gain mutations in IL4R, and a novel pattern of recurrent mutations in pathways regulating Hippo signaling. As a further application of our exome sequencing, we attempted to identify expressed somatic single-nucleotide variants (SNV) in single-nuclei RNA sequencing (snRNA-seq) data generated from a patient in our cohort. Our snRNA analysis identified a clear cluster of cells containing a somatic SNV identified in our deep exome data. This cluster has differentially expressed genes that are consistent with genes known to be dysregulated in HRS cells (e.g., PIM1 and PIM3). The cluster also contains cells with an expanded B-cell clonotype further supporting a malignant phenotype. This study provides proof-of-principle that ultra-deep exome sequencing can be utilized to identify recurrent mutations in HRS cells and demonstrates the feasibility of snRNA-seq in the context of cHL. These studies provide the foundation for the further analysis of genomic variants in large cohorts of patients with cHL.

Significance: Our data demonstrate the utility of ultra-deep exome sequencing in uncovering somatic variants in Hodgkin lymphoma, creating new opportunities to define the genes that are recurrently mutated in this disease. We also show for the first time the successful application of snRNA-seq in Hodgkin lymphoma and describe the expression profile of a putative cluster of HRS cells in a single patient.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10648575PMC
http://dx.doi.org/10.1158/2767-9764.CRC-23-0140DOI Listing

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