Investigator

Hannah C. Beird

Sr. Research Scientist · University of Texas MD Anderson Cancer Center, Genomic Medicine

HCBHannah C. Beird
Papers(1)
Comparative Tumor Mic…
Collaborators(10)
Joseph CelestinoLatasha LittleNamrata KhuranaP. Andrew FutrealR. Tyler HillmanRussell R. BroaddusSammy Ferri-BorgognoSamuel C. MokThomas WelteTri Nguyen
Institutions(3)
The University Of Tex…UC San Diego Health S…University Of North C…

Papers

Comparative Tumor Microenvironment Analysis of Primary and Recurrent Ovarian Granulosa Cell Tumors

Abstract Adult-type granulosa cell tumors (aGCT) are rare ovarian sex cord tumors with few effective treatments for recurrent disease. The objective of this study was to characterize the tumor microenvironment (TME) of primary and recurrent aGCTs and to identify correlates of disease recurrence. Total RNA sequencing (RNA-seq) was performed on 24 pathologically confirmed, cryopreserved aGCT samples, including 8 primary and 16 recurrent tumors. After read alignment and quality-control filtering, DESeq2 was used to identify differentially expressed genes (DEG) between primary and recurrent tumors. Functional enrichment pathway analysis and gene set enrichment analysis was performed using “clusterProfiler” and “GSVA” R packages. TME composition was investigated through the analysis and integration of multiple published RNA-seq deconvolution algorithms. TME analysis results were externally validated using data from independent previously published RNA-seq datasets. A total of 31 DEGs were identified between primary and recurrent aGCTs. These included genes with known function in hormone signaling such as LHCGR and INSL3 (more abundant in primary tumors) and CYP19A1 (more abundant in recurrent tumors). Gene set enrichment analysis revealed that primarily immune-related and hormone-regulated gene sets expression was increased in recurrent tumors. Integrative TME analysis demonstrated statistically significant depletion of cancer-associated fibroblasts in recurrent tumors. This finding was confirmed in multiple independent datasets. Implications: Recurrent aGCTs exhibit alterations in hormone pathway gene expression as well as decreased infiltration of cancer-associated fibroblasts, suggesting dual roles for hormonal signaling and TME remodeling underpinning disease relapse.

48Works
1Papers
17Collaborators
Leukemia, Myeloid, AcutePrognosisBone NeoplasmsHematologic NeoplasmsBiomarkers, TumorTumor Suppressor Protein p53Leukemia, Prolymphocytic, T-Cell

Positions

2013–

Sr. Research Scientist

University of Texas MD Anderson Cancer Center · Genomic Medicine

Education

2013

Postdoctoral Associate

Baylor College of Medicine

2008

PhD

University of Texas Graduate School of Biomedical Sciences at Houston

2001

BSc

University of Alberta · Biological Sciences