Human Embryonic Genetic Mosaicism And Its Effects On Development And Disease,
2024
The Texas Medical Center Library
Human Embryonic Genetic Mosaicism And Its Effects On Development And Disease, Sarah M Waldvogel, Jennifer E Posey, Margaret A Goodell
Center on Aging Staff Publications
Nearly every mammalian cell division is accompanied by a mutational event that becomes fixed in a daughter cell. When carried forward to additional cell progeny, a clone of variant cells can emerge. As a result, mammals are complex mosaics of clones that are genetically distinct from one another. Recent high-throughput sequencing studies have revealed that mosaicism is common, clone sizes often increase with age and specific variants can affect tissue function and disease development. Variants that are acquired during early embryogenesis are shared by multiple cell types and can affect numerous tissues. Within tissues, variant clones compete, which can result …
Characterization And Visualization Of Tandem Repeats At Genome Scale,
2024
The Texas Medical Center Library
Characterization And Visualization Of Tandem Repeats At Genome Scale, Egor Dolzhenko, Adam English, Harriet Dashnow, Guilherme De Sena Brandine, Tom Mokveld, William J Rowell, Caitlin Karniski, Zev Kronenberg, Matt C Danzi, Warren A Cheung, Chengpeng Bi, Emily Farrow, Aaron Wenger, Khi Pin Chua, Verónica Martínez-Cerdeño, Trevor D Bartley, Peng Jin, David L Nelson, Stephan Zuchner, Tomi Pastinen, Aaron R Quinlan, Fritz J Sedlazeck, Michael A Eberle
Faculty, Staff and Students Publications
Tandem repeat (TR) variation is associated with gene expression changes and numerous rare monogenic diseases. Although long-read sequencing provides accurate full-length sequences and methylation of TRs, there is still a need for computational methods to profile TRs across the genome. Here we introduce the Tandem Repeat Genotyping Tool (TRGT) and an accompanying TR database. TRGT determines the consensus sequences and methylation levels of specified TRs from PacBio HiFi sequencing data. It also reports reads that support each repeat allele. These reads can be subsequently visualized with a companion TR visualization tool. Assessing 937,122 TRs, TRGT showed a Mendelian concordance of …
Impact Of Essential Genes On The Success Of Genome Editing Experiments Generating 3313 New Genetically Engineered Mouse Lines,
2024
The Texas Medical Center Library
Impact Of Essential Genes On The Success Of Genome Editing Experiments Generating 3313 New Genetically Engineered Mouse Lines, Hillary Elrick, Kevin A Peterson, Brandon J Willis, Denise G Lanza, Elif F Acar, Edward J Ryder, Lydia Teboul, Petr Kasparek, Marie-Christine Birling, David J Adams, Allan Bradley, Robert E Braun, Steve D Brown, Adam Caulder, Gemma F Codner, Francesco J Demayo, Mary E Dickinson, Brendan Doe, Graham Duddy, Marina Gertsenstein, Leslie O Goodwin, Yann Hérault, Lauri G Lintott, K C Kent Lloyd, Isabel Lorenzo, Matthew Mackenzie, Ann-Marie Mallon, Colin Mckerlie, Helen Parkinson, Ramiro Ramirez-Solis, John R Seavitt, Radislav Sedlacek, William C Skarnes, Damien Smedley, Sara Wells, Jacqueline K White, Joshua A Wood, International Mouse Phenotyping Consortium, Stephen A Murray, Jason D Heaney, Lauryl M J Nutter
Faculty, Staff and Students Publications
The International Mouse Phenotyping Consortium (IMPC) systematically produces and phenotypes mouse lines with presumptive null mutations to provide insight into gene function. The IMPC now uses the programmable RNA-guided nuclease Cas9 for its increased capacity and flexibility to efficiently generate null alleles in the C57BL/6N strain. In addition to being a valuable novel and accessible research resource, the production of 3313 knockout mouse lines using comparable protocols provides a rich dataset to analyze experimental and biological variables affecting in vivo gene engineering with Cas9. Mouse line production has two critical steps - generation of founders with the desired allele and …
Reconstructing Oral Cavity Tumor Evolution Through Brush Biopsy,
2024
The Texas Medical Center Library
Reconstructing Oral Cavity Tumor Evolution Through Brush Biopsy, Evit John, Tom Lesluyes, Toby M Baker, Maxime Tarabichi, Ann Gillenwater, Jennifer R Wang, Peter Van Loo, Xiao Zhao
Faculty, Staff and Student Publications
Oral potentially malignant disorders (OPMDs) with genomic alterations have a heightened risk of evolving into oral squamous cell carcinoma (OSCC). Currently, genomic data are typically obtained through invasive tissue biopsy. However, brush biopsy is a non-invasive method that has been utilized for identifying dysplastic cells in OPMD but its effectiveness in reflecting the genomic landscape of OPMDs remains uncertain. This pilot study investigates the potential of brush biopsy samples in accurately reconstructing the genomic profile and tumor evolution in a patient with both OPMD and OSCC. We analyzed single nucleotide variants (SNVs), copy number aberrations (CNAs), and subclonal architectures in …
The Association Of The Oral Microbiota With Cognitive Functioning In Adolescence,
2024
The Texas Medical Center Library
The Association Of The Oral Microbiota With Cognitive Functioning In Adolescence, Oxana Y Naumova, Pavel V Dobrynin, Galina V Khafizova, Elena L Grigorenko
Faculty, Staff and Students Publications
Background: A growing body of research supports the role of the microbial communities residing in the digestive system in the host's cognitive functioning. Most of these studies have been focused on the gut microbiome and its association with clinical phenotypes in middle-aged and older adults. There is an insufficiency of population-based research exploring the association of normative cognitive functioning with the microbiome particularly with the oral microbiota.
Methods: In this study, using metagenomics and metabolomics, we characterized the salivary microbiome diversity in a sample of 51 males of Hispanic and African American origin aged 12-18 years and explored …
Exploring The Complexity Of Systemic Sclerosis Etiology By Trio Whole Genome Sequencing,
2024
The Texas Medical Center Library
Exploring The Complexity Of Systemic Sclerosis Etiology By Trio Whole Genome Sequencing, Hongzheng Dai, Shamika Ketkar, Taotao Tan, Elizabeth G Atkinson, Lindsay Burrage, Kim C Worley, Brian Christopher, Marka A Lyons, Shervin Assassi, Maureen D Mayes, Brendan Lee
Faculty, Staff and Students Publications
Systemic sclerosis (SSc) is a heterogeneous rare autoimmune fibrosing disorder affecting connective tissue. The etiology of systemic sclerosis is largely unknown and many genes have been suggested as susceptibility loci of modest impact by genome-wide association study (GWAS). Multiple factors can contribute to the pathological process of the disease, which makes it more difficult to identify possible disease-causing genetic alterations. In this study, we have applied whole genome sequencing (WGS) in 101 indexed family trios, supplemented with transcriptome sequencing on cultured fibroblast cells of four patients and five family controls where available. Single nucleotide variants (SNVs) and copy number variants …
Hif-2Α-Dependent Induction Of Mir-29a Restrains Th1 Activity During T Cell Dependent Colitis,
2024
The Texas Medical Center Library
Hif-2Α-Dependent Induction Of Mir-29a Restrains Th1 Activity During T Cell Dependent Colitis, Agnieszka K Czopik, Eóin N Mcnamee, Victoria Vaughn, Xiangsheng Huang, In Hyuk Bang, Trent Clark, Yanyu Wang, Wei Ruan, Tom Nguyen, Joanne C Masterson, Eunyoung Tak, Sandra Frank, Colm B Collins, Howard Li, Cristian Rodriguez-Aguayo, Gabriel Lopez-Berestein, Mark E Gerich, Glenn T Furuta, Xiaoyi Yuan, Anil K Sood, Edwin F De Zoeten, Holger K Eltzschig
Faculty, Staff and Student Publications
Metabolic imbalance leading to inflammatory hypoxia and stabilization of hypoxia-inducible transcription factors (HIFs) is a hallmark of inflammatory bowel diseases. We hypothesize that HIF could be stabilized in CD4+ T cells during intestinal inflammation and alter the functional responses of T cells via regulation of microRNAs. Our assays reveal markedly increased T cell-intrinsic hypoxia and stabilization of HIF protein during experimental colitis. microRNA screen in primary CD4+ T cells points us towards miR-29a and our subsequent studies identify a selective role for HIF-2α in CD4-cell-intrinsic induction of miR-29a during hypoxia. Mice with T cell-intrinsic HIF-2α deletion display elevated T-bet (target …
Pulmonary Fibrosis As A Presentation Of Short Telomere Syndrome: Case Report,
2024
Internal Medicine, Knapp Medical Center, The University of Texas Rio Grande Valley School of Medicine
Pulmonary Fibrosis As A Presentation Of Short Telomere Syndrome: Case Report, Roy Kondapavuluru, Jian Garcia Cruz, Sreejith Pillai, Andres Suarez Parraga
Research Colloquium
Introduction: Short telomere syndrome (STS), also known as accelerated aging syndrome, is an inheritable gene mutation resulting in decreased telomere length causing high cell turnover of organ systems such as skin, bone marrow, liver, hair, lungs, and immune system. Due to diverse clinical manifestations, STS poses a diagnostic challenge, with bone marrow failure and idiopathic pulmonary fibrosis being frequent manifestations. The inherited form of STS demonstrates genetic anticipation occurring at an earlier age with more severe manifestations in the affected progeny. We present a rare case of inherited STS in a young patient with severe pulmonary fibrosis.
Case Presentation: A …
Phase Ii Study Of Samotolisib In Children And Young Adults With Tumors Harboring Phosphoinositide 3-Kinase/Mammalian Target Of Rapamycin Pathway Alterations: Pediatric Match Apec1621d,
2024
The Texas Medical Center Library
Phase Ii Study Of Samotolisib In Children And Young Adults With Tumors Harboring Phosphoinositide 3-Kinase/Mammalian Target Of Rapamycin Pathway Alterations: Pediatric Match Apec1621d, Theodore W Laetsch, Kathleen Ludwig, P Mickey Williams, Sinchita Roy-Chowdhuri, David R Patton, Brent Coffey, Joel M Reid, Jin Piao, Lauren Saguilig, Todd A Alonzo, Stacey L Berg, Joyce Mhlanga, Elizabeth Fox, Brenda J Weigel, Douglas S Hawkins, Margaret M Mooney, Naoko Takebe, James V Tricoli, Katherine A Janeway, Nita L Seibel, Donald Williams Parsons
Faculty, Staff and Students Publications
Purpose: Patients age 1-21 years with relapsed or refractory solid and CNS tumors were assigned to phase II studies of molecularly targeted therapies on the National Cancer Institute-Children's Oncology Group (NCI-COG) Pediatric Molecular Analysis for Therapy Choice (MATCH) trial. Patients whose tumors harbored predefined genetic alterations in the phosphoinositide 3-kinase (PI3K)/mammalian target of rapamycin (mTOR) pathway and lacked mitogen-activated protein kinase pathway activating alterations were treated with the PI3K/mTOR inhibitor samotolisib.
Methods: Patients received samotolisib twice daily in 28-day cycles until disease progression or unacceptable toxicity. A rolling 6 limited dose escalation was performed as, to our knowledge, this was …
Phylogenetically Diverse Bacterial Species Produce Histamine,
2024
The Texas Medical Center Library
Phylogenetically Diverse Bacterial Species Produce Histamine, Kristen A Engevik, Amber Hazzard, Brenton Puckett, Kathleen M Hoch, Sigmund J Haidacher, Anthony M Haag, Jennifer K Spinler, James Versalovic, Melinda A Engevik, Thomas D Horvath
Faculty, Staff and Students Publications
Histamine is an important biogenic amine known to impact a variety of patho-physiological processes ranging from allergic reactions, gut-mediated anti-inflammatory responses, and neurotransmitter activity. Histamine is found both endogenously within specialized host cells and exogenously in microbes. Exogenous histamine is produced through the decarboxylation of the amino acid L-histidine by bacterial-derived histidine decarboxylase enzymes. To investigate how widespread histamine production is across bacterial species, we examined 102,018 annotated genomes in the Integrated Microbial Genomes Database and identified 3,679 bacterial genomes (3.6 %) which possess the enzymatic machinery to generate histamine. These bacteria belonged to 10 phyla: Bacillota, Bacteroidota, Actinomycetota, Pseudomonadota, …
Satisfaction With Mode Of Delivery Of Genomic Sequencing Results In A Diverse National Sample Of Research Participants Through The Clinical Sequencing Evidence-Generating Research Consortium,
2024
The Texas Medical Center Library
Satisfaction With Mode Of Delivery Of Genomic Sequencing Results In A Diverse National Sample Of Research Participants Through The Clinical Sequencing Evidence-Generating Research Consortium, Sarah Scollon, Jill O Robinson, Eunji Jo, Sabrina A Suckiel, Laura M Amendola, Ann Katherine M Foreman, Gail P Jarvik, Christine Rini, Tao Wang, Anne Slavotinek
Faculty, Staff and Students Publications
Purpose: Research that includes diverse patient populations is necessary to optimize implementation of telehealth.
Methods: As part of a Clinical Sequencing Evidence-Generating Research Consortium cross-site study, we assessed satisfaction with mode of return of results (RoR) delivery across a diverse sample of participants receiving genetic testing results in person vs telemedicine (TM).
Results: Ninety-eight percent of participants were satisfied with their mode of results delivery. Participants receiving results by TM were more likely to report a preference for receiving results in a different way and challenges with providers noticing difficulties with understanding. More than 90% reported satisfaction across all items …
Emerin Deficiency Drives Mcf7 Cells To An Invasive Phenotype,
2024
Rowan University
Emerin Deficiency Drives Mcf7 Cells To An Invasive Phenotype, Emily Hansen, Christal Rolling, Matthew Wang, James M Holaska
Rowan-Virtua School of Osteopathic Medicine Departmental Research
During metastasis, cancer cells traverse the vasculature by squeezing through very small gaps in the endothelium. Thus, nuclei in metastatic cancer cells must become more malleable to move through these gaps. Our lab showed invasive breast cancer cells have 50% less emerin protein resulting in smaller, misshapen nuclei, and higher metastasis rates than non-cancerous controls. Thus, emerin deficiency was predicted to cause increased nuclear compliance, cell migration, and metastasis. We tested this hypothesis by downregulating emerin in noninvasive MCF7 cells and found emerin knockdown causes smaller, dysmorphic nuclei, resulting in increased impeded cell migration. Emerin reduction in invasive breast cancer …
Whole Genome And Reverse Protein Phase Array Landscapes Of Patient Derived Osteosarcoma Xenograft Models,
2024
The Texas Medical Center Library
Whole Genome And Reverse Protein Phase Array Landscapes Of Patient Derived Osteosarcoma Xenograft Models, Chia-Chin Wu, Licai Huang, Zhongting Zhang, Zhenlin Ju, Xingzhi Song, E Anders Kolb, Wendong Zhang, Jonathan Gill, Min Ha, Malcolm A Smith, Peter Houghton, Christopher L Morton, Raushan Kurmasheva, John Maris, Yael Mosse, Yiling Lu, Richard Gorlick, P Andrew Futreal, Hannah C Beird
Faculty, Staff and Student Publications
Osteosarcoma is the most common primary bone malignancy in children and young adults, and it has few treatment options. As a result, there has been little improvement in survival outcomes in the past few decades. The need for models to test novel therapies is especially great in this disease since it is both rare and does not respond to most therapies. To address this, an NCI-funded consortium has characterized and utilized a panel of patient-derived xenograft models of osteosarcoma for drug testing. The exomes, transcriptomes, and copy number landscapes of these models have been presented previously. This study now adds …
The Icf Syndrome Protein Cdca7 Harbors A Unique Dna Binding Domain That Recognizes A Cpg Dyad In The Context Of A Non-B Dna,
2024
The Texas Medical Center Library
The Icf Syndrome Protein Cdca7 Harbors A Unique Dna Binding Domain That Recognizes A Cpg Dyad In The Context Of A Non-B Dna, Swanand Hardikar, Ren Ren, Zhengzhou Ying, Jujun Zhou, John R Horton, Matthew D Bramble, Bin Liu, Yue Lu, Bigang Liu, Luis Della Coletta, Jianjun Shen, Jiameng Dan, Xing Zhang, Xiaodong Cheng, Taiping Chen
Faculty, Staff and Student Publications
CDCA7, encoding a protein with a carboxyl-terminal cysteine-rich domain (CRD), is mutated in immunodeficiency, centromeric instability, and facial anomalies (ICF) syndrome, a disease related to hypomethylation of juxtacentromeric satellite DNA. How CDCA7 directs DNA methylation to juxtacentromeric regions is unknown. Here, we show that the CDCA7 CRD adopts a unique zinc-binding structure that recognizes a CpG dyad in a non-B DNA formed by two sequence motifs. CDCA7, but not ICF mutants, preferentially binds the non-B DNA with strand-specific CpG hemi-methylation. The unmethylated sequence motif is highly enriched at centromeres of human chromosomes, whereas the methylated motif is distributed throughout …
Regulatory Complexity Of Cellular Differentiation In Candida Albicans Revealed Through Systematic Screening Of Protein Kinase Mutants,
2024
The Texas Medical Center Library
Regulatory Complexity Of Cellular Differentiation In Candida Albicans Revealed Through Systematic Screening Of Protein Kinase Mutants, Michael C Lorenz
Faculty, Staff and Student Publications
A recent study in mBio reports the construction and preliminary screening of a library containing mutants of 99 of the 119 predicted protein kinases in Candida albicans (the majority of the remaining 20 are probably essential) (J. Kramara, M.-J. Kim, T. L. Ollinger, L. C. Ristow, et al., mBio e01249-24, 2024, https://doi.org/10.1128/mbio.01249-24). Using a quantitative competition assay in 10 conditions that represent nutritional, osmotic, cell wall, and pH stresses that are considered to model various aspects of the host environment allowed them to phenotypically cluster kinases, which highlight both the integration and specialization of signaling pathways, suggesting novel functions …
The Dna Methylome Of Pediatric Brain Tumors Appears Shaped By Structural Variation And Predicts Survival,
2024
The Texas Medical Center Library
The Dna Methylome Of Pediatric Brain Tumors Appears Shaped By Structural Variation And Predicts Survival, Fengju Chen, Yiqun Zhang, Lanlan Shen, Chad J Creighton
Faculty, Staff and Students Publications
Structural variation heavily influences the molecular landscape of cancer, in part by impacting DNA methylation-mediated transcriptional regulation. Here, using multi-omic datasets involving >2400 pediatric brain and central nervous system tumors of diverse histologies from the Children's Brain Tumor Network, we report hundreds of genes and associated CpG islands (CGIs) for which the nearby presence of somatic structural variant (SV) breakpoints is recurrently associated with altered expression or DNA methylation, respectively, including tumor suppressor genes ATRX and CDKN2A. Altered DNA methylation near enhancers associates with nearby somatic SV breakpoints, including MYC and MYCN. A subset of genes with SV-CGI methylation associations …
Correction: Multilocus Pathogenic Variants Contribute To Intrafamilial Clinical Heterogeneity: A Retrospective Study Of Sibling Pairs With Neurodevelopmental Disorders,
2024
The Texas Medical Center Library
Correction: Multilocus Pathogenic Variants Contribute To Intrafamilial Clinical Heterogeneity: A Retrospective Study Of Sibling Pairs With Neurodevelopmental Disorders, Tugce Bozkurt-Yozgatli, Davut Pehlivan, Richard A Gibbs, Ugur Sezerman, Jennifer E Posey, James R Lupski, Zeynep Coban-Akdemir
Faculty, Staff and Students Publications
No abstract provided.
Frontiers In Congenital Disorders Of Glycosylation Consortium, A Cross-Sectional Study Report At Year 5 Of 280 Individuals In The Natural History Cohort,
2024
The Texas Medical Center Library
Frontiers In Congenital Disorders Of Glycosylation Consortium, A Cross-Sectional Study Report At Year 5 Of 280 Individuals In The Natural History Cohort, Christina Lam, Fernando Scaglia, Gerard T Berry, Austin Larson, Kyriakie Sarafoglou, Hans C Andersson, Evgenia Sklirou, Queenie K G Tan, Rodrigo T Starosta, Mustafa Sadek, Lynne Wolfe, Seishu Horikoshi, May Ali, Rita Barone, Teresa Campbell, Irene J Chang, Kiaira Coles, Edward Cook, Erik A Eklund, Nicole M Engelhardt, Mary Freeman, Jennifer Friedman, Debbie Y T Fu, Grace Botzo, Brandy Rawls, Christien Hernandez, Christin Johnsen, Kierstin Keller, Sara Kramer, Bryce Kuschel, Angela Leshinski, Ivan Martinez-Duncker, Gina L Mazza, Saadet Mercimek-Andrews, Bradley S Miller, Karthik Muthusamy, Juanita Neira, Marc C Patterson, Natalie Pogorelc, Lex N Powers, Elizabeth Ramey, Michaela Reinhart, Audrey Squire, Jenny Thies, Jerry Vockley, Hayden Vreugdenhil, Peter Witters, Mehdi Youbi, Aziza Zeighami, Roni Zemet, Andrew C Edmondson, Eva Morava
Faculty, Staff and Students Publications
Objective: Our report describes clinical, genetic, and biochemical features of participants with a molecularly confirmed congenital disorder of glycosylation (CDG) enrolled in the Frontiers in Congenital Disorders of Glycosylation (FCDGC) Natural History cohort at year 5 of the study.
Methods: We enrolled individuals with a known or suspected CDG into the FCDGC Natural History Study, a multicenter prospective and retrospective natural history study of all genetic causes of CDG. We conducted a cross-sectional analysis of baseline study visit data from participants with confirmed CDG who were consented into the FCDGC Natural History Study (5U54NS115198) from October 2019 to November 2023. …
Fetal Malrotation With Midgut Volvulus: Prenatal Diagnosis And Planning,
2024
The Texas Medical Center Library
Fetal Malrotation With Midgut Volvulus: Prenatal Diagnosis And Planning, Jai Sidpra, Sniya Sudhakar, Asthik Biswas, Flavia Massey, Valentina Turchetti, Tracy Lau, Edward Cook, Javeria Raza Alvi, Hasnaa M Elbendary, Jerry L Jewell, Antonella Riva, Alessandro Orsini, Aglaia Vignoli, Zara Federico, Jessica Rosenblum, An-Sofie Schoonjans, Matthias De Wachter, Ignacio Delgado Alvarez, Ana Felipe-Rucián, Nourelhoda A Haridy, Shahzad Haider, Mashaya Zaman, Selina Banu, Najwa Anwaar, Fatima Rahman, Shazia Maqbool, Rashmi Yadav, Vincenzo Salpietro, Reza Maroofian, Rajan Patel, Rupa Radhakrishnan, Sanjay P Prabhu, Klaske Lichtenbelt, Helen Stewart, Yoshiko Murakami, Ulrike Löbel, Felice D'Arco, Emma Wakeling, Wendy Jones, Eleanor Hay, Sanjay Bhate, Thomas S Jacques, David M Mirsky, Matthew T Whitehead, Maha S Zaki, Tipu Sultan, Pasquale Striano, Anna C Jansen, Maarten Lequin, Linda S De Vries, Mariasavina Severino, Andrew C Edmondson, Lara Menzies, Philippe M Campeau, Henry Houlden, Amy Mctague, Stephanie Efthymiou, Kshitij Mankad
Faculty, Staff and Students Publications
Inherited glycosylphosphatidylinositol deficiency disorders (IGDs) are a group of rare multisystem disorders arising from pathogenic variants in glycosylphosphatidylinositol anchor pathway (GPI-AP) genes. Despite associating 24 of at least 31 GPI-AP genes with human neurogenetic disease, prior reports are limited to single genes without consideration of the GPI-AP as a whole and with limited natural history data. In this multinational retrospective observational study, we systematically analyse the molecular spectrum, phenotypic characteristics and natural history of 83 individuals from 75 unique families with IGDs, including 70 newly reported individuals; the largest single cohort to date. Core clinical features were developmental delay or …
Histone Serotonylation Regulates Ependymoma Tumorigenesis,
2024
The Texas Medical Center Library
Histone Serotonylation Regulates Ependymoma Tumorigenesis, Hsiao-Chi Chen, Peihao He, Malcolm Mcdonald, Michael R Williamson, Srinidhi Varadharajan, Brittney Lozzi, Junsung Woo, Dong-Joo Choi, Debosmita Sardar, Emmet Huang-Hobbs, Hua Sun, Siri M Ippagunta, Antrix Jain, Ganesh Rao, Thomas E Merchant, David W Ellison, Jeffrey L Noebels, Kelsey C Bertrand, Stephen C Mack, Benjamin Deneen
Faculty, Staff and Students Publications
Bidirectional communication between tumors and neurons has emerged as a key facet of the tumor microenvironment that drives malignancy1,2. Another hallmark feature of cancer is epigenomic dysregulation, where alterations in gene expression influences cell states and interactions with the tumor microenvironment3. Ependymoma (EPN) is a pediatric brain tumor that relies on epigenomic remodeling to engender malignancy4,5; how these epigenetic mechanisms intersect with extrinsic neuronal signaling during EPN tumor progression is unknown. Here we show that activity of serotonergic neurons regulates EPN tumorigenesis, while serotonin itself also serves as an activating …
