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Articles 31 - 60 of 3165

Full-Text Articles in Genetics and Genomics

Dissecting The Complex Genomic Landscape Underlying Oxidative Stress Resistance Using Natural Variation In Yeast, Sonali Lakshika Anne Lenaduwe May 2026

Dissecting The Complex Genomic Landscape Underlying Oxidative Stress Resistance Using Natural Variation In Yeast, Sonali Lakshika Anne Lenaduwe

Graduate Theses and Dissertations

Stress is experienced across the tree of life. Survival in fluctuating environments depends on a robust genetic architecture. This dissertation examines the genetic and metabolic determinants underlying one such adaptive response: cross-protection. Leveraging natural variation in the stress responses of budding yeast, Saccharomyces cerevisiae, I examine the genetic variation contributing to ethanol-induced cross-protection against oxidative stress. Acquired stress resistance, in which mild pre-exposure improves survival to subsequent stresses, is prevalent across diverse organisms and can involve both same-stress and cross-protection. Using high-throughput bulk segregant analysis (BSA-seq) and advanced intercross mapping populations derived from natural yeast isolates, I identify quantitative trait …


Genetic Screen For Regulators Of Pol4, A Dna Repair Polymerase In Saccharomyces Cerevisiae, Pasang Dolma Sherpa May 2026

Genetic Screen For Regulators Of Pol4, A Dna Repair Polymerase In Saccharomyces Cerevisiae, Pasang Dolma Sherpa

Theses and Dissertations

In Saccharomyces cerevisiae, DNA polymerase 4 (POL4) is the beta repair polymerase, the product of the POL4 gene, and is involved in base excision repair (BER) and microhomology-mediated end joining (MMEJ). Despite its involvement in these repair pathways and its conservation across eukaryotes, deletion of POL4 shows no detectable phenotype under standard laboratory conditions. I hypothesized that unknown genes act as backup systems, providing redundant activities that allow pol4Δ cells to survive. To test this, a genetic screen for mutants showing synthetic lethality with pol4Δ was implemented. I constructed a strain lacking the POL4 gene and carrying …


Abnormal Trafficking And Processing Of Multiple Matrix Metalloproteinases Drive Cartilage Defects In Congenital Disorders Of Glycosylation, Chia-Lun Wu May 2026

Abnormal Trafficking And Processing Of Multiple Matrix Metalloproteinases Drive Cartilage Defects In Congenital Disorders Of Glycosylation, Chia-Lun Wu

All Dissertations

Congenital Disorders of Glycosylation (CDG) are rare metabolic diseases caused by defects in glycosylation. Despite identification of over 200 CDG types, the mechanisms linking glycosylation defects to diverse clinical phenotypes remain unclear. This dissertation uses zebrafish models of PMM2-CDG and STT3-CDG to redefine CDG pathogenesis, shifting from a simple glycan deficiency model to one involving disrupted cellular spatial organization.

We identify a protease-dependent pathway underlying craniofacial cartilage defects. Specifically, defective proteolytic processing of N-cadherin, a key adhesion molecule in chondrogenesis, is a central driver of pathology. We further uncover an unconventional trafficking mechanism in which ER stress and altered secretory …


Using The Flexon Approach To Rnai To Identify Essential Genes That Affect Gonadal Development In C. Elegans, Joyce S. Lefevers Apr 2026

Using The Flexon Approach To Rnai To Identify Essential Genes That Affect Gonadal Development In C. Elegans, Joyce S. Lefevers

Undergraduate Theses

To elucidate the molecular role of essential genes in the gonadal development of Caenorhabditis elegans (C. elegans) it is necessary to utilize specialized molecular techniques such that the phenotypic effects of gene knockdown can be studied while the viability of the organism is preserved. Shaffer and Greenwald (2022) developed the floxed exon (flexon), a tool that improves upon previous approaches to spatiotemporal control of gene expression. The flexon subunit is made up of an artificial exon with a stop cassette flanked by artificial introns which, when inserted into a gene of interest, prevents the expression of that gene. …


From Bench To Bedside: Unraveling The Role Of Sarm1 In Chronic Human Neurodegenerative Disease, Caitlin Dingwall Apr 2026

From Bench To Bedside: Unraveling The Role Of Sarm1 In Chronic Human Neurodegenerative Disease, Caitlin Dingwall

Arts & Sciences Graduate Student Theses and Dissertations

Axon degeneration (AxD) is an early and often causative event in many neurodegenerative diseases, yet no treatments exist to halt the breakdown of axons. In healthy axons, the axon survival factor NMNAT2 inhibits SARM1, the central executioner of programmed axon degeneration. NMNAT2 is a highly labile protein produced in the soma and trafficked into the axon. Nerve injury blocks axonal transport and leads to rapid depletion of axonal NMNAT2, causing NMN buildup and NAD+ loss. Recent breakthroughs led to the discovery that SARM1 is activated by an increase in the NMN to NAD+ ratio. While the SARM1 axon degeneration pathway …


Biomechanical Effects Of Bilateral Torsion And Skeletal Fusion: A Case Study, Linnéa Forbes Apr 2026

Biomechanical Effects Of Bilateral Torsion And Skeletal Fusion: A Case Study, Linnéa Forbes

Honors Projects

As part of both a personal endeavor and an academic project, I have investigated the aetiology and treatment of seemingly idiopathic and debilitating leg pain in a patient over the past 10 years. Via collaboration with medical professionals at Cincinnati Children’s Hospital, Cincinnati Premier Physical Therapy, and Cincinnati Women’s TriHealth, I have identified sources of pain at the anatomical level. The combination of internal femoral torsion, external tibial torsion, pes planus, and bony fusions appear to be major perpetuators of the pain. An effective treatment continues to be evasive. To date, I have attempted to find answers through genetic approaches, …


Amyloid Beta-42 Neurotoxicity In Drosophila Retinal Development, Shay O. Sims, Pierce Duncan, Malachi Abon, Jacob G. Smith Apr 2026

Amyloid Beta-42 Neurotoxicity In Drosophila Retinal Development, Shay O. Sims, Pierce Duncan, Malachi Abon, Jacob G. Smith

Create@State

Alzheimer's disease (AD) represents one of the most prevalent neurodegenerative disorders globally. Thus far, the underlying mechanisms associated with the pathogenesis of AD are innately elusive. Two hallmarks associated with the progression of AD exist, including Amyloid-Beta 42 (Aβ42) protein plaque formation and hyperphosphorylation of tau proteins in neurons. Amyloid-beta is known to concentrate with other neuronal proteins as complexes form, including the cytoskeletal protein actin. However, whether actin contributes to neuronal decline in AD is unknown. To further understand the cellular cascades associated with AD, we investigated the role of cytoskeleton dynamics in modulating oxidative stress and neuroinflammation within …


Variation In Infection Prevalence Of Splendidofilaria Pectoralis Across Alaskan Grouse Populations, Anahi Garcia Valdez, Diego Martinez Apr 2026

Variation In Infection Prevalence Of Splendidofilaria Pectoralis Across Alaskan Grouse Populations, Anahi Garcia Valdez, Diego Martinez

Create@State

In recent years, rapid climate change has altered species distributions worldwide and influenced parasite transmission dynamics in wildlife systems. Parasite infections play an important role in shaping patterns of disease distribution across species and populations. Understanding variation in infection prevalence across geographic regions and host demographic groups is essential for interpreting these patterns. Splendidofilaria pectoralis is a filarial nematode that infects the connective tissues of grouse (Aves: Tetraonini) in Alaska and has been moving northward as the climate warms. However, relatively little is known about the variation in prevalence of the nematode across geography and demography. This project examines variation …


Impact Of One Nucleotide On Organ Enumeration And Phyllotaxy In Arabidopsis Thaliana, Hazel R. Frans, Tara Phelps-Durr Apr 2026

Impact Of One Nucleotide On Organ Enumeration And Phyllotaxy In Arabidopsis Thaliana, Hazel R. Frans, Tara Phelps-Durr

SACAD: Scholarly Activities

Arabidopsis thaliana is a model organism used by scientists to study plant genetics, development, and physiology. CRISPR-Cas9 is a biotechnology tool adapted from a bacterial defense mechanism to precisely edit DNA using a guide mRNA and a Cas9 protein. This project aims to create CRISPR-CAS9 mutations in the APETALA3 (AP3) gene of the model plant Arabidopsis thaliana. AP3 is a class B gene critical to the petal and stamen development of Arabidopsis flowers. The AP3 protein contains a MADS domain, which binds directly to DNA and may be responsible for the expression of the CaRG-box genes. AP3 works in conjunction …


Ultrasonography Accompanied By Genetic Testing In Feline Polycystic Kidney Disease, Thao Phuong Vu, Thong Quang Le, Ha Nguyen Nhat Tran, Khoa Hoang Dang Le, Anh Phu Nam Bui Apr 2026

Ultrasonography Accompanied By Genetic Testing In Feline Polycystic Kidney Disease, Thao Phuong Vu, Thong Quang Le, Ha Nguyen Nhat Tran, Khoa Hoang Dang Le, Anh Phu Nam Bui

The Thai Journal of Veterinary Medicine

Autosomal dominant polycystic kidney disease (ADPKD), caused by the PKD1 c.10063C>A mutation, is a prevalent inherited feline disorder, but its allele frequency in Vietnam remains unidentified. This study aimed to determine the carrier frequency of this variant in British Shorthair, Maine Coon, and Ragdoll cats in Ho Chi Minh City and to correlate genotype with ultrasonographic phenotype. Ninety-seven client-owned cats were genotyped for the pkd1 mutation using PCR-RFLP. A subset of 47 cats also underwent abdominal ultrasonography to detect renal cysts. Genotypic results were correlated with sonographic findings, and risk factors were analyzed using chi-square tests and odds ratios …


G-Quadruplex Dna-Driven Genomic Instability Under Ber Loss, Addison Belick, Claryssa Gutierrez, Joslynn Rosas, Andrea Vargas Apr 2026

G-Quadruplex Dna-Driven Genomic Instability Under Ber Loss, Addison Belick, Claryssa Gutierrez, Joslynn Rosas, Andrea Vargas

Posters - 2026

Base Excision Repair (BER) is a cellular tool that can repair damaged DNA (Hindi et al., 2022, Cellular and Molecular Life Sciences). G-quadruplexes (G4s) are unique 4-stranded structures in DNA or RNA that are rich in guanine (Gray et al., 2023, Nat. Chem. Biol). The purpose of this study is to understand whether BER contributes to the removal of G4s in DNA. This will determine if the BER-deficient yeast is more sensitive to treatment with G4-binding drugs than the BER-proficient yeast. We will replace the APN1 gene in the yeast genome with the URA3 gene, because the wild type yeast …


Understanding P53 Regulation On Transposable Elements In Cancer, Xuan Qu Apr 2026

Understanding P53 Regulation On Transposable Elements In Cancer, Xuan Qu

Arts & Sciences Graduate Student Theses and Dissertations

Transposable elements (TEs), traditionally known as “jumping genes”, are known to have the ability to move in the genome and alter the activation of transcriptions from nearby genes. Taking up nearly half of the human genome, TEs have evolved, and some have been selected to play important roles in biological processes. We found that in human diseases such as cancer, global hypomethylation resurrects many ordinarily silenced TEs. These TEs can often serve as alternative promoters for oncogenes and play functionally meaningful roles in driving disease processes. One of the top genetic mutation status that correlates with differential numbers of TE …


Dissecting The Etiology Of Alcohol Use Disorder By An Integrative Heritable Component Approach, Ivy Garrenton Apr 2026

Dissecting The Etiology Of Alcohol Use Disorder By An Integrative Heritable Component Approach, Ivy Garrenton

Computer Science Theses & Dissertations

Alcohol Use Disorder (AUD) is a pervasive condition characterized by complex interplay among genetic, phenotypic, and environmental factors. Although previous studies have identi fied genetic loci associated with alcohol consumption, these efforts have not captured the genetic heterogeneity and gene-environment interactions underlying AUD pathogenesis. To address this critical gap, we developed a novel statistical methodology that integrates phenotypic, genotypic, and environmental data through an environmentally modified Genetic Relationship Matrix (GRM) to derive AUD-related traits with enhanced heritability.

This approach demonstrated superior performance in both simulated and real-world datasets. Traits derived using the environmentally modified GRM exhibited significantly higher estimated heritability …


Fisheries Management Paper No.312: Discussion Paper On Management And Licensing Options For The Charter Industry - Statewide Strategic Review Of Western Australia’S Charter Fishing Sector, Department Of Primary Industries And Regional Development, Western Australia Apr 2026

Fisheries Management Paper No.312: Discussion Paper On Management And Licensing Options For The Charter Industry - Statewide Strategic Review Of Western Australia’S Charter Fishing Sector, Department Of Primary Industries And Regional Development, Western Australia

Fisheries Management Papers

This consultation paper has been prepared to support the statewide strategic review of Western Australia’s (WA) charter fishing sector, which was initiated as a government commitment.

The paper details issues and proposals relating to the management and licensing framework, development opportunities and representation model for the charter fishing industry. The proposals have been developed in consultation with the Charter Review Working Group. The Department of Primary Industries and Regional Development (DPIRD) now seeks comment from relevant stakeholders on the issues and proposals outlined within this paper.

Comments provided will assist in providing advice and recommendations to the Minister for Fisheries …


Untangling G-Quadruplexes In Dna: The Effects Of Nucleotide Excision Repair, Jaidelin Alvardo, Abiageal Riley, Erick Morales Orrante, Raynne Malik Apr 2026

Untangling G-Quadruplexes In Dna: The Effects Of Nucleotide Excision Repair, Jaidelin Alvardo, Abiageal Riley, Erick Morales Orrante, Raynne Malik

Posters - 2026

Nucleotide Excision Repair (NER) remo ves bulky DNA lesions that are attributed to UV irradiation, environmental mutagens, and chemo-therapeutic agents (Schärer, CSH Perspectives Biology, 2013). G4- quadruplexes are formed by four guanines hydrogen bonded together to form a planar ring, and stacking of the hydrophobic G quartets stabilizes the quadruplex structure Capra et al.,PLoS Computational Biology, 2010). A surplus of this structure is linked to genomic Instability and cancer development.

Prior studies indicate that because NER eliminates large lesions of DNA, there may be a link to the removal of G4-quadruplexes through Nucleotide Excision Repair (De Magis et al, Nature,2020). …


A Randomized Study Of Digital Versus Genetic Counselor Return Of Actionable Genetic Research Results To Biobank Participants (Respect3 Study), Anuja Rajendra Godbole, Elisabeth Wood, Brian Egleston, Lily Hoffman-Andrews, Sarah Brown, Sarah Howe, Sanjana Shastri, Rajia Mim, Justin Feng, Anjali Owens, Susan Domchek, Reed Pyeritz, Bryson Katona, Staci Kallish, Giorgio Sirugo, Joellen Weaver, Linda Fleisher, Kuang-Yi Wen, Elena Elkin, Katherine Nathanson, Daniel Rader, Angela Bradbury Mar 2026

A Randomized Study Of Digital Versus Genetic Counselor Return Of Actionable Genetic Research Results To Biobank Participants (Respect3 Study), Anuja Rajendra Godbole, Elisabeth Wood, Brian Egleston, Lily Hoffman-Andrews, Sarah Brown, Sarah Howe, Sanjana Shastri, Rajia Mim, Justin Feng, Anjali Owens, Susan Domchek, Reed Pyeritz, Bryson Katona, Staci Kallish, Giorgio Sirugo, Joellen Weaver, Linda Fleisher, Kuang-Yi Wen, Elena Elkin, Katherine Nathanson, Daniel Rader, Angela Bradbury

Department of Medical Oncology Faculty Papers

BACKGROUND: There is consensus that research participants should be informed about plans for return of genetic research results. However, best practices for return of results in large biobank and cohort studies do not exist currently, and how best to communicate actionable genetic research results remains unclear. While having genetic counselors disclose these results may be ideal to ensure understanding, minimize distress, and optimize medical follow-up, genetic counselor (GC) workforce shortages and costs are barriers. The RESPECT3 study evaluates whether digital delivery alternatives for pre-disclosure education and return of actionable genetic research results is non-inferior to remote telehealth disclosure by a …


Multiplex Functional Assessment Of Variant Effect In The Retinal Transcription Factor Crx, James Lewis Shepherdson Mar 2026

Multiplex Functional Assessment Of Variant Effect In The Retinal Transcription Factor Crx, James Lewis Shepherdson

Arts & Sciences Graduate Student Theses and Dissertations

The transcription factor Cone-Rod Homeobox (CRX) is a master regulator of photoreceptor cell fate. Sequence variants in CRX can cause Retinitis Pigmentosa, Cone-Rod Dystrophy, and Leber Congenital Amaurosis, all inherited causes of vision loss and blindness. CRX is the only gene implicated in the pathogenesis of all three of these diseases, which present with both rod- and cone-centric phenotypes of varying age of onset and severity. Several CRX variants have been reported to cause severe dominant disease through antimorphic genetic interactions with wild-type CRX, and yet these mutations are adjacent to variants which are benign or only cause mild, recessive …


The Role Of The Virb Ligand Ctp In The Molecular Mechanism Of Transcriptional Anti-Silencing In Shigella Flexneri, Taylor M. Gerson, Monika M A Karney, Helen Wing Feb 2026

The Role Of The Virb Ligand Ctp In The Molecular Mechanism Of Transcriptional Anti-Silencing In Shigella Flexneri, Taylor M. Gerson, Monika M A Karney, Helen Wing

Life Sciences Faculty Research

In bacteria, nucleoid-structuring proteins bind and constrain DNA, often leading to transcriptional silencing. In Shigella spp., the histone-like nucleoid-structuring protein H-NS silences many genes on the large virulence plasmid. Upon a shift to human body temperature, VirB, a DNA-binding protein and key transcriptional regulator of the Shigella virulence cascade, is produced. VirB counteracts H-NS-mediated transcriptional silencing and belongs to a fast-evolving clade of the ParB superfamily. Like other ParB proteins, VirB binds the ligand CTP. While CTP is essential for the anti-silencing activity of VirB, the role of CTP in the mechanism of VirB-dependent anti-silencing has yet to be …


How To Measure, Analyze, And Interpret Age-Related Changes In Caenorhabditis Elegans: Lessons For Mechanistic And Evolutionary Theories Of Aging, Zuzana Kocsisova, Brian M. Egan, Andrea Scharf, Xavier Anderson, Franziska Pohl, Aaron Anderson, Kerry Kornfeld Feb 2026

How To Measure, Analyze, And Interpret Age-Related Changes In Caenorhabditis Elegans: Lessons For Mechanistic And Evolutionary Theories Of Aging, Zuzana Kocsisova, Brian M. Egan, Andrea Scharf, Xavier Anderson, Franziska Pohl, Aaron Anderson, Kerry Kornfeld

Biological Sciences Faculty Research & Creative Works

Aging is characterized by progressive degenerative changes in tissue organization and function, some of which increase the probability of mortality. Major goals of aging research are to elucidate the series of events that cause degenerative changes, and to identify environmental, pharmacological, and genetic factors that influence these changes; this information might lead to new strategies to extend health span and lifespan. Mechanistic studies of aging depend on accurate and precise descriptions of age-related changes, since these descriptions define the aging phenotype. Here, we review studies that describe age-related changes in C. elegans, including measurements of integrated functions such as behavior …


Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles, Vuk Uskoković Jan 2026

Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles, Vuk Uskoković

Administration and Staff Articles and Research

Hydroxyapatite (HAp) is an effective inorganic gene delivery carrier due to its ability to transport genetic cargo across cell membranes, protect it from proteolysis, and enable escape from late endosomes via pH-controlled dissolution. However, its transfection efficiency remains lower than that of viral agents, prompting studies of hybrids with cationic molecules or phases to enhance the gene delivery performance. This study reports on the synthesis of HAp in regular and reverse micellar regions of a ternary microemulsion system composed of cetyltrimethylammonium bromide (CTAB), 1-hexanol and water. Spectroscopic characterization revealed that CTAB headgroups adopted more ordered supramolecular conformations in reverse micelles …


Comparative Evolution Of Caenorhabditis Hermaphrodites, James Francis Kennedy Jan 2026

Comparative Evolution Of Caenorhabditis Hermaphrodites, James Francis Kennedy

Theses and Dissertations

The Caenorhabditis genus produced three independently-evolved hermaphroditic species, C. elegans, C. briggsae, and C. tropicalis. This convergence happened by the independent co-option of male programs for use in a female body. This required two distinct steps: (1) mutations in the sex-determination pathway that activated spermatogenesis in XX animals, and (2) mutations that expressed one of the redundant sperm activation signals in XX animals. My project focused on characterizing how sex-determination genes work in C. briggsae and C. tropicalis. Loss-of-function alleles were used to compare the core sex-determination pathway to that of C. elegans. I found that the somatic sex-determination pathway …


Oer Textbook Review For Human Inheritance - Chromosomes, Genes, And Traits - An Introduction To Genetics, Maria Lazebnik Jan 2026

Oer Textbook Review For Human Inheritance - Chromosomes, Genes, And Traits - An Introduction To Genetics, Maria Lazebnik

Open Educational Resources Publications

This review evaluates the adoption and classroom integration of the open educational resource Chromosomes, Genes, and Traits: An Introduction to Genetics for NAS322: Human Inheritance. The instructor found the OER to be comprehensive, accurate, and well aligned with core human genetics concepts, though some content areas—particularly mutations and certain visual diagrams—required supplementation or revision. The flexibility of the OER allowed for significant reorganization, modular use, and removal of non-human examples to better suit course objectives. Integration into Brightspace improved accessibility, reduced student confusion around textbook requirements, and enhanced engagement through direct linking and built-in quizzes. Compared to the previously used …


The Yeast Checkpoint Kinase Mec1p Functions In Transcription Termination By Facilitating Recruitment Of Pcf11p And Regulating The Torpedo Exonuclease Rat1p, Riddhi Patel Jan 2026

The Yeast Checkpoint Kinase Mec1p Functions In Transcription Termination By Facilitating Recruitment Of Pcf11p And Regulating The Torpedo Exonuclease Rat1p, Riddhi Patel

Theses and Dissertations

My dissertation includes two projects, centered on transcription regulation by checkpoint kinases of the DNA damage response (DDR). The first project focused on the role of checkpoint kinase Mec1p in transcription termination and regulation of the torpedo exonuclease Rat1p. Termination, closely linked with pre-mRNA 3’ processing, dissociates RNA polymerase II (RNAPII) from DNA and releases the nascent RNA transcript. Efficient termination is required for maintaining a pool of RNAPII that is available for re-entry into new transcription cycle. Previous results showed that inactivation of Mec1p in the absence of exogenous genotoxic stress downregulates the efficiency of transcription termination. This study …


Accelerating The Discovery Of The Genetic And Molecular Bases Of Neurodevelopmental Disorders In Vivo Using Breasi-Crispr, Claire Mae Kittock Jan 2026

Accelerating The Discovery Of The Genetic And Molecular Bases Of Neurodevelopmental Disorders In Vivo Using Breasi-Crispr, Claire Mae Kittock

Dissertations and Theses

Many neurodevelopmental disorders occur due to perturbations in prenatal brain development. More genetic variants associated with neurodevelopmental disorders are continuously being identified. However, there is a lack of understanding of the pathogenic mechanisms. Here, we describe a novel application of the technique Breasi-CRISPR in modeling specific patient variants in the embryonic mouse brain. Breasi-CRISPR is a highly efficient system combining in utero electroporation with CRISPR-CAS9 genome editing. We hypothesized that Breasi-CRISPR would be sufficient at inserting patient analogous variants into endogenous loci to be used as a new paradigm for modeling neurodevelopmental disorders. We aimed to test if Breasi-CRISPR could …


Generating A Gfp Reporter Via Crispr To Visualize Ssa4 Export, Aara Khairollahi, Rebecca Adams Jan 2026

Generating A Gfp Reporter Via Crispr To Visualize Ssa4 Export, Aara Khairollahi, Rebecca Adams

SPARK Symposium Presentations

In eukaryotic cells, the transport of mRNA from the nucleus to the cytoplasm is a very regulated process controlled by nuclear pore complexes (NPCs). During stress conditions, such as heat shock, most mRNA export is inhibited in Saccharomyces cerevisiae, yet the transcript for SSA4, a gene responsible for refolding denatured essential proteins, is exported. The mechanism behind this selective export remains unknown. To investigate this, we used CRISPR-Cas9 to generate a reporter strain in which the SSA4 open reading frame was replaced or inserted with green fluorescent protein (GFP). This reporter is designed to produce GFP only under conditions that …


Integrating Genetic Modifier Genotype With Serum Proteomics In Duchenne Muscular Dystrophy Clinical Trials Links Ltbp4 Genetic Modifier To Il-23/Cd93 Pathways In Muscle, Utkarsh J. Dang, Yuan Fang, Daniele Sabbatini, Elena Pegoraro, Luca Bello, Paula R. Clemens, Michela Guglieri, John Van Den Anker, Jesse Damsker, Laura Hagerty, Yetrib Hathout, Michael Ziemba, Lauren Morgenroth, Surajit Bhattacharya, Kanneboyina Nagaraju, Jyoti K. Jaiswal, Eric P. Hoffman Jan 2026

Integrating Genetic Modifier Genotype With Serum Proteomics In Duchenne Muscular Dystrophy Clinical Trials Links Ltbp4 Genetic Modifier To Il-23/Cd93 Pathways In Muscle, Utkarsh J. Dang, Yuan Fang, Daniele Sabbatini, Elena Pegoraro, Luca Bello, Paula R. Clemens, Michela Guglieri, John Van Den Anker, Jesse Damsker, Laura Hagerty, Yetrib Hathout, Michael Ziemba, Lauren Morgenroth, Surajit Bhattacharya, Kanneboyina Nagaraju, Jyoti K. Jaiswal, Eric P. Hoffman

Mathematics & Statistics Faculty Publications

Genetic modifiers of Duchenne muscular dystrophy (DMD) that alter disease severity or response to therapy have been reported using natural history or registry data sets of older corticosteroid-treated patients. We tested associations of genetic modifiers on motor function outcomes in young (4 to <  7 years) steroid naïve clinical trial participants. Participants in clinical trials (VBP15-002/003 [n = 48]; VBP15-004 [n = 121]; DNA available for n = 110) were genotyped for eight published genetic modifier loci, and associations of genotypes with baseline motor function defined via an age-adjusted linear model. Corticosteroid drug response was modeled by genotype-stratified placebo vs. steroid treatment at 12- and 24-weeks posttreatment (mixed model for repeated measures). …


Metabolic Reprogramming Following Mitochondrial Transfer Between Idh2-Mutant Chondrosarcoma Cells And A Normal B-Cell Line, Caleb Wyckoff, Christopher Osgood, Ellen Jing, Michael Stacey Jan 2026

Metabolic Reprogramming Following Mitochondrial Transfer Between Idh2-Mutant Chondrosarcoma Cells And A Normal B-Cell Line, Caleb Wyckoff, Christopher Osgood, Ellen Jing, Michael Stacey

Bioelectrics Publications

Background/Objectives: Chondrosarcoma, glioblastoma, acute myeloid leukemia, chronic lymphocytic leukemia, and cholangiocarcinoma cancers all contain mutations in the gene isocitrate dehydrogenase 2 (IDH2). The mutant IDH2 enzyme metabolizes alpha-ketoglutarate (αKG) into the potent oncometabolite D-2-hydroxyglutarate (D2HG) in the mitochondria of these cancers, leading to altered cellular metabolism. Emerging evidence suggests that mitochondrial transfer between cancer and recipient cells represents an important form of intercellular communication that may influence cellular metabolism. The presence of intercellular TNTs between IDH2-mutant chondrosarcoma cells motivated an investigation into mitochondria-associated physiological changes occurring during an intercellular exchange with immune cells. A mitochondrial transfer is a two-way …


Toward Interpretable Multi-Omics Multimodal Biomedical Artificial Intelligence, Yanjun Lyu Jan 2026

Toward Interpretable Multi-Omics Multimodal Biomedical Artificial Intelligence, Yanjun Lyu

Computer Science and Engineering Dissertations

The complexity of human disease arises from biological processes that unfold across multiple scales, from molecular variation through cellular function, tissue organisation, brain phenotypes, each of which is associated with distinct measurement modalities, regularities, and characteristic. Contemporary biomedical artificial intelligence has brought the opportunity to reveal the complexity with in; however, its methodological default, in which models are trained on most readily available modality, does not adequately engage with the multi-scale connected structure by which biological meaning is constituted. The research area of multi-omics and multi-modal AI for biomedicine remains at an early exploratory stage, and the work presented in …


A Framework For Characterizing The Peripheral Immune Isonome Using Long-Read Single-Cell Rna Sequencing And Its Relevance To Neurological Disease, Patricia Hayes Doyle Jan 2026

A Framework For Characterizing The Peripheral Immune Isonome Using Long-Read Single-Cell Rna Sequencing And Its Relevance To Neurological Disease, Patricia Hayes Doyle

Theses and Dissertations--Neuroscience

Long-read single-cell RNA sequencing provides an opportunity to understand human health and disease at isoform resolution, revealing cellular diversity and disease mechanisms difficult to resolve with bulk or short-read methodologies.

Using a modified PIPseq workflow and computational pipeline adapted for Oxford Nanopore (ONT) sequencing, we profiled isoform usage across immune cells, integrating marker expression and isoform discovery, generating the largest long-read single-cell dataset of human immune cells from a single individual to date. We identified non-canonical protein-coding variants of GZMB and CD3G enriched in unexpected cell types. We also discovered novel transcripts from CMC1 and LYAR with cell-type-specific signatures that …


Computational And Ai Frameworks For Identifying Key Regulatory Genes And Their Target Genes In Plants And Humans, Md Khairul Islam Jan 2026

Computational And Ai Frameworks For Identifying Key Regulatory Genes And Their Target Genes In Plants And Humans, Md Khairul Islam

Dissertations, Master's Theses and Master's Reports

This dissertation presents computational and AI-driven frameworks for identifying key regulatory genes and their downstream targets across plant and human biological systems. Three studies address distinct challenges in genomic regulation using advanced machine learning and bioinformatics approaches.

The first study introduces DyGAF (Dynamic Gene Attention Focus), a dual-attention transformer framework that identifies and ranks disease-relevant biomarker genes by simultaneously modeling independent molecular responses and interdependent regulatory network behavior. Two attention models provide complementary perspectives on gene importance and are fused through a novel combination metric. Applied to COVID-19 nasopharyngeal swab profiles, the attention-weighted representations achieved 94.23% classification accuracy, high sensitivity, …