Open Access. Powered by Scholars. Published by Universities.®

Digital Commons Network™

Open Access. Powered by Scholars. Published by Universities.®

Faculty, Staff and Students Publications

Discipline
Keyword
Publication Year

Articles 1861 - 1890 of 2580

Full-Text Articles in Entire DC Network

Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais Mar 2023

Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais

Faculty, Staff and Students Publications

The regenerative potential of the endometrium is attributed to endometrial stem cells; however, the signaling pathways controlling its regenerative potential remain obscure. In this study, genetic mouse models and endometrial organoids are used to demonstrate that SMAD2/3 signaling controls endometrial regeneration and differentiation. Mice with conditional deletion of SMAD2/3 in the uterine epithelium using Lactoferrin-iCre develop endometrial hyperplasia at 12-weeks and metastatic uterine tumors by 9-months of age. Mechanistic studies in endometrial organoids determine that genetic or pharmacological inhibition of SMAD2/3 signaling disrupts organoid morphology, increases the glandular and secretory cell markers, FOXA2 and MUC1, and alters the genome-wide distribution …


Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel Mar 2023

Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel

Faculty, Staff and Students Publications

Mitochondrial dysfunction is an early event in the pathogenesis of neurologic disorders and aging. Sirtuin 3 (SIRT3) regulates mitochondrial function in response to the cellular environment through the reversible deacetylation of proteins involved in metabolism and reactive oxygen species detoxification. As the primary mitochondrial deacetylase, germline, or peripheral tissue-specific deletion of SIRT3 produces mitochondrial hyperacetylation and the accelerated development of age-related diseases. Given the unique metabolic demands of neurons, the role of SIRT3 in the brain is only beginning to emerge. Using mass spectrometry-based acetylomics, high-resolution respirometry, video-EEG, and cognition testing, we report targeted deletion of SIRT3 from select neurons …


A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan Mar 2023

A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan

Faculty, Staff and Students Publications

Mutations in MeCP2 result in a crippling neurological disease, but we lack a lucid picture of MeCP2's molecular role. Individual transcriptomic studies yield inconsistent differentially expressed genes. To overcome these issues, we demonstrate a methodology to analyze all modern public data. We obtained relevant raw public transcriptomic data from GEO and ENA, then homogeneously processed it (QC, alignment to reference, differential expression analysis). We present a web portal to interactively access the mouse data, and we discovered a commonly perturbed core set of genes that transcends the limitations of any individual study. We then found functionally distinct, consistently up- and …


The Fly Homolog Of Supt16h, A Gene Associated With Neurodevelopmental Disorders, Is Required In A Cell-Autonomous Fashion For Cell Survival, Mengqi Ma, Xi Zhang, Yiming Zheng, Shenzhao Lu, Xueyang Pan, Xiao Mao, Hongling Pan, Hyung-Lok Chung, Hua Wang, Hong Guo, Hugo J Bellen Mar 2023

The Fly Homolog Of Supt16h, A Gene Associated With Neurodevelopmental Disorders, Is Required In A Cell-Autonomous Fashion For Cell Survival, Mengqi Ma, Xi Zhang, Yiming Zheng, Shenzhao Lu, Xueyang Pan, Xiao Mao, Hongling Pan, Hyung-Lok Chung, Hua Wang, Hong Guo, Hugo J Bellen

Faculty, Staff and Students Publications

SUPT16H encodes the large subunit of the FAcilitate Chromatin Transcription (FACT) complex, which functions as a nucleosome organizer during transcription. We identified two individuals from unrelated families carrying de novo missense variants in SUPT16H. The probands exhibit global developmental delay, intellectual disability, epilepsy, facial dysmorphism and brain structural abnormalities. We used Drosophila to characterize two variants: p.T171I and p.G808R. Loss of the fly ortholog, dre4, causes lethality at an early developmental stage. RNAi-mediated knockdown of dre4 in either glia or neurons causes severely reduced eclosion and longevity. Tissue-specific knockdown of dre4 in the eye or wing leads to the loss …


Hyperoxia Disrupts Lung Lymphatic Homeostasis In Neonatal Mice, Nithyapriya Shankar, Shyam Thapa, Amrit Kumar Shrestha, Poonam Sarkar, M Waleed Gaber, Roberto Barrios, Binoy Shivanna Mar 2023

Hyperoxia Disrupts Lung Lymphatic Homeostasis In Neonatal Mice, Nithyapriya Shankar, Shyam Thapa, Amrit Kumar Shrestha, Poonam Sarkar, M Waleed Gaber, Roberto Barrios, Binoy Shivanna

Faculty, Staff and Students Publications

Inflammation causes bronchopulmonary dysplasia (BPD), a common lung disease of preterm infants. One reason this disease lacks specific therapies is the paucity of information on the mechanisms regulating inflammation in developing lungs. We address this gap by characterizing the lymphatic phenotype in an experimental BPD model because lymphatics are major regulators of immune homeostasis. We hypothesized that hyperoxia (HO), a major risk factor for experimental and human BPD, disrupts lymphatic endothelial homeostasis using neonatal mice and human dermal lymphatic endothelial cells (HDLECs). Exposure to 70% O2 for 24–72 h decreased the expression of prospero homeobox 1 (Prox1) and …


A Tripartite View Of The Posterior Cingulate Cortex, Brett L Foster, Seth R Koslov, Lyndsey Aponik-Gremillion, Megan E Monko, Benjamin Y Hayden, Sarah R Heilbronner Mar 2023

A Tripartite View Of The Posterior Cingulate Cortex, Brett L Foster, Seth R Koslov, Lyndsey Aponik-Gremillion, Megan E Monko, Benjamin Y Hayden, Sarah R Heilbronner

Faculty, Staff and Students Publications

The posterior cingulate cortex (PCC) is one of the least understood regions of the cerebral cortex. By contrast, the anterior cingulate cortex has been the subject of intensive investigation in humans and model animal systems, leading to detailed behavioural and computational theoretical accounts of its function. The time is right for similar progress to be made in the PCC given its unique anatomical and physiological properties and demonstrably important contributions to higher cognitive functions and brain diseases. Here, we describe recent progress in understanding the PCC, with a focus on convergent findings across species and techniques that lay a foundation …


Interaction Between Tumor Cell Tnfr2 And Monocyte Membrane-Bound Tnf-Α Triggers Tumorigenic Inflammation In Neuroblastoma, Julie A Tomolonis, Xin Xu, Kshiti H Dholakia, Chunchao Zhang, Linjie Guo, Amy N Courtney, Siyue Wang, Julien Balzeau, Gabriel A Barragán, Gengwen Tian, Erica J Di Pierro, Leonid S Metelitsa Mar 2023

Interaction Between Tumor Cell Tnfr2 And Monocyte Membrane-Bound Tnf-Α Triggers Tumorigenic Inflammation In Neuroblastoma, Julie A Tomolonis, Xin Xu, Kshiti H Dholakia, Chunchao Zhang, Linjie Guo, Amy N Courtney, Siyue Wang, Julien Balzeau, Gabriel A Barragán, Gengwen Tian, Erica J Di Pierro, Leonid S Metelitsa

Faculty, Staff and Students Publications

BACKGROUND: Tumor progression and resistance to therapy in children with neuroblastoma (NB), a common childhood cancer, are often associated with infiltration of monocytes and macrophages that produce inflammatory cytokines. However, the mechanism by which tumor-supportive inflammation is initiated and propagated remains unknown. Here, we describe a novel protumorigenic circuit between NB cells and monocytes that is triggered and sustained by tumor necrosis factor alpha (TNF-α).

METHODS: We used NB knockouts (KOs) of TNF-α and

RESULTS: We found that NB expression of TNFR2 and monocyte membrane-bound tumor necrosis factor alpha is required for monocyte activation and interleukin (IL)-6 production, while NB …


Thoracolumbar Scoliosis In Pediatric Patients With Loeys-Dietz Syndrome: A Case Series, Melissa A Lopresti, Prazwal Athukuri, A Basit Khan, Marc Prablek, Rajan Patel, Rory Mayer, David F Bauer, Frank T Gerow, Shaine A Morris, Sandi Lam, Vijay Ravindra Mar 2023

Thoracolumbar Scoliosis In Pediatric Patients With Loeys-Dietz Syndrome: A Case Series, Melissa A Lopresti, Prazwal Athukuri, A Basit Khan, Marc Prablek, Rajan Patel, Rory Mayer, David F Bauer, Frank T Gerow, Shaine A Morris, Sandi Lam, Vijay Ravindra

Faculty, Staff and Students Publications

Background Loeys-Dietz syndrome (LDS) is a genetic connective tissue disorder that predominantly affects cardiovascular, skeletal, and craniofacial structures. Associated thoracolumbar scoliosis in LDS can be challenging to manage, though other etiologies of pediatric scoliosis have better-defined management guidelines. We examined our institutional experience regarding the treatment of pediatric patients with LDS and scoliosis. Methodology In this retrospective study, all patients seen at our pediatric tertiary care center from 2004 through 2018 with a diagnosis of LDS were reviewed, and those with radiographic diagnoses of scoliosis (full-length scoliosis X-rays) were included. Demographic, clinical, and radiographic parameters were collected, and management strategies …


Profiling Disease-Selective Drug Targets: From Proteomics To Ligandomics, Prabuddha Waduge, Hong Tian, Keith A Webster, Wei Li Mar 2023

Profiling Disease-Selective Drug Targets: From Proteomics To Ligandomics, Prabuddha Waduge, Hong Tian, Keith A Webster, Wei Li

Faculty, Staff and Students Publications

Despite advancements in omics technologies, including proteomics and transcriptomics, identification of therapeutic targets remains challenging. Ligandomics recently emerged as a unique technology of functional proteomics for global profiling of cell-binding protein ligands. When applied to diseased versus healthy vasculatures, comparative ligandomics systematically maps novel disease-restricted ligands that allow selective targeting of pathological but not physiological pathways, providing high efficacy with intrinsic safety. In this review, we discuss the potential of cellular ligands as therapeutic targets and summarize the development of ligandomics. We further compare the advantages and limitations of different omics technologies for drug target discovery and discuss target selection …


Glioma Epileptiform Activity And Progression Are Driven By Igsf3-Mediated Potassium Dysregulation, Rachel Naomi Curry, Isamu Aiba, Jochen Meyer, Brittney Lozzi, Yeunjung Ko, Malcolm Ford Mcdonald, Anna Rosenbaum, Alexis Cervantes, Emmet Huang-Hobbs, Carolina Cocito, Jeffrey Peter Greenfield, Ali Jalali, Jay Gavvala, Carrie Mohila, Akdes Serin Harmanci, Jeffrey Noebels, Ganesh Rao, Benjamin Deneen Mar 2023

Glioma Epileptiform Activity And Progression Are Driven By Igsf3-Mediated Potassium Dysregulation, Rachel Naomi Curry, Isamu Aiba, Jochen Meyer, Brittney Lozzi, Yeunjung Ko, Malcolm Ford Mcdonald, Anna Rosenbaum, Alexis Cervantes, Emmet Huang-Hobbs, Carolina Cocito, Jeffrey Peter Greenfield, Ali Jalali, Jay Gavvala, Carrie Mohila, Akdes Serin Harmanci, Jeffrey Noebels, Ganesh Rao, Benjamin Deneen

Faculty, Staff and Students Publications

Seizures are a frequent pathophysiological feature of malignant glioma. Recent studies implicate peritumoral synaptic dysregulation as a driver of brain hyperactivity and tumor progression; however, the molecular mechanisms that govern these phenomena remain elusive. Using scRNA-seq and intraoperative patient ECoG recordings, we show that tumors from seizure patients are enriched for gene signatures regulating synapse formation. Employing a human-to-mouse in vivo functionalization pipeline to screen these genes, we identify IGSF3 as a mediator of glioma progression and dysregulated neural circuitry that manifests as spreading depolarization (SD). Mechanistically, we discover that IGSF3 interacts with Kir4.1 to suppress potassium buffering and found …


Ectopic Lymphoid Structures In The Aged Lacrimal Glands, Jeremias G Galletti, Kaitlin K Scholand, Claudia M Trujillo-Vargas, Zhiyuan Yu, Olivier Mauduit, Vanessa Delcroix, Helen P Makarenkova, Cintia S De Paiva Mar 2023

Ectopic Lymphoid Structures In The Aged Lacrimal Glands, Jeremias G Galletti, Kaitlin K Scholand, Claudia M Trujillo-Vargas, Zhiyuan Yu, Olivier Mauduit, Vanessa Delcroix, Helen P Makarenkova, Cintia S De Paiva

Faculty, Staff and Students Publications

Aging is a complex biological process in which many organs are pathologically affected. We previously reported that aged C57BL/6J had increased lacrimal gland (LG) lymphoid infiltrates that suggest ectopic lymphoid structures. However, these ectopic lymphoid structures have not been fully investigated. Using C57BL/6J mice of different ages, we analyzed the transcriptome of aged murine LGs and characterized the B and T cell populations. Age-related changes in the LG include increased differentially expressed genes associated with B and T cell activation, germinal center formation, and infiltration by marginal zone-like B cells. We also identified an age-related increase in B1


Fibroblast Growth Factor 19 Secretion And Function In Perinatal Development, Caitlin Vonderohe, Gregory Guthrie, Douglas G Burrin Mar 2023

Fibroblast Growth Factor 19 Secretion And Function In Perinatal Development, Caitlin Vonderohe, Gregory Guthrie, Douglas G Burrin

Faculty, Staff and Students Publications

Limited work has focused on fibroblast growth factor-19 (FGF19) secretion and function in the perinatal period. FGF19 is a potent growth factor that coordinates development of the brain, eye, inner ear, and skeletal system in the embryo, but after birth, FGF19 transitions to be an endocrine regulator of the classic pathway of hepatic bile acid synthesis. FGF19 has emerged as a mediator of metabolism and bile acid synthesis in aged animals and adults in the context of liver disease and metabolic dysfunction. FGF19 has also been shown to have systemic insulin-sensitizing and skeletal muscle hypertrophic effects when induced or supplemented …


The Tumor-Immune Ecosystem In Shaping Metastasis, Yang Gao, Jeffrey M Rosen, Xiang H-F Zhang Mar 2023

The Tumor-Immune Ecosystem In Shaping Metastasis, Yang Gao, Jeffrey M Rosen, Xiang H-F Zhang

Faculty, Staff and Students Publications

A better understanding of the mechanisms regulating cancer metastasis is critical to develop new therapies and decrease mortality. Emerging evidence suggests that the interactions between tumor cells and the host immune system play important roles in establishing metastasis. Tumor cells are able to recruit immune cells, which in turn promotes tumor cell invasion, intravasation, survival in circulation, extravasation, and colonization in different organs. The tumor-host immunological interactions also generate a premetastatic niche in distant organs which facilitates metastasis. In this review, we summarize the recent findings on how tumor cells and immune cells regulate each other to coevolve and promote …


A Randomized, Controlled Phase 1b Trial Of The Sm-Tsp-2 Vaccine For Intestinal Schistosomiasis In Healthy Brazilian Adults Living In An Endemic Area, David J Diemert, Rodrigo Correa-Oliveira, Carlo Geraldo Fraga, Frederico Talles, Marcella Rezende Silva, Shital M Patel, Shirley Galbiati, Jessie K Kennedy, Jordan S Lundeen, Maria Flavia Gazzinelli, Guangzhao Li, Lara Hoeweler, Gregory A Deye, Maria Elena Bottazzi, Peter J Hotez, Hana M El Sahly, Wendy A Keitel, Jeffrey Bethony, Robert L Atmar Mar 2023

A Randomized, Controlled Phase 1b Trial Of The Sm-Tsp-2 Vaccine For Intestinal Schistosomiasis In Healthy Brazilian Adults Living In An Endemic Area, David J Diemert, Rodrigo Correa-Oliveira, Carlo Geraldo Fraga, Frederico Talles, Marcella Rezende Silva, Shital M Patel, Shirley Galbiati, Jessie K Kennedy, Jordan S Lundeen, Maria Flavia Gazzinelli, Guangzhao Li, Lara Hoeweler, Gregory A Deye, Maria Elena Bottazzi, Peter J Hotez, Hana M El Sahly, Wendy A Keitel, Jeffrey Bethony, Robert L Atmar

Faculty, Staff and Students Publications

BACKGROUND: Recombinant Schistosoma mansoni Tetraspanin-2 formulated on Alhydrogel (Sm-TSP-2/Alhydrogel) is being developed to prevent intestinal and hepatic disease caused by S. mansoni. The tegumentary Sm-TSP-2 antigen was selected based on its unique recognition by cytophilic antibodies in putatively immune individuals living in areas of ongoing S. mansoni transmission in Brazil, and preclinical studies in which vaccination with Sm-TSP-2 protected mice following infection challenge.

METHODS: A randomized, observer-blind, controlled, Phase 1b clinical trial was conducted in 60 healthy adults living in a region of Brazil with ongoing S. mansoni transmission. In each cohort of 20 participants, 16 were randomized to receive …


Tubular-Specific Expression Of Hiv Protein Vpr Leads To Severe Tubulointerstitial Damage Accompanied By Progressive Fibrosis And Cystic Development, Yuqiang Chen, Ya Chen, Jia Fu, Zeguo Sun, Huilin Li, Wenzhen Xiao, Jing E, Benjamin Y Lo, Niansong Wang, Weijia Zhang, Mary E Klotman, Paul E Klotman, Jeffrey B Kopp, Vivette D D'Agati, John Cijiang He, Kyung Lee Mar 2023

Tubular-Specific Expression Of Hiv Protein Vpr Leads To Severe Tubulointerstitial Damage Accompanied By Progressive Fibrosis And Cystic Development, Yuqiang Chen, Ya Chen, Jia Fu, Zeguo Sun, Huilin Li, Wenzhen Xiao, Jing E, Benjamin Y Lo, Niansong Wang, Weijia Zhang, Mary E Klotman, Paul E Klotman, Jeffrey B Kopp, Vivette D D'Agati, John Cijiang He, Kyung Lee

Faculty, Staff and Students Publications

Chronic kidney disease (CKD) is a common cause of morbidity in human immunodeficiency virus (HIV)-positive individuals. HIV infection leads to a wide spectrum of kidney cell damage, including tubular epithelial cell (TEC) injury. Among the HIV-1 proteins, the pathologic effects of viral protein R (Vpr) are well established and include DNA damage response, cell cycle arrest, and cell death. Several in vitro studies have unraveled the molecular pathways driving the cytopathic effects of Vpr in tubular epithelial cells. However, the in vivo effects of Vpr on tubular injury and CKD pathogenesis have not been thoroughly investigated. Here, we use a …


Long-Chain Polyunsaturated Lipids Associated With Responsiveness To Anti-Pd-1 Therapy Are Colocalized With Immune Infiltrates In The Tumor Microenvironment, Mary E King, Robert Yuan, Jeremy Chen, Komal Pradhan, Isabel Sariol, Shirley Li, Ashish Chakraborty, Oscar Ekpenyong, Jennifer H Yearley, Janica C Wong, Luis Zúñiga, Daniela Tomazela, Maribel Beaumont, Jin-Hwan Han, Livia S Eberlin Mar 2023

Long-Chain Polyunsaturated Lipids Associated With Responsiveness To Anti-Pd-1 Therapy Are Colocalized With Immune Infiltrates In The Tumor Microenvironment, Mary E King, Robert Yuan, Jeremy Chen, Komal Pradhan, Isabel Sariol, Shirley Li, Ashish Chakraborty, Oscar Ekpenyong, Jennifer H Yearley, Janica C Wong, Luis Zúñiga, Daniela Tomazela, Maribel Beaumont, Jin-Hwan Han, Livia S Eberlin

Faculty, Staff and Students Publications

The programmed cell death protein-1 (PD-1) is highly expressed on the surface of antigen-specific exhausted T cells and, upon interaction with its ligand PD-L1, can result in inhibition of the immune response. Anti-PD-1 treatment has been shown to extend survival and result in durable responses in several cancers, yet only a subset of patients benefit from this therapy. Despite the implication of metabolic alteration following cancer immunotherapy, mechanistic associations between antitumor responses and metabolic changes remain unclear. Here, we used desorption electrospray ionization mass spectrometry imaging to examine the lipid profiles of tumor tissue from three syngeneic murine models with …


Bacteremia, Liver Injury, And Pneumonitis: Strongyloides Unleashed By A Supplement, Emily Y Xiao, Robert L Pecha, Zaven Sargsyan Mar 2023

Bacteremia, Liver Injury, And Pneumonitis: Strongyloides Unleashed By A Supplement, Emily Y Xiao, Robert L Pecha, Zaven Sargsyan

Faculty, Staff and Students Publications

No abstract provided.


Sinus Node Dysfunction: Current Understanding And Future Directions, Pavan Manoj, Jitae A Kim, Stephanie Kim, Tingting Li, Maham Sewani, Mihail G Chelu, Na Li Mar 2023

Sinus Node Dysfunction: Current Understanding And Future Directions, Pavan Manoj, Jitae A Kim, Stephanie Kim, Tingting Li, Maham Sewani, Mihail G Chelu, Na Li

Faculty, Staff and Students Publications

The sinoatrial node (SAN) is the primary pacemaker of the heart. Normal SAN function is crucial in maintaining proper cardiac rhythm and contraction. Sinus node dysfunction (SND) is due to abnormalities within the SAN, which can affect the heartbeat frequency, regularity, and the propagation of electrical pulses through the cardiac conduction system. As a result, SND often increases the risk of cardiac arrhythmias. SND is most commonly seen as a disease of the elderly given the role of degenerative fibrosis as well as other age-dependent changes in its pathogenesis. Despite the prevalence of SND, current treatment is limited to pacemaker …


Inflammatory Signalling In Atrial Cardiomyocytes: A Novel Unifying Principle In Atrial Fibrillation Pathophysiology, Dobromir Dobrev, Jordi Heijman, Roddy Hiram, Na Li, Stanley Nattel Mar 2023

Inflammatory Signalling In Atrial Cardiomyocytes: A Novel Unifying Principle In Atrial Fibrillation Pathophysiology, Dobromir Dobrev, Jordi Heijman, Roddy Hiram, Na Li, Stanley Nattel

Faculty, Staff and Students Publications

Inflammation has been implicated in atrial fibrillation (AF), a very common and clinically significant cardiac rhythm disturbance, but its precise role remains poorly understood. Work performed over the past 5 years suggests that atrial cardiomyocytes have inflammatory signalling machinery - in particular, components of the NLRP3 (NACHT-, LRR- and pyrin domain-containing 3) inflammasome - that is activated in animal models and patients with AF. Furthermore, work in animal models suggests that NLRP3 inflammasome activation in atrial cardiomyocytes might be a sufficient and necessary condition for AF occurrence. In this Review, we evaluate the evidence for the role and pathophysiological significance …


Apoptosis Of Hematopoietic Stem Cells Contributes To Bone Marrow Suppression Following Chimeric Antigen Receptor T Cell Therapy, Jay A Read, Rayne H Rouce, Feiyan Mo, Maksim Mamonkin, Katherine Y King Mar 2023

Apoptosis Of Hematopoietic Stem Cells Contributes To Bone Marrow Suppression Following Chimeric Antigen Receptor T Cell Therapy, Jay A Read, Rayne H Rouce, Feiyan Mo, Maksim Mamonkin, Katherine Y King

Faculty, Staff and Students Publications

Background: CAR-T therapy represents a revolutionary treatment for patients with relapsed/refractory hematologic malignancies. However, its use can result in significant toxicities, including cytokine release syndrome (CRS), a potentially life-threatening clinical syndrome resulting from release of pro-inflammatory cytokines upon T cell activation. In addition, patients who develop CRS often experience prolonged cytopenias and those with the most severe CRS also have the greatest delay in full marrow recovery. While an association between CRS and delayed bone marrow recovery has been established, the precise mechanism underlying this phenomenon remains unknown.

Objective: To test our hypothesis that delayed bone marrow recovery following CAR-T …


Urine Complement Factor Ba Is Associated With Aki In Critically Ill Children, Erin K Stenson, Charles L Edelstein, Zhiying You, Shinobu Miyazaki-Anzai, Joshua M Thurman, Bradley P Dixon, Michael Zappitelli, Stuart L Goldstein, Ayse Akcan Arikan, Jessica Kendrick Mar 2023

Urine Complement Factor Ba Is Associated With Aki In Critically Ill Children, Erin K Stenson, Charles L Edelstein, Zhiying You, Shinobu Miyazaki-Anzai, Joshua M Thurman, Bradley P Dixon, Michael Zappitelli, Stuart L Goldstein, Ayse Akcan Arikan, Jessica Kendrick

Faculty, Staff and Students Publications

KEY POINTS: Complement activation, specifically factor B, is implicated in AKI pathogenesis in animal models. Urine Ba (an activation fragment of factor B) was significantly higher in critically ill children with stage 3 AKI and sepsis-AKI. If larger studies show similar association between urine Ba and AKI severity, clinical trials of factor B inhibition are warranted.

BACKGROUND:: Critically ill children with AKI have high morbidity and mortality rates and lack treatment options. Complement activation is implicated in AKI pathogenesis, which could be treated with complement-targeted therapeutics. We assessed for an association between urine Ba, an activation fragment of the alternative …


Longitudinal Evaluation Of Serum Micrornas As Biomarkers For Neuroblastoma Burden And Therapeutic P53 Reactivation, Alan Van Goethem, Jill Deleu, Nurten Yigit, Celine Everaert, Myrthala Moreno-Smith, Sanjeev A Vasudevan, Fjoralba Zeka, Fleur Demuynck, Eveline Barbieri, Frank Speleman, Pieter Mestdagh, Jason Shohet, Jo Vandesompele, Tom Van Maerken Mar 2023

Longitudinal Evaluation Of Serum Micrornas As Biomarkers For Neuroblastoma Burden And Therapeutic P53 Reactivation, Alan Van Goethem, Jill Deleu, Nurten Yigit, Celine Everaert, Myrthala Moreno-Smith, Sanjeev A Vasudevan, Fjoralba Zeka, Fleur Demuynck, Eveline Barbieri, Frank Speleman, Pieter Mestdagh, Jason Shohet, Jo Vandesompele, Tom Van Maerken

Faculty, Staff and Students Publications

Accurate assessment of treatment response and residual disease is indispensable for the evaluation of cancer treatment efficacy. However, performing tissue biopsies for longitudinal follow-up poses a major challenge in the management of solid tumours like neuroblastoma. In the present study, we evaluated whether circulating miRNAs are suitable to monitor neuroblastoma tumour burden and whether treatment-induced changes of miRNA abundance in the tumour are detectable in serum. We performed small RNA sequencing on longitudinally collected serum samples from mice carrying orthotopic neuroblastoma xenografts that were exposed to treatment with idasanutlin or temsirolimus. We identified 57 serum miRNAs to be differentially expressed …


Does The Potocki-Lupski Syndrome Convey The Autism Spectrum Disorder Phenotype? Case Report And Scoping Review, Oksana I Talantseva, Galina V Portnova, Raisa S Romanova, Daria A Martynova, Olga V Sysoeva, Elena L Grigorenko Feb 2023

Does The Potocki-Lupski Syndrome Convey The Autism Spectrum Disorder Phenotype? Case Report And Scoping Review, Oksana I Talantseva, Galina V Portnova, Raisa S Romanova, Daria A Martynova, Olga V Sysoeva, Elena L Grigorenko

Faculty, Staff and Students Publications

Potocki-Lupski Syndrome (PTLS) is a rare condition associated with a duplication of 17p11.2 that may underlie a wide range of congenital abnormalities and heterogeneous behavioral phenotypes. Along with developmental delay and intellectual disability, autism-specific traits are often reported to be the most common among patients with PTLS. To contribute to the discussion of the role of autism spectrum disorder (ASD) in the PTLS phenotype, we present a case of a female adolescent with a de novo dup(17) (p11.2p11.2) without ASD features, focusing on in-depth clinical, behavioral, and electrophysiological (EEG) evaluations. Among EEG features, we found the atypical peak-slow wave patterns …


Excess Folic Acid Intake Increases Dna De Novo Point Mutations, Xuanye Cao, Jianfeng Xu, Ying L Lin, Robert M Cabrera, Qiuying Chen, Chaofan Zhang, John W Steele, Xiao Han, Steven S Gross, Bogdan J Wlodarczyk, James R Lupski, Wei Li, Hongyan Wang, Richard H Finnell, Yunping Lei Feb 2023

Excess Folic Acid Intake Increases Dna De Novo Point Mutations, Xuanye Cao, Jianfeng Xu, Ying L Lin, Robert M Cabrera, Qiuying Chen, Chaofan Zhang, John W Steele, Xiao Han, Steven S Gross, Bogdan J Wlodarczyk, James R Lupski, Wei Li, Hongyan Wang, Richard H Finnell, Yunping Lei

Faculty, Staff and Students Publications

No abstract provided.


Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi Feb 2023

Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi

Faculty, Staff and Students Publications

Loss- and gain-of-function of MeCP2 causes Rett syndrome (RTT) and MECP2 duplication syndrome (MDS), respectively. MeCP2 binds methyl-cytosines to finely tune gene expression in the brain, but identifying genes robustly regulated by MeCP2 has been difficult. By integrating multiple transcriptomics datasets, we revealed that MeCP2 finely regulates growth differentiation factor 11 (Gdf11). Gdf11 is down-regulated in RTT mouse models and, conversely, up-regulated in MDS mouse models. Strikingly, genetically normalizing Gdf11 dosage levels improved several behavioral deficits in a mouse model of MDS. Next, we discovered that losing one copy of Gdf11 alone was sufficient to cause multiple neurobehavioral …


Uncovering Novel Regulators Of Memory Using C Elegans Genetic And Genomic Analysis, Katie L Brandel-Ankrapp, Rachel N Arey Feb 2023

Uncovering Novel Regulators Of Memory Using C Elegans Genetic And Genomic Analysis, Katie L Brandel-Ankrapp, Rachel N Arey

Faculty, Staff and Students Publications

How organisms learn and encode memory is an outstanding question in neuroscience research. Specifically, how memories are acquired and consolidated at the level of molecular and gene pathways remains unclear. In addition, memory is disrupted in a wide variety of neurological disorders; therefore, discovering molecular regulators of memory may reveal therapeutic targets for these disorders. C. elegans are an excellent model to uncover molecular and genetic regulators of memory. Indeed, the nematode's invariant neuronal lineage, fully mapped genome, and conserved associative behaviors have allowed the development of a breadth of genetic and genomic tools to examine learning and memory. In …


Recent Advances In Psychopharmacology: From Bench To Bedside Novel Trends In Schizophrenia, Asim A Shah, Syed Z Iqbal Feb 2023

Recent Advances In Psychopharmacology: From Bench To Bedside Novel Trends In Schizophrenia, Asim A Shah, Syed Z Iqbal

Faculty, Staff and Students Publications

Research in the field of psychopharmacology is ongoing to develop novel compounds which can revolutionize the treatment of psychiatric disorders. The concept of bench-to-bedside is a tedious process, transforming the initial research performed in the laboratories into novel treatment options. Schizophrenia (SCZ) is a chronic psychiatric illness with significant morbidity and mortality. SCZ not only presents with psychotic symptoms including hallucinations and delusions but also with negative and cognitive symptoms. The negative symptoms include the diminished ability to express emotions, loss of pleasure, and motivation with minimal social interactions. Conventional antipsychotics primarily target positive symptoms with minimal therapeutic benefits for …


Macroh2a Histone Variants Modulate Enhancer Activity To Repress Oncogenic Programs And Cellular Reprogramming, Wazim Mohammed Ismail, Amelia Mazzone, Flavia G Ghiraldini, Jagneet Kaur, Manvir Bains, Amik Munankarmy, Monique S Bagwell, Stephanie L Safgren, John Moore-Weiss, Marina Buciuc, Lynzie Shimp, Kelsey A Leach, Luis F Duarte, Chandandeep S Nagi, Saul Carcamo, Chi-Yeh Chung, Dan Hasson, Neda Dadgar, Jian Zhong, Jeong-Heon Lee, Fergus J Couch, Alexander Revzin, Tamas Ordog, Emily Bernstein, Alexandre Gaspar-Maia Feb 2023

Macroh2a Histone Variants Modulate Enhancer Activity To Repress Oncogenic Programs And Cellular Reprogramming, Wazim Mohammed Ismail, Amelia Mazzone, Flavia G Ghiraldini, Jagneet Kaur, Manvir Bains, Amik Munankarmy, Monique S Bagwell, Stephanie L Safgren, John Moore-Weiss, Marina Buciuc, Lynzie Shimp, Kelsey A Leach, Luis F Duarte, Chandandeep S Nagi, Saul Carcamo, Chi-Yeh Chung, Dan Hasson, Neda Dadgar, Jian Zhong, Jeong-Heon Lee, Fergus J Couch, Alexander Revzin, Tamas Ordog, Emily Bernstein, Alexandre Gaspar-Maia

Faculty, Staff and Students Publications

Considerable efforts have been made to characterize active enhancer elements, which can be annotated by accessible chromatin and H3 lysine 27 acetylation (H3K27ac). However, apart from poised enhancers that are observed in early stages of development and putative silencers, the functional significance of cis-regulatory elements lacking H3K27ac is poorly understood. Here we show that macroH2A histone variants mark a subset of enhancers in normal and cancer cells, which we coined 'macro-Bound Enhancers', that modulate enhancer activity. We find macroH2A variants localized at enhancer elements that are devoid of H3K27ac in a cell type-specific manner, indicating a role for macroH2A at …


Asprosin Promotes Feeding Through Sk Channel-Dependent Activation Of Agrp Neurons, Bing Feng, Hesong Liu, Ila Mishra, Clemens Duerrschmid, Peiyu Gao, Pingwen Xu, Chunmei Wang, Yanlin He Feb 2023

Asprosin Promotes Feeding Through Sk Channel-Dependent Activation Of Agrp Neurons, Bing Feng, Hesong Liu, Ila Mishra, Clemens Duerrschmid, Peiyu Gao, Pingwen Xu, Chunmei Wang, Yanlin He

Faculty, Staff and Students Publications

Asprosin, a recently identified adipokine, activates agouti-related peptide (AgRP) neurons in the arcuate nucleus of the hypothalamus (ARH) via binding to protein tyrosine phosphatase receptor δ (Ptprd) to increase food intake. However, the intracellular mechanisms responsible for asprosin/Ptprd-mediated activation of AgRPARH neurons remain unknown. Here, we demonstrate that the small-conductance calcium-activated potassium (SK) channel is required for the stimulatory effects of asprosin/Ptprd on AgRPARH neurons. Specifically, we found that deficiency or elevation of circulating asprosin increased or decreased the SK current in AgRPARH neurons, respectively. AgRPARH-specific deletion of SK3 (an SK channel subtype highly expressed in AgRPARH neurons) blocked asprosin-induced …


Alternative Splicing Mediates The Compensatory Upregulation Of Mbnl2 Upon Mbnl1 Loss-Of-Function, Larissa Nitschke, Rong-Chi Hu, Andrew N Miller, Lathan Lucas, Thomas A Cooper Feb 2023

Alternative Splicing Mediates The Compensatory Upregulation Of Mbnl2 Upon Mbnl1 Loss-Of-Function, Larissa Nitschke, Rong-Chi Hu, Andrew N Miller, Lathan Lucas, Thomas A Cooper

Faculty, Staff and Students Publications

Loss of gene function can be compensated by paralogs with redundant functions. An example of such compensation are the paralogs of the Muscleblind-Like (MBNL) family of RNA-binding proteins that are sequestered and lose their function in Myotonic Dystrophy Type 1 (DM1). Loss of MBNL1 increases the levels of its paralog MBNL2 in tissues where Mbnl2 expression is low, allowing MBNL2 to functionally compensate for MBNL1 loss. Here, we show that loss of MBNL1 increases the inclusion of Mbnl2 exon 6 and exon 9. We find that inclusion of Mbnl2 exon 6 increases the translocation of MBNL2 to the nucleus, while …