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Articles 1591 - 1620 of 7166
Full-Text Articles in Entire DC Network
Alzheimer’S Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Matea Pavešković, Ruth B De-Paula, Shamsideen A Ojelade, Evelyne K Tantry, Mikhail Y Kochukov, Suyang Bao, Surabi Veeraragavan, Alexandra R Garza, Snigdha Srivastava, Si-Yuan Song, Masashi Fujita, Duc M Duong, David A Bennett, Philip L De Jager, Nicholas T Seyfried, Mary E Dickinson, Jason D Heaney, Benjamin R Arenkiel, Joshua M Shulman
Alzheimer’S Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Matea Pavešković, Ruth B De-Paula, Shamsideen A Ojelade, Evelyne K Tantry, Mikhail Y Kochukov, Suyang Bao, Surabi Veeraragavan, Alexandra R Garza, Snigdha Srivastava, Si-Yuan Song, Masashi Fujita, Duc M Duong, David A Bennett, Philip L De Jager, Nicholas T Seyfried, Mary E Dickinson, Jason D Heaney, Benjamin R Arenkiel, Joshua M Shulman
Duncan NRI Faculty and Staff Publications
CD2-Associated protein (CD2AP) is a candidate susceptibility gene for Alzheimer's disease, but its role in the mammalian central nervous system remains largely unknown. We show that CD2AP protein is broadly expressed in the adult mouse brain, including within cortical and hippocampal neurons, where it is detected at pre-synaptic terminals. Deletion of Cd2ap altered dendritic branching and spine density, and impaired ubiquitin-proteasome system activity. Moreover, in mice harboring either one or two copies of a germline Cd2ap null allele, we noted increased paired-pulse facilitation at hippocampal Schaffer-collateral synapses, consistent with a haploinsufficient requirement for pre-synaptic release. Whereas conditional Cd2ap knockout in …
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, William A Molina Arocho, Tsun Ki Jerrick To, Samir Devalaraja, Irene S Molina, Jason Shoush, Hesham Mohei, Li Zhai, Md Naushad Akhtar, Veena Kochat, Emre Arslan, Alexander J Lazar, Khalida Wani, William P Israel, Zhan Zhang, Venkata S Chaluvadi, Robert J Norgard, Ying Liu, Ashley M Fuller, Mai T Dang, Robert E Roses, Giorgos C Karakousis, John T Miura, Douglas L Fraker, T S Karin Eisinger-Mathason, M Celeste Simon, Kristy Weber, Kai Tan, Yi Fan, Kunal Rai, Malay Haldar
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, William A Molina Arocho, Tsun Ki Jerrick To, Samir Devalaraja, Irene S Molina, Jason Shoush, Hesham Mohei, Li Zhai, Md Naushad Akhtar, Veena Kochat, Emre Arslan, Alexander J Lazar, Khalida Wani, William P Israel, Zhan Zhang, Venkata S Chaluvadi, Robert J Norgard, Ying Liu, Ashley M Fuller, Mai T Dang, Robert E Roses, Giorgos C Karakousis, John T Miura, Douglas L Fraker, T S Karin Eisinger-Mathason, M Celeste Simon, Kristy Weber, Kai Tan, Yi Fan, Kunal Rai, Malay Haldar
Faculty, Staff and Student Publications
We define a subset of macrophages in the tumor microenvironment characterized by high intracellular iron and enrichment of heme and iron metabolism genes. These iron-rich tumor-associated macrophages (iTAMs) supported angiogenesis and immunosuppression in the tumor microenvironment and were conserved between mice and humans. iTAMs comprise two additional subsets based on gene expression profile and location-perivascular (pviTAM) and stromal (stiTAM). We identified the endothelin receptor type B (Ednrb) as a specific marker of iTAMs and found myeloid-specific deletion of Ednrb to reduce tumor growth and vascular density. Further studies identified the transcription factor Bach1 as a repressor of the iTAM transcriptional …
Conserved Signaling Modules Regulate Filamentous Growth In Fungi: A Model For Eukaryotic Cell Differentiation, Matthew D Vandermeulen, Michael C Lorenz, Paul J Cullen
Conserved Signaling Modules Regulate Filamentous Growth In Fungi: A Model For Eukaryotic Cell Differentiation, Matthew D Vandermeulen, Michael C Lorenz, Paul J Cullen
Faculty, Staff and Student Publications
Eukaryotic organisms are composed of different cell types with defined shapes and functions. Specific cell types are produced by the process of cell differentiation, which is regulated by signal transduction pathways. Signaling pathways regulate cell differentiation by sensing cues and controlling the expression of target genes whose products generate cell types with specific attributes. In studying how cells differentiate, fungi have proved valuable models because of their ease of genetic manipulation and striking cell morphologies. Many fungal species undergo filamentous growth-a specialized growth pattern where cells produce elongated tube-like projections. Filamentous growth promotes expansion into new environments, including invasion into …
Trβ Activation Confers At2-To-At1 Cell Differentiation And Anti-Fibrosis During Lung Repair Via Klf2 And Cebpa, Xin Pan, Lan Wang, Juntang Yang, Yingge Li, Min Xu, Chenxi Liang, Lulu Liu, Zhongzheng Li, Cong Xia, Jiaojiao Pang, Mengyuan Wang, Meng Li, Saiya Guo, Peishuo Yan, Chen Ding, Ivan O Rosas, Guoying Yu
Trβ Activation Confers At2-To-At1 Cell Differentiation And Anti-Fibrosis During Lung Repair Via Klf2 And Cebpa, Xin Pan, Lan Wang, Juntang Yang, Yingge Li, Min Xu, Chenxi Liang, Lulu Liu, Zhongzheng Li, Cong Xia, Jiaojiao Pang, Mengyuan Wang, Meng Li, Saiya Guo, Peishuo Yan, Chen Ding, Ivan O Rosas, Guoying Yu
Faculty, Staff and Students Publications
Aberrant repair underlies the pathogenesis of pulmonary fibrosis while effective strategies to convert fibrosis to normal regeneration are scarce. Here, we found that thyroid hormone is decreased in multiple models of lung injury but is essential for lung regeneration. Moreover, thyroid hormone receptor α (TRα) promotes cell proliferation, while TRβ fuels cell maturation in lung regeneration. Using a specific TRβ agonist, sobetirome, we demonstrate that the anti-fibrotic effects of thyroid hormone mainly rely on TRβ in mice. Cellularly, TRβ activation enhances alveolar type-2 (AT2) cell differentiation into AT1 cell and constrains AT2 cell hyperplasia. Molecularly, TRβ activation directly regulates the …
Genomics Of Natural Populations: Gene Conversion Events Reveal Selected Genes Within The Inversions Of Drosophila Pseudoobscura, Stephen W Schaeffer, Stephen Richards, Zachary L Fuller
Genomics Of Natural Populations: Gene Conversion Events Reveal Selected Genes Within The Inversions Of Drosophila Pseudoobscura, Stephen W Schaeffer, Stephen Richards, Zachary L Fuller
Faculty, Staff and Students Publications
When adaptive phenotypic variation or quantitative trait loci map within an inverted segment of a chromosome, researchers often despair because the suppression of crossing over will prevent the discovery of selective target genes that established the rearrangement. If an inversion polymorphism is old enough, then the accumulation of gene conversion tracts offers the promise that quantitative trait loci or selected loci within inversions can be mapped. The inversion polymorphism of Drosophila pseudoobscura is a model system to show that gene conversion analysis is a useful tool for mapping selected loci within inversions. D. pseudoobscura has over 30 different chromosomal arrangements …
Rescue Of Scn5a Mis-Splicing Does Not Improve The Structural And Functional Heart Defects Of A Dm1 Heart Mouse Model, Larissa Nitschke, Rong-Chi Hu, Andrew N Miller, Thomas A Cooper
Rescue Of Scn5a Mis-Splicing Does Not Improve The Structural And Functional Heart Defects Of A Dm1 Heart Mouse Model, Larissa Nitschke, Rong-Chi Hu, Andrew N Miller, Thomas A Cooper
Faculty, Staff and Students Publications
Myotonic Dystrophy Type 1 (DM1) is an autosomal dominant multisystemic disorder for which cardiac features, including conduction delays and arrhythmias, are the second leading cause of disease mortality. DM1 is caused by expanded CTG repeats in the 3' untranslated region of the DMPK gene. Transcription of the expanded DMPK allele produces mRNAs containing long tracts of CUG repeats, which sequester the Muscleblind-Like family of RNA binding proteins, leading to their loss-of-function and the dysregulation of alternative splicing. A well-characterized mis-regulated splicing event in the DM1 heart is the increased inclusion of SCN5A exon 6A rather than the mutually exclusive exon …
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, Mai T Dang, Et Al.
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, Mai T Dang, Et Al.
2020-Current year OA Pubs
We define a subset of macrophages in the tumor microenvironment characterized by high intracellular iron and enrichment of heme and iron metabolism genes. These iron-rich tumor-associated macrophages (iTAMs) supported angiogenesis and immunosuppression in the tumor microenvironment and were conserved between mice and humans. iTAMs comprise two additional subsets based on gene expression profile and location-perivascular (pviTAM) and stromal (stiTAM). We identified the endothelin receptor type B (Ednrb) as a specific marker of iTAMs and found myeloid-specific deletion of Ednrb to reduce tumor growth and vascular density. Further studies identified the transcription factor Bach1 as a repressor of the iTAM transcriptional …
Cd28 Costimulation Augments Car Signaling In Nk Cells Via The Lck/Cd3Ζ/Zap70 Signaling Axis, Sunil Acharya, Rafet Basar, May Daher, Hind Rafei, Ping Li, Nadima Uprety, Emily Ensley, Mayra Shanley, Bijender Kumar, Pinaki P Banerjee, Luciana Melo Garcia, Paul Lin, Vakul Mohanty, Kun H Kim, Xianli Jiang, Yuchen Pan, Ye Li, Bin Liu, Ana K Nunez Cortes, Chenyu Zhang, Mohsen Fathi, Ali Rezvan, Melisa J Montalvo, Sophia L Cha, Francia Reyes-Silva, Rejeena Shrestha, Xingliang Guo, Kiran Kundu, Alexander Biederstädt, Luis Muniz-Feliciano, Gary M Deyter, Mecit Kaplan, Xin R Jiang, Enli Liu, Antrix Jain, Janos Roszik, Natalie W Fowlkes, Luisa M Solis Soto, Maria G Raso, Joseph D Khoury, Pei Lin, Francisco Vega, Navin Varadarajan, Ken Chen, David Marin, Elizabeth J Shpall, Katayoun Rezvani
Cd28 Costimulation Augments Car Signaling In Nk Cells Via The Lck/Cd3Ζ/Zap70 Signaling Axis, Sunil Acharya, Rafet Basar, May Daher, Hind Rafei, Ping Li, Nadima Uprety, Emily Ensley, Mayra Shanley, Bijender Kumar, Pinaki P Banerjee, Luciana Melo Garcia, Paul Lin, Vakul Mohanty, Kun H Kim, Xianli Jiang, Yuchen Pan, Ye Li, Bin Liu, Ana K Nunez Cortes, Chenyu Zhang, Mohsen Fathi, Ali Rezvan, Melisa J Montalvo, Sophia L Cha, Francia Reyes-Silva, Rejeena Shrestha, Xingliang Guo, Kiran Kundu, Alexander Biederstädt, Luis Muniz-Feliciano, Gary M Deyter, Mecit Kaplan, Xin R Jiang, Enli Liu, Antrix Jain, Janos Roszik, Natalie W Fowlkes, Luisa M Solis Soto, Maria G Raso, Joseph D Khoury, Pei Lin, Francisco Vega, Navin Varadarajan, Ken Chen, David Marin, Elizabeth J Shpall, Katayoun Rezvani
Faculty, Staff and Student Publications
Multiple factors in the design of a chimeric antigen receptor (CAR) influence CAR T-cell activity, with costimulatory signals being a key component. Yet, the impact of costimulatory domains on the downstream signaling and subsequent functionality of CAR-engineered natural killer (NK) cells remains largely unexplored. Here, we evaluated the impact of various costimulatory domains on CAR-NK cell activity, using a CD70-targeting CAR. We found that CD28, a costimulatory molecule not inherently present in mature NK cells, significantly enhanced the antitumor efficacy and long-term cytotoxicity of CAR-NK cells both in vitro and in multiple xenograft models of hematologic and solid tumors. Mechanistically, …
Identification Of An Ionic Mechanism For Erα-Mediated Rapid Excitation In Neurons, Meng Yu, Na Yin, Bing Feng, Peiyu Gao, Kaifan Yu, Hesong Liu, Hailan Liu, Yongxiang Li, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Longlong Tu, Jonathan C Bean, Qingzhuo Liu, Yue Deng, Yuxue Yang, Junying Han, Sanika V Jossy, Megan L Burt, Huey Zhong Wong, Yongjie Yang, Benjamin R Arenkiel, Yang He, Shaodong Guo, Pierre Gourdy, Jean-Francois Arnal, Francoise Lenfant, Zhao Wang, Chunmei Wang, Yanlin He, Yong Xu
Identification Of An Ionic Mechanism For Erα-Mediated Rapid Excitation In Neurons, Meng Yu, Na Yin, Bing Feng, Peiyu Gao, Kaifan Yu, Hesong Liu, Hailan Liu, Yongxiang Li, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Longlong Tu, Jonathan C Bean, Qingzhuo Liu, Yue Deng, Yuxue Yang, Junying Han, Sanika V Jossy, Megan L Burt, Huey Zhong Wong, Yongjie Yang, Benjamin R Arenkiel, Yang He, Shaodong Guo, Pierre Gourdy, Jean-Francois Arnal, Francoise Lenfant, Zhao Wang, Chunmei Wang, Yanlin He, Yong Xu
Faculty, Staff and Students Publications
The major female ovarian hormone, 17β-estradiol (E2), can alter neuronal excitability within milliseconds to regulate a variety of physiological processes. Estrogen receptor-α (ERα), classically known as a nuclear receptor, exists as a membrane-bound receptor to mediate this rapid action of E2, but the ionic mechanisms remain unclear. Here, we show that a membrane channel protein, chloride intracellular channel protein-1 (Clic1), can physically interact with ERα with a preference to the membrane-bound ERα. Clic1-mediated currents can be enhanced by E2 and reduced by its depletion. In addition, Clic1 currents are required to mediate the E2-induced rapid excitations in multiple brain ERα …
Cell Type-Specific Epigenetic Priming Of Gene Expression In Nucleus Accumbens By Cocaine, Philipp Mews, Yentl Van Der Zee, Ashik Gurung, Molly Estill, Rita Futamura, Hope Kronman, Aarthi Ramakrishnan, Meagan Ryan, Abner A Reyes, Benjamin A Garcia, Caleb J Browne, Simone Sidoli, Li Shen, Eric J Nestler
Cell Type-Specific Epigenetic Priming Of Gene Expression In Nucleus Accumbens By Cocaine, Philipp Mews, Yentl Van Der Zee, Ashik Gurung, Molly Estill, Rita Futamura, Hope Kronman, Aarthi Ramakrishnan, Meagan Ryan, Abner A Reyes, Benjamin A Garcia, Caleb J Browne, Simone Sidoli, Li Shen, Eric J Nestler
2020-Current year OA Pubs
A hallmark of addiction is the ability of drugs of abuse to trigger relapse after periods of prolonged abstinence. Here, we describe an epigenetic mechanism whereby chronic cocaine exposure causes lasting chromatin and downstream transcriptional modifications in the nucleus accumbens (NAc), a critical brain region controlling motivation. We link prolonged withdrawal from cocaine to the depletion of the histone variant H2A.Z, coupled with increased genome accessibility and latent priming of gene transcription, in D1 dopamine receptor-expressing medium spiny neurons (D1 MSNs) that relate to aberrant gene expression upon drug relapse. The histone chaperone ANP32E removes H2A.Z from chromatin, and we …
Distinct Visual Processing Networks For Foveal And Peripheral Visual Fields, Jie Zhang, Huihui Zhou, Shuo Wang
Distinct Visual Processing Networks For Foveal And Peripheral Visual Fields, Jie Zhang, Huihui Zhou, Shuo Wang
2020-Current year OA Pubs
Foveal and peripheral vision are two distinct modes of visual processing essential for navigating the world. However, it remains unclear if they engage different neural mechanisms and circuits within the visual attentional system. Here, we trained macaques to perform a free-gaze visual search task using natural face and object stimuli and recorded a large number of 14588 visually responsive units from a broadly distributed network of brain regions involved in visual attentional processing. Foveal and peripheral units had substantially different proportions across brain regions and exhibited systematic differences in encoding visual information and visual attention. The spike-local field potential (LFP) …
Arid1a-Baf Coordinates Zic2 Genomic Occupancy For Epithelial-To-Mesenchymal Transition In Cranial Neural Crest Specification, Samantha M. Barnada, Aida Giner De Gracia, Cruz Morenilla-Palao, Maria Teresa López-Cascales, Chiara Scopa, Francis J. Waltrich, Harald M.M. Mikkers, Maria Elena Cicardi, Jonathan Karlin, Davide Trotti, Kevin A. Peterson, Samantha A. Brugmann, Gijs W.E. Santen, Steven B. Mcmahon, Eloísa Herrera, Marco Trizzino
Arid1a-Baf Coordinates Zic2 Genomic Occupancy For Epithelial-To-Mesenchymal Transition In Cranial Neural Crest Specification, Samantha M. Barnada, Aida Giner De Gracia, Cruz Morenilla-Palao, Maria Teresa López-Cascales, Chiara Scopa, Francis J. Waltrich, Harald M.M. Mikkers, Maria Elena Cicardi, Jonathan Karlin, Davide Trotti, Kevin A. Peterson, Samantha A. Brugmann, Gijs W.E. Santen, Steven B. Mcmahon, Eloísa Herrera, Marco Trizzino
Department of Biochemistry and Molecular Biology Faculty Papers
The BAF chromatin remodeler regulates lineage commitment including cranial neural crest cell (CNCC) specification. Variants in BAF subunits cause Coffin-Siris syndrome (CSS), a congenital disorder characterized by coarse craniofacial features and intellectual disability. Approximately 50% of individuals with CSS harbor variants in one of the mutually exclusive BAF subunits, ARID1A/ARID1B. While Arid1a deletion in mouse neural crest causes severe craniofacial phenotypes, little is known about the role of ARID1A in CNCC specification. Using CSS-patient-derived ARID1A induced pluripotent stem cells to model CNCC specification, we discovered that ARID1A-haploinsufficiency impairs epithelial-to-mesenchymal transition (EMT), a process necessary for CNCC delamination and migration from …
Inflammation-Induced Epigenetic Imprinting Regulates Intestinal Stem Cells, Dongchang Zhao, Visweswaran Ravikumar, Tyler J Leach, Daniel Kraushaar, Emma Lauder, Lu Li, Yaping Sun, Katherine Oravecz-Wilson, Evan T Keller, Fengju Chen, Laure Maneix, Robert R Jenq, Robert Britton, Katherine Y King, Ana E Santibanez, Chad J Creighton, Arvind Rao, Pavan Reddy
Inflammation-Induced Epigenetic Imprinting Regulates Intestinal Stem Cells, Dongchang Zhao, Visweswaran Ravikumar, Tyler J Leach, Daniel Kraushaar, Emma Lauder, Lu Li, Yaping Sun, Katherine Oravecz-Wilson, Evan T Keller, Fengju Chen, Laure Maneix, Robert R Jenq, Robert Britton, Katherine Y King, Ana E Santibanez, Chad J Creighton, Arvind Rao, Pavan Reddy
Faculty, Staff and Students Publications
It remains unknown whether, and how intestinal stem cells (ISC) adapt to inflammatory exposure, and if the adaptation leaves scars will affect their subsequent regeneration. We investigated the consequences of inflammation on Lgr5+ISCs in well-defined clinically relevant models of gastrointestinal acute graft-versus-host disease (GI GVHD). Utilizing single cell transcriptomics, organoid, metabolic, epigenomic and in vivo models we found that Lgr5+ISCs undergo metabolic changes that lead to accumulation of succinate, which reprograms its epigenome. These changes reduced the ability of ISCs to differentiate and regenerate ex vivo in serial organoid cultures and also in vivo following serial transplantation. Furthermore, ISCs demonstrated …
A Ligation-Independent Sequencing Method Reveals Trna-Derived Rnas With Blocked 3′ Termini, Alessandro Scacchetti, Emily J Shields, Natalie A Trigg, Grace S Lee, Jeremy E Wilusz, Colin C Conine, Roberto Bonasio
A Ligation-Independent Sequencing Method Reveals Trna-Derived Rnas With Blocked 3′ Termini, Alessandro Scacchetti, Emily J Shields, Natalie A Trigg, Grace S Lee, Jeremy E Wilusz, Colin C Conine, Roberto Bonasio
Faculty, Staff and Students Publications
Despite the numerous sequencing methods available, the diversity in RNA size and chemical modification makes it difficult to capture all RNAs in a cell. We developed a method that combines quasi-random priming with template switching to construct sequencing libraries from RNA molecules of any length and with any type of 3' modifications, allowing for the sequencing of virtually all RNA species. Our ligation-independent detection of all types of RNA (LIDAR) is a simple, effective tool to identify and quantify all classes of coding and non-coding RNAs. With LIDAR, we comprehensively characterized the transcriptomes of mouse embryonic stem cells, neural progenitor …
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Faculty, Staff and Student Publications
Patients with cancer of unknown primary (CUP) carry the double burden of an aggressive disease and reduced access to therapies. Experimental models are pivotal for CUP biology investigation and drug testing. We derived two CUP cell lines (CUP#55 and #96) and corresponding patient-derived xenografts (PDXs), from ascites tumor cells. CUP cell lines and PDXs underwent histological, immune-phenotypical, molecular, and genomic characterization confirming the features of the original tumor. The tissue-of-origin prediction was obtained from the tumor microRNA expression profile and confirmed by single-cell transcriptomics. Genomic testing and fluorescence in situ hybridization analysis identified FGFR2 gene amplification in both models, in …
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Faculty, Staff and Student Publications
Patients with cancer of unknown primary (CUP) carry the double burden of an aggressive disease and reduced access to therapies. Experimental models are pivotal for CUP biology investigation and drug testing. We derived two CUP cell lines (CUP#55 and #96) and corresponding patient-derived xenografts (PDXs), from ascites tumor cells. CUP cell lines and PDXs underwent histological, immune-phenotypical, molecular, and genomic characterization confirming the features of the original tumor. The tissue-of-origin prediction was obtained from the tumor microRNA expression profile and confirmed by single-cell transcriptomics. Genomic testing and fluorescence in situ hybridization analysis identified FGFR2 gene amplification in both models, in …
Neuron-Glial Interactions: Implications For Plasticity, Behavior, And Cognition, Mauricio Rangel-Gomez, Cristina M Alberini, Benjamin Deneen, Gabrielle T Drummond, Tiina Manninen, Mriganka Sur, Aleksandra Vicentic
Neuron-Glial Interactions: Implications For Plasticity, Behavior, And Cognition, Mauricio Rangel-Gomez, Cristina M Alberini, Benjamin Deneen, Gabrielle T Drummond, Tiina Manninen, Mriganka Sur, Aleksandra Vicentic
Faculty, Staff and Students Publications
The traditional view of glial cells as mere supportive tissue has shifted, due to advances in technology and theoretical conceptualization, to include a diversity of other functions, such as regulation of complex behaviors. Astrocytes, the most abundant glial cells in the central nervous system (CNS), have been shown to modulate synaptic functions through gliotransmitter-mediated neurotransmitter reuptake, influencing neuronal signaling and behavioral functions. Contemporary studies further highlight astrocytes' involvement in complex cognitive functions. For instance, inhibiting astrocytes in the hippocampus can lead to memory deficits, suggesting their integral role in memory processes. Moreover, astrocytic calcium activity and astrocyte-neuron metabolic coupling have …
Longitudinal Fragility Phenotyping Contributes To The Prediction Of Lifespan And Age-Associated Morbidity In C57bl/6 And Diversity Outbred Mice., Alison Luciano, Laura Robinson, Gaven Garland, Bonnie Lyons, Ron Korstanje, Andrea Di Francesco, Gary Churchill
Longitudinal Fragility Phenotyping Contributes To The Prediction Of Lifespan And Age-Associated Morbidity In C57bl/6 And Diversity Outbred Mice., Alison Luciano, Laura Robinson, Gaven Garland, Bonnie Lyons, Ron Korstanje, Andrea Di Francesco, Gary Churchill
Faculty Research 2024
Aging studies in mammalian models often depend on natural lifespan data as a primary outcome. Tools for lifespan prediction could accelerate these studies and reduce the need for veterinary intervention. Here, we leveraged large-scale longitudinal frailty and lifespan data on two genetically distinct mouse cohorts to evaluate noninvasive strategies to predict life expectancy in mice. We applied a modified frailty assessment, the Fragility Index, derived from existing frailty indices with additional deficits selected by veterinarians. We developed an ensemble machine learning classifier to predict imminent mortality (95% proportion of life lived [95PLL]). Our algorithm represented improvement over previous predictive criteria …
Proteins Required For Stereocilia Elongation During Mammalian Hair Cell Development Ensure Precise And Steady Heights During Adult Life., Elli I Hartig, Matthew Day, Amandine Jarysta, Basile Tarchini
Proteins Required For Stereocilia Elongation During Mammalian Hair Cell Development Ensure Precise And Steady Heights During Adult Life., Elli I Hartig, Matthew Day, Amandine Jarysta, Basile Tarchini
Faculty Research 2024
Mammalian auditory hair cells (HCs) are not naturally regenerative and must preserve their elaborate structure to ensure lifelong hearing. Stereocilia, the actin-based projections at the HC surface that detect sound vibration, are particularly vulnerable to damage incurred from noise and aging. We show that the tip-localized protein module GPSM2–GNAI required for stereocilia development is also involved in stereocilia maintenance in mature cells. Inactivating Gpsm2 in adult mouse HCs results in low-frequency hearing deficits and stereocilia height reduction proportional to the region reported to turn over actin at the distal tip. Molecular insight into how actin exchange ensures stable height in …
Loss Of Sting Impairs Lactogenic Differentiation., Ramiah R Vickers, Garhett L Wyatt, Lilia Sanchez, Jordyn J Vanportfliet, A Phillip West, Weston W Porter
Loss Of Sting Impairs Lactogenic Differentiation., Ramiah R Vickers, Garhett L Wyatt, Lilia Sanchez, Jordyn J Vanportfliet, A Phillip West, Weston W Porter
Faculty Research 2024
Heightened energetic and nutrient demand during lactogenic differentiation of the mammary gland elicits upregulation of various stress responses to support cellular homeostasis. Here, we identify the stimulator of interferon genes (STING) as an immune supporter of the functional development of mouse mammary epithelial cells (MECs). An in vitro model of MEC differentiation revealed that STING is activated in a cGAS-independent manner to produce both type I interferons and proinflammatory cytokines in response to the accumulation of mitochondrial reactive oxygen species. Induction of STING activity was found to be dependent on the breast tumor suppressor gene single-minded 2 (SIM2). Using mouse …
Presynaptic Nrxn3 Is Essential For Ribbon-Synapse Maturation In Hair Cells., Alma Jukic, Zhengchang Lei, Elizabeth R Cebul, Katherine Pinter, Yommi Tadesse, Amandine Jarysta, Sandeep David, Natalie Mosqueda, Basile Tarchini, Katie Kindt
Presynaptic Nrxn3 Is Essential For Ribbon-Synapse Maturation In Hair Cells., Alma Jukic, Zhengchang Lei, Elizabeth R Cebul, Katherine Pinter, Yommi Tadesse, Amandine Jarysta, Sandeep David, Natalie Mosqueda, Basile Tarchini, Katie Kindt
Faculty Research 2024
Hair cells of the inner ear and lateral-line system rely on specialized ribbon synapses to transmit sensory information to the central nervous system. The molecules required to assemble these synapses are not fully understood. We show that Nrxn3, a presynaptic adhesion molecule, is crucial for ribbon-synapse maturation in hair cells. In both mouse and zebrafish models, the loss of Nrxn3 results in significantly fewer intact ribbon synapses. We show in zebrafish that, initially, Nrxn3 loss does not alter pre- and postsynapse numbers but, later, synapses fail to pair, leading to postsynapse loss. We also demonstrate that Nrxn3 subtly influences synapse …
The Initial Response Of Biodiversity Conventions To The Covid-19 Pandemic, Royal C. Gardner, Lauren Beames, Katherine Pratt
The Initial Response Of Biodiversity Conventions To The Covid-19 Pandemic, Royal C. Gardner, Lauren Beames, Katherine Pratt
William & Mary Environmental Law and Policy Review
The COVID-19 pandemic disrupted the operations of global biodiversity conventions, requiring virtual meetings in place of in-person events. Yet the pandemic also highlighted the importance of biodiversity conservation as a mechanism to reduce the risk of zoonotic diseases, as the October 2020 report issued by the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services (“IPBES”) emphasized. Now that in-person, international meetings have resumed, this Article examines the extent to which four biodiversity conventions—the Agreement on the Conservation of African-Eurasian Migratory Waterbirds, the Ramsar Convention, the Convention on International Trade in Endangered Species, and the Convention on Biological Diversity—considered the nexus …
Patent Your Passenger Pigeons: De-Extinction Technologies & Ramifications Of The Product Of Nature Doctrine, Tyler Brooks
Patent Your Passenger Pigeons: De-Extinction Technologies & Ramifications Of The Product Of Nature Doctrine, Tyler Brooks
William & Mary Environmental Law and Policy Review
Part I of this Note will provide a brief overview of the current methods and scientific breakthroughs that are actively being pursued by private actors (particularly the bioengineering company Colossal Biosciences) to make de-extinct creatures, establishing the crucial point that any technique used to create such an animal will inherently fall short of being able to replicate an extinct species with any one hundred percent accuracy. This section will then briefly speak as to why private actors are looking to invest in de-extinction technologies in the first place, setting out how de-extinction technologies might one day prove incredibly profitable for …
Oligodendroglial Fatty Acid Metabolism As A Central Nervous System Energy Reserve, Ebrahim Asadollahi, Andrea Trevisiol, Aiman S Saab, Zoe J Looser, Payam Dibaj, Reyhane Ebrahimi, Kathrin Kusch, Torben Ruhwedel, Wiebke Möbius, Olaf Jahn, Jun Yup Lee, Anthony S Don, Michelle-Amirah Khalil, Karsten Hiller, Myriam Baes, Bruno Weber, E Dale Abel, Andrea Ballabio, Brian Popko, Celia M Kassmann, Hannelore Ehrenreich, Johannes Hirrlinger, Klaus-Armin Nave
Oligodendroglial Fatty Acid Metabolism As A Central Nervous System Energy Reserve, Ebrahim Asadollahi, Andrea Trevisiol, Aiman S Saab, Zoe J Looser, Payam Dibaj, Reyhane Ebrahimi, Kathrin Kusch, Torben Ruhwedel, Wiebke Möbius, Olaf Jahn, Jun Yup Lee, Anthony S Don, Michelle-Amirah Khalil, Karsten Hiller, Myriam Baes, Bruno Weber, E Dale Abel, Andrea Ballabio, Brian Popko, Celia M Kassmann, Hannelore Ehrenreich, Johannes Hirrlinger, Klaus-Armin Nave
Duncan NRI Faculty and Staff Publications
Brain function requires a constant supply of glucose. However, the brain has no known energy stores, except for glycogen granules in astrocytes. In the present study, we report that continuous oligodendroglial lipid metabolism provides an energy reserve in white matter tracts. In the isolated optic nerve from young adult mice of both sexes, oligodendrocytes survive glucose deprivation better than astrocytes. Under low glucose, both axonal ATP levels and action potentials become dependent on fatty acid β-oxidation. Importantly, ongoing oligodendroglial lipid degradation feeds rapidly into white matter energy metabolism. Although not supporting high-frequency spiking, fatty acid β-oxidation in mitochondria and oligodendroglial …
Does Glial Lipid Dysregulation Alter Sleep In Alzheimer’S And Parkinson’S Disease?, Lindsey D Goodman, Matthew J Moulton, Guang Lin, Hugo J Bellen
Does Glial Lipid Dysregulation Alter Sleep In Alzheimer’S And Parkinson’S Disease?, Lindsey D Goodman, Matthew J Moulton, Guang Lin, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
In this opinion article, we discuss potential connections between sleep disturbances observed in Alzheimer's disease (AD) and Parkinson's disease (PD) and the dysregulation of lipids in the brain. Research using Drosophila has highlighted the role of glial-mediated lipid metabolism in sleep and diurnal rhythms. Relevant to AD, the formation of lipid droplets in glia, which occurs in response to elevated neuronal reactive oxygen species (ROS), is required for sleep. In disease models, this process is disrupted, arguing a connection to sleep dysregulation. Relevant to PD, the degradation of neuronally synthesized glucosylceramides by glia requires glucocerebrosidase (GBA, a PD-associated risk factor) …
Superior Antitumor Immune Response Achieved With Proton Over Photon Immunoradiotherapy Is Amplified By The Nanoradioenhancer Nbtxr3, Yun Hu, Sébastien Paris, Narayan Sahoo, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Ailing Huang, Jordan Da Silva, Célia Bienassis, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Thomas Riad, Carola Leuschner, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Superior Antitumor Immune Response Achieved With Proton Over Photon Immunoradiotherapy Is Amplified By The Nanoradioenhancer Nbtxr3, Yun Hu, Sébastien Paris, Narayan Sahoo, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Ailing Huang, Jordan Da Silva, Célia Bienassis, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Thomas Riad, Carola Leuschner, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Faculty, Staff and Student Publications
Recent findings suggest that immunoradiotherapy (IRT), combining photon radiotherapy (XRT) or proton radiotherapy (PRT) with immune checkpoint blockade, can enhance systemic tumor control. However, the comparative efficacy of XRT and PRT in IRT remains understudied. To address this, we compared outcomes between XRT + αPD1 and PRT + αPD1 in murine αPD1-resistant lung cancer (344SQR). We also assessed the impact of the nanoparticle radioenhancer NBTXR3 on both XRT + αPD1 and PRT + αPD1 for tumor control and examined the tumor immune microenvironment using single-cell RNA sequencing (scRNAseq). Additionally, mice cured by NBTXR3 + PRT + αPD1 were rechallenged with …
Preventive Treatment With A Cd73 Small Molecule Inhibitor Enhances Immune Surveillance In K-Ras Mutant Pancreatic Intraepithelial Neoplasia, Lincoln N Strickland, Wendao Liu, Usama Hussein, Nicolette Mardik, Xian Chen, Tingting Mills, Lana A Vornik, Michelle I Savage, Shizuko Sei, John Clifford, Holger K Eltzschig, Powel H Brown, Zhongming Zhao, Florencia Mcallister, Jennifer M Bailey-Lundberg
Preventive Treatment With A Cd73 Small Molecule Inhibitor Enhances Immune Surveillance In K-Ras Mutant Pancreatic Intraepithelial Neoplasia, Lincoln N Strickland, Wendao Liu, Usama Hussein, Nicolette Mardik, Xian Chen, Tingting Mills, Lana A Vornik, Michelle I Savage, Shizuko Sei, John Clifford, Holger K Eltzschig, Powel H Brown, Zhongming Zhao, Florencia Mcallister, Jennifer M Bailey-Lundberg
Faculty, Staff and Student Publications
Immunoprevention is an emerging consideration for solid tumors, including pancreatic ductal adenocarcinoma (PDAC). We and others have shown that Kras mutations in genetic models of spontaneous pancreatic intraepithelial neoplasia (PanIN), which is a precursor to PDAC, results in CD73 expression in the neoplastic epithelium and some populations of infiltrating immune cells, including macrophages and CD8 T cells. CD73 is an ecto-enzyme that converts extracellular adenosine monophosphate to adenosine, a critical immune inhibitory molecule in PDAC. We hypothesized inhibition of CD73 would reduce the incidence of PanIN formation and alter the immune microenvironment. To test our hypothesis, we used the KrasG12D; …
Human Embryonic Genetic Mosaicism And Its Effects On Development And Disease, Sarah M Waldvogel, Jennifer E Posey, Margaret A Goodell
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 …
Benefits Of Calorie Restriction In Mice Are Mediated Via Energy Imbalance, Not Absolute Energy Or Protein Intake, Daniel L Smith, Sharon E Mitchell, Maria S Johnson, Victoria K Gibbs, Stephanie Dickinson, Beate Henschel, Rui Li, Kathryn A Kaiser, Daniella E Chusyd, Andrew W Brown, David B Allison, John R Speakman, Tim R Nagy
Benefits Of Calorie Restriction In Mice Are Mediated Via Energy Imbalance, Not Absolute Energy Or Protein Intake, Daniel L Smith, Sharon E Mitchell, Maria S Johnson, Victoria K Gibbs, Stephanie Dickinson, Beate Henschel, Rui Li, Kathryn A Kaiser, Daniella E Chusyd, Andrew W Brown, David B Allison, John R Speakman, Tim R Nagy
Children’s Nutrition Research Center Staff Publications
Caloric restriction (CR) results in reduced energy and protein intake, raising questions about protein restriction's contribution to CR longevity benefits. We kept ad libitum (AL)-fed male C57BL/6J mice at 27°C (AL27) and pair-fed (PF) mice at 22°C (22(PF27)). The 22(PF27) group was fed to match AL27 while restricted for calories due to cold-induced metabolism. The 22(PF27) mice had significantly lower body weight, lean mass, fat mass, leptin, IGF-1, and TNF-α levels than AL27 mice (p< 0.001 for all). Manipulations over ~11 weeks resulted in significant differences in body temperature, physical activity, and expression of key genes linked to hunger in the hypothalamus. Survival was significantly greater in 22(PF27) compared to AL27 overall (p< 0.001). CR in the context of equivalent energy and protein intake resulted in hormonal, metabolic, and physiological benefits and extended longevity. Hence, energy imbalance, rather than low energy or protein intake per se, mediates the benefits of CR.
Regulation Of Fibrinogen Synthesis, Dre'von A Dobson, Richard J Fish, Paul S De Vries, Alanna C Morrison, Marguerite Neerman-Arbez, Alisa S Wolberg
Regulation Of Fibrinogen Synthesis, Dre'von A Dobson, Richard J Fish, Paul S De Vries, Alanna C Morrison, Marguerite Neerman-Arbez, Alisa S Wolberg
Faculty, Staff and Student Publications
The plasma protein fibrinogen is encoded by 3 structural genes (FGA, FGB, and FGG) that are transcribed to mRNA, spliced, and translated to 3 polypeptide chains (Aα, Bβ, and γ, respectively). These chains are targeted for secretion, decorated with post-translational modifications, and assembled into a hexameric “dimer of trimers” (AαBβγ)2. Fully assembled fibrinogen is secreted into the blood as a 340 kDa glycoprotein. Fibrinogen is one of the most prevalent coagulation proteins in blood, and its expression is induced by inflammatory cytokines, wherein circulating fibrinogen levels may increase up to 3-fold during acute inflammatory events. Abnormal …