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Articles 151 - 180 of 6285
Full-Text Articles in Entire DC Network
Tfeb Degradation Is Regulated By An Ikk/Β-Trcp2 Phosphorylation-Ubiquitination Cascade, Yan Xiong, Jaiprakash Sharma, Meggie N Young, Wen Xiong, Ali Jazayeri, Karl F Poncha, Ma Xenia G Ilagan, Qing Wang, Bei Gao, Hui Zheng, Nicolas L Young, Marco Sardiello
Tfeb Degradation Is Regulated By An Ikk/Β-Trcp2 Phosphorylation-Ubiquitination Cascade, Yan Xiong, Jaiprakash Sharma, Meggie N Young, Wen Xiong, Ali Jazayeri, Karl F Poncha, Ma Xenia G Ilagan, Qing Wang, Bei Gao, Hui Zheng, Nicolas L Young, Marco Sardiello
2020-Current year OA Pubs
Transcription factor EB (TFEB) is a master regulator of lysosomal biogenesis and cellular clearance pathways. TFEB activity is tightly controlled by multiple post-translational mechanisms, but the exact molecular mechanism controlling its stability has remained elusive. Here, we identify the IκB kinase (IKK) complex as a key regulator of TFEB protein stability through a phosphorylation-ubiquitination cascade. A high-content kinase inhibitor screen reveals that IKK inhibition increases TFEB protein levels, and genetic ablation of IKK components increases TFEB stability, upregulates lysosomal genes, and enhances lysosomal biogenesis and degradative capacity. Mechanistically, we show that IKK phosphorylates TFEB on a cluster of serine residues …
Ketone Body Supplementation Exerts Renoprotective Effects Against Adenine-Induced Kidney Injury Via Oxct1-Mediated Ketolysis In Mice, Shoji Omachi, Sho Sugahara, Junya Horiguchi, Mako Yasuda-Yamahara, Shogo Kuwagata, Kosuke Yamahara, Yuki Tanaka-Sasaki, Shogo Ida, Tetsuro Kusaba, Benjamin D Humphreys, Kenji Kufukihara, Jin Nakahara, Masami Chin-Kanasaki, Shinji Kume
Ketone Body Supplementation Exerts Renoprotective Effects Against Adenine-Induced Kidney Injury Via Oxct1-Mediated Ketolysis In Mice, Shoji Omachi, Sho Sugahara, Junya Horiguchi, Mako Yasuda-Yamahara, Shogo Kuwagata, Kosuke Yamahara, Yuki Tanaka-Sasaki, Shogo Ida, Tetsuro Kusaba, Benjamin D Humphreys, Kenji Kufukihara, Jin Nakahara, Masami Chin-Kanasaki, Shinji Kume
2020-Current year OA Pubs
Ketone bodies have traditionally been recognized as glucose-sparing energy sources, with hepatic ketogenesis and peripheral ketolysis serving pivotal functions in maintaining energy homeostasis during fasting. Although they are commonly seen as harmful due to their link with ketoacidosis, recent studies emphasize their roles in organ protection. This has sparked interest in their possible use as a treatment for chronic kidney disease (CKD). In this study, we examined both exogenous and endogenous ketone body supplementation in adenine-induced kidney injury in mice. Supplementation with the ketone body precursor 1,3-butanediol significantly improved adenine-induced renal fibrosis, inflammation, and apoptotic cell death. However, genetically deleting …
Post-Hemorrhagic Hydrocephalus Of Prematurity Is Associated With Disruption Of Tight Junctions And Increased Macrophage Activity In The Choroid Plexus, Maria Garcia-Bonilla, Rajiv Swarup, Owen W Limbrick, Habeebah Z Vohra, Ayodamola Otun, Konrad Mckalip, William Bernhardt, Kirill Shumilov, Marie Michenkova, Jayne Crouthamel, Mackenzie Newman, Krikor Dikranian, James P Mcallister Ii, David D Limbrick
Post-Hemorrhagic Hydrocephalus Of Prematurity Is Associated With Disruption Of Tight Junctions And Increased Macrophage Activity In The Choroid Plexus, Maria Garcia-Bonilla, Rajiv Swarup, Owen W Limbrick, Habeebah Z Vohra, Ayodamola Otun, Konrad Mckalip, William Bernhardt, Kirill Shumilov, Marie Michenkova, Jayne Crouthamel, Mackenzie Newman, Krikor Dikranian, James P Mcallister Ii, David D Limbrick
2020-Current year OA Pubs
BACKGROUND: Previous studies on intraventricular hemorrhage (IVH), a common and severe complication of preterm birth, and subsequent post-hemorrhagic hydrocephalus (PHH), have predominantly concentrated on the secretory function of the choroid plexus (ChP), with considerably less emphasis on its barrier function. We hypothesized that PHH is associated with immune-related alterations in the junction biology of ChP. METHODS: We examined differences in tight junctions and macrophages using a neonatal mouse model of PHH (n = 40) and in vitro ChP explants (n = 22), as well as human post-mortem samples (n = 6). To test our hypothesis, we employed histology, immunofluorescence, magnetic …
Breast Cancer-Derived Extracellular Vesicle Mir-425-5p (Mir-425) Promotes Brain Metastasis Via Activating Astrocytes Through The Novel Mir-425-Znf24-Ccl8 Signaling Axis, Grace L Wong, Munazza S Khan, Sara Manore, Shivani Bindal, Ravi Singh, Hui-Wen Lo
Breast Cancer-Derived Extracellular Vesicle Mir-425-5p (Mir-425) Promotes Brain Metastasis Via Activating Astrocytes Through The Novel Mir-425-Znf24-Ccl8 Signaling Axis, Grace L Wong, Munazza S Khan, Sara Manore, Shivani Bindal, Ravi Singh, Hui-Wen Lo
Faculty, Staff and Student Publications
Mechanisms underlying breast cancer brain metastasis (BCBM) are still not well understood. Here, we identified that BCBM patient serum contained extracellular vesicles (EVs) with high levels of microRNAs (miRNAs)-107 and -425. Levels of miR-107 and miR-425 were elevated in brain metastases, and the elevation was associated with poor patient prognoses. Ectopic expression of miR-107 and miR-425 promoted mammospheres; however, the inhibition of miR-425, but not miR-107, suppressed breast cancer mammosphere formation. We further observed that EVs from miR-425-overexpressing breast cancer cells strongly activated astrocytes whereas their inhibitors abrogated the effect. Conditioned media from miR-425-activated astrocytes promoted mammospheres. To elucidate how …
High-Power Dual-Channel Chamber For High-Frequency Magnetic Neuromodulation, Xiaoyang Tian, Hui Wang, Boshuo Wang, Jinshui Zhang, Dong Yan, Jeannette Ingabire, Samantha Coffler, Guillaume Duret, Quoc-Khanh Pham, Gang Bao, Junzhe Wang, Ashok Veeraraghavan, Jacob T Robinson, Stefan M Goetz, Angel V Peterchev
High-Power Dual-Channel Chamber For High-Frequency Magnetic Neuromodulation, Xiaoyang Tian, Hui Wang, Boshuo Wang, Jinshui Zhang, Dong Yan, Jeannette Ingabire, Samantha Coffler, Guillaume Duret, Quoc-Khanh Pham, Gang Bao, Junzhe Wang, Ashok Veeraraghavan, Jacob T Robinson, Stefan M Goetz, Angel V Peterchev
Faculty, Staff and Students Publications
Objective. Several novel methods, including magnetogenetics and magnetoelectric stimulation, use high frequency alternating magnetic fields to precisely manipulate neural activity. To quantify the behavioral effects of such interventions in a freely moving mouse, we developed a dual-channel magnetic chamber, specifically designed for rate-sensitive magnetothermal-genetic stimulation, and adaptable for other uses of alternating magnetic fields.
Approach. Through an optimized coil design, the system allows independent control of two spatially orthogonal uniform magnetic fields delivered at different frequencies within a 10 × 10 × 6 cm3 chamber suitable for mouse studies. The two channels have nominal frequencies of 50 and 550 kHz …
Pathogenic Variants In The Cohesin Loader Subunit Mau2 Underlie A Distinct Cornelia De Lange Syndrome Subtype., Ilaria Parenti, Alina Hesters, Marta Gil-Salvador, Laura Duffy, Deniz Kanber, Jasmin Beygo, Jennifer Kerkhof, Laura Steenpaß, Elsa Leitão, Julia Woestefeld, Philip M. Boone, Emeline M. Kao, Lama Alabdi, Hesham M. Aldhalaan, Fowzan S. Alkuraya, Muneera J. Alshammari, Stylianos E. Antonarakis, Donald Basel, Kevin Cassinari, Laurana De Polli Cellin, Amanda R. Clause, Alexander Augusto De Lima Jorge, Andréa De Castro Leal, Stephan C. Collins, Benjamin Durand, Juliane Eckhold, Mais O. Hashem, Parul Jayakar, Arif O. Khan, Kohji Kato, Regina Kubica, Gholson J. Lyon, Elaine Marchi, Julie Mccarrier, Lara K. Kimmig, Seiji Mizuno, Gael Nicolas, Yosuke Nishio, Tomoo Ogi, Juan Pié, Jordyn Prell, Beatriz Puisac, Feliciano J. Ramos, Emmanuelle Ranza, Claire Redin, Eric T. Rush, Shinji Saitoh, Hanan E. Shamseldin, Susan Starling, Esteban Astiazaran-Symonds, Sara H. Eltahir, Alma Kuechler, Bekim Sadikovic, Binnaz Yalcin, Kerstin S. Wendt, Frank J. Kaiser
Pathogenic Variants In The Cohesin Loader Subunit Mau2 Underlie A Distinct Cornelia De Lange Syndrome Subtype., Ilaria Parenti, Alina Hesters, Marta Gil-Salvador, Laura Duffy, Deniz Kanber, Jasmin Beygo, Jennifer Kerkhof, Laura Steenpaß, Elsa Leitão, Julia Woestefeld, Philip M. Boone, Emeline M. Kao, Lama Alabdi, Hesham M. Aldhalaan, Fowzan S. Alkuraya, Muneera J. Alshammari, Stylianos E. Antonarakis, Donald Basel, Kevin Cassinari, Laurana De Polli Cellin, Amanda R. Clause, Alexander Augusto De Lima Jorge, Andréa De Castro Leal, Stephan C. Collins, Benjamin Durand, Juliane Eckhold, Mais O. Hashem, Parul Jayakar, Arif O. Khan, Kohji Kato, Regina Kubica, Gholson J. Lyon, Elaine Marchi, Julie Mccarrier, Lara K. Kimmig, Seiji Mizuno, Gael Nicolas, Yosuke Nishio, Tomoo Ogi, Juan Pié, Jordyn Prell, Beatriz Puisac, Feliciano J. Ramos, Emmanuelle Ranza, Claire Redin, Eric T. Rush, Shinji Saitoh, Hanan E. Shamseldin, Susan Starling, Esteban Astiazaran-Symonds, Sara H. Eltahir, Alma Kuechler, Bekim Sadikovic, Binnaz Yalcin, Kerstin S. Wendt, Frank J. Kaiser
Manuscripts, Articles, Book Chapters and Other Papers
The role of the cohesin complex depends on the cohesin loader proteins NIPBL and MAU2. While NIPBL variants are a major cause of Cornelia de Lange Syndrome (CdLS), the role of MAU2 in disease is unclear. We describe 18 individuals carrying 15 heterozygous MAU2 variants and demonstrate pathogenicity through functional analyses. In-frame MAU2 variants predominantly impair NIPBL-MAU2 interaction, whereas truncating variants cause MAU2 haploinsufficiency and lead to NIPBL reduction. Most individuals exhibit a DNA methylation profile compatible with the CdLS episignature. We also describe two MAU2-specific episignatures that reflect variant-dependent molecular consequences. Affected individuals display a wide range of phenotypes, …
Dietary Oil From Hermetia Illucens L. Larvae Promotes Weight Gain And Alters Leukocyte Profiles In Mus Musculus L, Rudy Agung Nugroho Ran, Reni Kurniati, Widya Putri Ambar Sari, Reynaldo Imanuel Sompotan, Retno Aryani, Hetty Manurung, Rudianto Rudianto
Dietary Oil From Hermetia Illucens L. Larvae Promotes Weight Gain And Alters Leukocyte Profiles In Mus Musculus L, Rudy Agung Nugroho Ran, Reni Kurniati, Widya Putri Ambar Sari, Reynaldo Imanuel Sompotan, Retno Aryani, Hetty Manurung, Rudianto Rudianto
Makara Journal of Science
The escalating global demand for high-quality animal-derived proteins has driven the search for sustainable alternatives. Black soldier fly larvae (BSFL; Hermetia illucens L.) oil presents a promising option, by addressing organic waste management while providing nutrient-rich feed. This study evaluated the effects of dietary supplementation with BSFL oil on growth performance, hematological characteristics, and blood lipid profiles in mice (Mus musculus). Male mice were randomly assigned to five groups (n = 5): positive control (fish oil, 5 mL/kg body weight [BW]), negative control (Aquadest, 5 mL/kg BW), and three treatment groups receiving BSFL oil at 2.5, 5, and …
Energetic Diversity In Retinal Ganglion Cells Is Modulated By Neuronal Activity And Correlates With Resilience To Degeneration, Zelun Wang, Christopher Zhao, Shelly Xu, Minglei Zhao, Sean Mccracken, Rajendra S Apte, Philip R Williams
Energetic Diversity In Retinal Ganglion Cells Is Modulated By Neuronal Activity And Correlates With Resilience To Degeneration, Zelun Wang, Christopher Zhao, Shelly Xu, Minglei Zhao, Sean Mccracken, Rajendra S Apte, Philip R Williams
2020-Current year OA Pubs
Neuronal function requires high energy expenditure that is likely customized to meet specific signaling demands. However, little is known about diversity of metabolic homeostasis among divergently-functioning types of neurons. To this end, we examined retinal ganglion cells (RGCs), a population of closely related, yet electrophysiologically distinct excitatory projection neurons. Using in vivo 2-photon imaging to measure ATP with single cell resolution, we identified differential homeostatic energy maintenance in the RGC population that correspond to distinct RGC types. In the presence of circuit activity, the most active RGC type (Alpha RGCs), had lower homeostatic ATP levels than other types and exhibited …
Mouse White Matter Matters: Cortical Origins And Spatial Organization Of Mouse White Matter Tracts, Sofia D Gordeev, Melissa Franch, Sarah R Heilbronner
Mouse White Matter Matters: Cortical Origins And Spatial Organization Of Mouse White Matter Tracts, Sofia D Gordeev, Melissa Franch, Sarah R Heilbronner
Faculty, Staff and Students Publications
White matter—the fundamental structure underlying network connectivity—lies at the heart of the brain’s computational power. White matter is organized into fiber tracts, or bundles, in both human and nonhuman primate brains. These bundles consist of long-range axonal projections with a set of shared origin and termination points and exhibit a predictable organization. However, the organization of white matter in the mouse brain remains relatively unknown. This knowledge gap is surprising given the central role of mice in neuroscience, with mouse brains serving as the dominant model for transgenics, in vivo calcium imaging, and circuit manipulation. To address this gap, we …
Multimerin1 And Not Galectin-8 Tempers Wnt Signaling To Promote Gastric Chief Cell Differentiation, Xiaobo Lin, Gabriel Nicolazzi, Xuemei Liu, Chinye Nwokolo, Yehiel Zick, José B Sáenz, Jeffrey W Brown
Multimerin1 And Not Galectin-8 Tempers Wnt Signaling To Promote Gastric Chief Cell Differentiation, Xiaobo Lin, Gabriel Nicolazzi, Xuemei Liu, Chinye Nwokolo, Yehiel Zick, José B Sáenz, Jeffrey W Brown
2020-Current year OA Pubs
Galectins are a family of proteins that bind galactose-containing glycans. One member, galectin-8, preferentially binds galactose that contains a terminal sulfate. Aberrant expression and secretion of sulfated glycosylation epitopes, such as 3'-Sulfo-Le
Molecular Characterization Of Humanized Apoe Mouse Models Reveals Source And Genotype Dependent Differences, Na Wang, Gefei Yu, Zhen Wang, Alla Alnobani, Suren Jeevaratnam, Xue Zhang, Meghan Mcreynolds, Yuzhou Chang, Fangfang Qi, William Tauer, Cassandra Rosenberg, Melissa Wren, Tadafumi C Ikezu, Yuka A Martens, Minghui Wang, Bin Zhang, Gregory W Carter, Michael Sasner, David M Holtzman, Junmin Peng, Long-Jun Wu, Takahisa Kanekiyo, Chia-Chen Liu, Guojun Bu
Molecular Characterization Of Humanized Apoe Mouse Models Reveals Source And Genotype Dependent Differences, Na Wang, Gefei Yu, Zhen Wang, Alla Alnobani, Suren Jeevaratnam, Xue Zhang, Meghan Mcreynolds, Yuzhou Chang, Fangfang Qi, William Tauer, Cassandra Rosenberg, Melissa Wren, Tadafumi C Ikezu, Yuka A Martens, Minghui Wang, Bin Zhang, Gregory W Carter, Michael Sasner, David M Holtzman, Junmin Peng, Long-Jun Wu, Takahisa Kanekiyo, Chia-Chen Liu, Guojun Bu
The Brown Foundation: Institute of Molecular Medicine
Background
Humanized APOE targeted-replacement (TR) mice are essential tools for studying apoE isoform effects in Alzheimer’s disease (AD) and other apoE-related disorders. Despite their widespread use, existing APOE mouse models, generated with different gene targeting strategies, have not been directly compared in terms of apoE isoform expression, lipid profiles, and transcriptomic signatures. Such differences could impact how we interpret APOE genotype-related outcomes, as well as related underlying molecular mechanisms.
Methods
We conducted a comprehensive molecular comparison of humanized APOE mouse models from three sources: Taconic Biosciences (TAC), the Cure Alzheimer’s Fund (CAF), and The Jackson Laboratory (JAX). We assessed apoE …
Molecular Characterization Of Humanized Apoe Mouse Models Reveals Source And Genotype Dependent Differences, Na Wang, David M Holtzman, Et Al.
Molecular Characterization Of Humanized Apoe Mouse Models Reveals Source And Genotype Dependent Differences, Na Wang, David M Holtzman, Et Al.
2020-Current year OA Pubs
BACKGROUND: Humanized APOE targeted-replacement (TR) mice are essential tools for studying apoE isoform effects in Alzheimer’s disease (AD) and other apoE-related disorders. Despite their widespread use, existing APOE mouse models, generated with different gene targeting strategies, have not been directly compared in terms of apoE isoform expression, lipid profiles, and transcriptomic signatures. Such differences could impact how we interpret APOE genotype-related outcomes, as well as related underlying molecular mechanisms. METHODS: We conducted a comprehensive molecular comparison of humanized APOE mouse models from three sources: Taconic Biosciences (TAC), the Cure Alzheimer’s Fund (CAF), and The Jackson Laboratory (JAX). We assessed apoE …
Lipocalin 2 Orchestrates Resistance To Ferroptosis Via Axl, Sabrina Z Wang, J Payton Timken, Ellen S Hong, Sehaj Kaur, Eli Newby, Kristen E Kay, Erin E Mulkearns-Hubert, Daniel J Silver, Juyeun Lee, Joshua B Rubin, James R Connor, Loic P Deleyrolle, Deanna Tiek, Andrew Dhawan, Justin D Lathia
Lipocalin 2 Orchestrates Resistance To Ferroptosis Via Axl, Sabrina Z Wang, J Payton Timken, Ellen S Hong, Sehaj Kaur, Eli Newby, Kristen E Kay, Erin E Mulkearns-Hubert, Daniel J Silver, Juyeun Lee, Joshua B Rubin, James R Connor, Loic P Deleyrolle, Deanna Tiek, Andrew Dhawan, Justin D Lathia
2020-Current year OA Pubs
Glioblastoma (GBM) remains a lethal tumor, largely due to robust mechanisms that prevent effective induction of cell death. Ferroptosis, a form of iron-dependent cell death, is a promising vulnerability in GBM. Here, we demonstrate that lipocalin-2 (LCN2) suppresses ferroptosis in GBM cells via the receptor tyrosine kinase AXL. LCN2 was elevated in GBM cells compared to lower-grade tumor and non-transformed cells, and Lcn2 knockdown impaired GBM cell fitness and growth in vitro and in vivo. Mechanistically, Lcn2 knockdown triggered ferroptosis, which was specifically rescued with ferroptosis inhibitors but not apoptosis or necroptosis inhibitors. Lcn2 knockdown reduced AXL phosphorylation, which was …
Synthetic Lethality Between Rb-Loss And E2f3 Inhibition In Small Cell Cancers Targeted By Pyrimidine Synthesis Blockade, Evan R. Abt, Liang Wang, Grigor Varuzhanyan, Jack Freeland, Tian He, Guadalupe M. Peña-Garcia, Lauryn Ruegg, Jami Mclaughlin, Donghui Cheng, Nikolas G. Balanis, Chia-Chun Chen, Yang Xu, Yi Xing, Sanaz Memarzadeh, Caius G. Radu, Thomas G. Graeber, Owen N. Witte
Synthetic Lethality Between Rb-Loss And E2f3 Inhibition In Small Cell Cancers Targeted By Pyrimidine Synthesis Blockade, Evan R. Abt, Liang Wang, Grigor Varuzhanyan, Jack Freeland, Tian He, Guadalupe M. Peña-Garcia, Lauryn Ruegg, Jami Mclaughlin, Donghui Cheng, Nikolas G. Balanis, Chia-Chun Chen, Yang Xu, Yi Xing, Sanaz Memarzadeh, Caius G. Radu, Thomas G. Graeber, Owen N. Witte
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Small cell carcinoma is a highly lethal cancer variant often found with neuroendocrine (NE) features, as exemplified by small cell lung cancer and small cell NE prostate cancer (SCPC). A genome-wide CRISPR dependency screen using SCPC models generated through human prostate cell transformation identifies a requirement for the transcription factor E2F3. E2F3 dependency is linked to RB inactivation, a near universal occurrence across small cell cancers. The requirement for E2F3 is shared by RB-deficient cells originating from the prostate, lung, and adnexa. In RB-deficient cancer cells, E2F3 inhibition restrains cell cycle progression, proliferation, and tumor growth in vivo. Inhibition of …
Heterogeneity And Plasticity Of The Naive Cd4+ T Cell Compartment, Alia Sajani, Evelien Schaafsma, Walburga Croteau, Mohamed Eltanbouly, Elizabeth C Nowak, Chao Cheng, Christopher M Burns, Mary Jo Turk, Randolph J Noelle, J Louise Lines
Heterogeneity And Plasticity Of The Naive Cd4+ T Cell Compartment, Alia Sajani, Evelien Schaafsma, Walburga Croteau, Mohamed Eltanbouly, Elizabeth C Nowak, Chao Cheng, Christopher M Burns, Mary Jo Turk, Randolph J Noelle, J Louise Lines
Faculty, Staff and Students Publications
This study describes the transcriptional heterogeneity of murine and human naive CD4+ T cells as comprising multiple discrete clusters that impact CD4+ T cell fate and trajectories. Naive CD4+ T cells experiencing inflammatory environments exhibit an altered transcriptional state that biases their differentiation trajectories.
Glomerular Basement Membrane Structural Integrity Dictates Trans-Tissue Deposition Of Laminin In The Kidney, Kohei Omachi, Meei-Hua Lin, Pongpratch Puapatanakul, Joshua F Begin, Karen K Mckee, Hironobu Fujiwara, Peter D Yurchenco, Jeffrey H Miner
Glomerular Basement Membrane Structural Integrity Dictates Trans-Tissue Deposition Of Laminin In The Kidney, Kohei Omachi, Meei-Hua Lin, Pongpratch Puapatanakul, Joshua F Begin, Karen K Mckee, Hironobu Fujiwara, Peter D Yurchenco, Jeffrey H Miner
2020-Current year OA Pubs
Basement membranes (BMs) are specialized extracellular matrices (ECMs) essential for tissue structure and function. In non-vertebrates, ECM components can be produced both locally and by distant tissues. In contrast, mammalian ECM has traditionally been considered to originate predominantly from adjacent or tissue-resident cells. The kidney glomerular basement membrane (GBM), composed of laminin-α5β2γ1 and collagen-α3α4α5(IV), is produced by neighboring cells and functions as a filtration barrier. Alport syndrome, a genetic kidney disease, is characterized by GBM structural defects and ectopic laminin-α2 deposition, but the source of this laminin remains unknown. Here, using CRISPR-Cas9 transgenic models, we demonstrated that ectopic laminin-α2 in …
Whole-Genome Crispr Screening Identifies Genetic Modifiers Of Stem Cell-Derived Islet Transplantation, Marlie M Maestas, Kameron Bradley, Mira Shunkarova, Noyonika Mukherjee, Matthew Ishahak, James Lu, Jeffrey R Millman
Whole-Genome Crispr Screening Identifies Genetic Modifiers Of Stem Cell-Derived Islet Transplantation, Marlie M Maestas, Kameron Bradley, Mira Shunkarova, Noyonika Mukherjee, Matthew Ishahak, James Lu, Jeffrey R Millman
2020-Current year OA Pubs
INTRODUCTION: Genetically engineering human pluripotent stem cell (hPSC)-derived islets is a promising strategy for improving transplantation for diabetes cell therapy; however, genetic perturbations that modulate transplantation outcomes have yet to be systematically explored.
METHODS: To identify potential targets, we performed an unbiased whole-genome CRISPR-activation screen in transplanted stem cell-derived islets (SC-islets). Specifically, we created a stem cell line with CRISPR-activation components (HUES8-VPR) and then transduced these stem cells with a lentiviral guide RNA library targeting the whole human genome. Following transduction, the stem cells were differentiated into SC-islets, which were subsequently transplanted into NOD.Cg-PrkdcscidIl2rgtm1Wjl/SzJ (NSG) immunodeficient mice. After transplantation, SC-islets …
Efficient Multi-Kilobase Knock-Ins In Mice And Cell Lines Using Crispr/Cas9 And Raav Donors With Unbiased Whole-Genome Characterization By Lock-Seq, Monica F Sentmanat, Zi Teng Wang, Evguenia Kouranova, Samuel T Peters, Wan Ching Chan, Jed Lin, Yong Miao, J Michael White, Mia Wallace, Xiaoxia Cui
Efficient Multi-Kilobase Knock-Ins In Mice And Cell Lines Using Crispr/Cas9 And Raav Donors With Unbiased Whole-Genome Characterization By Lock-Seq, Monica F Sentmanat, Zi Teng Wang, Evguenia Kouranova, Samuel T Peters, Wan Ching Chan, Jed Lin, Yong Miao, J Michael White, Mia Wallace, Xiaoxia Cui
2020-Current year OA Pubs
Multi-kilobase knock-ins (KIs) are a necessary, yet challenging type of genome editing to create and characterize in cell lines and animals. The combination of rAAV donor transduction and electroporation of single-cell mouse embryos with Cas9/gRNA ribonucleoprotein complex enables highly efficient KI, but the insert size is limited by the viral packaging capacity. Here, we report the creation of up to 6.7 kb precise KI achieved in one step by using three rAAVs designed to insert one after the other. To fully characterize the edited genome with large KIs, we developed LOCK-seq (LOng-read sequencing of Captured Kilo-base targets), where relevant genomic …
Targeting Cardiomyocyte-Derived Extracellular Vesicle Mir-574-5p Protects Against Cognitive Impairment Induced By Ischemia-Reperfusion, Erya Chen, Xiaoyu Zhu, Haiqing Chang, Qi Li, Zhenkun Zhao, Changteng Zhang, Yu Cao, Yajing Wang, Xinliang Ma, Tao Zhu, Shu Zhang, Lu Gan, Jin Liu, Chan Chen
Targeting Cardiomyocyte-Derived Extracellular Vesicle Mir-574-5p Protects Against Cognitive Impairment Induced By Ischemia-Reperfusion, Erya Chen, Xiaoyu Zhu, Haiqing Chang, Qi Li, Zhenkun Zhao, Changteng Zhang, Yu Cao, Yajing Wang, Xinliang Ma, Tao Zhu, Shu Zhang, Lu Gan, Jin Liu, Chan Chen
Department of Emergency Medicine Faculty Papers
BACKGROUND: Acute myocardial ischemia/reperfusion (MI/R) increases risk for cognitive decline, yet the underlying mechanisms mediating heart-brain communication remain poorly understood. Small extracellular vesicles (sEVs) have emerged as novel long-range signaling mediators and may play a critical role.
METHODS: MI/R was induced by transient ligation of the left anterior descending artery. Cognitive performance was assessed using multiple behavioral tests. sEVs derived from cardiomyocytes were labeled to track their distribution and cellular uptake in the brain. Heart and brain tissues were analyzed for microRNAs (miRNAs) expression using bioinformatics, qPCR, and RNAScope. The role of specific miRNAs was investigated through genetic inhibition of …
Immunotherapy Of Tsa-1.C4 Or In Combination With Bnz Confers Protection Against Trypanosoma Cruzi Infection With A Distinct Cytokine Response, Landy Magaly Pech-Pisté, Victor Dzul-Huchim, Christian Florian Teh-Poot, Fabian Gusovsky, Kathryn Jones, Peter Hotez, Liliana Estefanía Villanueva-Lizama, Maria Elena Bottazzi, Jaime Ortega-Lopez, Julio Vladimir Cruz-Chan
Immunotherapy Of Tsa-1.C4 Or In Combination With Bnz Confers Protection Against Trypanosoma Cruzi Infection With A Distinct Cytokine Response, Landy Magaly Pech-Pisté, Victor Dzul-Huchim, Christian Florian Teh-Poot, Fabian Gusovsky, Kathryn Jones, Peter Hotez, Liliana Estefanía Villanueva-Lizama, Maria Elena Bottazzi, Jaime Ortega-Lopez, Julio Vladimir Cruz-Chan
Faculty, Staff and Students Publications
Chagas disease is a poverty-related neglected tropical disease caused by the protozoan Trypanosoma cruzi affecting approximately 6.3 million people, predominantly in the Americas. Approximately 30% of T. cruzi infections progress to chronic cardiomyopathy and 10% of these cases end in death from cardiac failure. The first-line drug Benznidazole (BNZ) require a prolonged treatment regimen and can be highly toxic. Here, we evaluate a therapeutic vaccine in T. cruzi-infected mice, based on the recombinant Trypomastigote Surface Antigen 1 (TSA-1.C4) protein and the emulsified adjuvant E6020, and in combination with a suboptimal dose of BNZ. We observed a reduced burden parasite in …
Self-Clustering Of Three Cbx2 Molecules Drives Prc2 To Promote Facultative Heterochromatinization Of Polycomb Target Genes, Steven Ingersoll, Abby Trouth, J Carlos Angel, Xinlong Luo, Axel Espinoza, Joey Wen, Chengjie Zhu, Joseph Tucker, Kalkidan Astatike, Christopher J Phiel, Hatim Sabaawy, Tatiana G Kutateladze, Tao P Wu, Tingting Yao, Chao Lu, Srinivas Ramachandran, Xiaojun Ren
Self-Clustering Of Three Cbx2 Molecules Drives Prc2 To Promote Facultative Heterochromatinization Of Polycomb Target Genes, Steven Ingersoll, Abby Trouth, J Carlos Angel, Xinlong Luo, Axel Espinoza, Joey Wen, Chengjie Zhu, Joseph Tucker, Kalkidan Astatike, Christopher J Phiel, Hatim Sabaawy, Tatiana G Kutateladze, Tao P Wu, Tingting Yao, Chao Lu, Srinivas Ramachandran, Xiaojun Ren
Faculty, Staff and Students Publications
Phase separation is increasingly recognized in facultative heterochromatinization of Polycomb target genes; however, the mechanisms underlying this process remain obscure. Using single-molecule imaging and tracking, we show that individual condensates in mouse embryonic stem cells (mESCs) contain approximately 3 CBX2 molecules and numerous Polycomb repressive complex (PRC)1 and PRC2 subunits and indicate that the composition and dynamics of condensates are developmentally regulated. We reveal that CBX2 clusters PRC2 and controls the spatial distribution of both PRC2 and H3K27me3. Using genomic approaches, we demonstrate that CBX2 binds to condensate initiation sites, which are enriched for PRC2 nucleation sites. CBX2 deletion causes …
Immunotherapy Of Tsa-1.C4 Or In Combination With Bnz Confers Protection Against Trypanosoma Cruzi Infection With A Distinct Cytokine Response, Landy Magaly Pech-Pisté, Victor Dzul-Huchim, Christian Florian Teh-Poot, Fabian Gusovsky, Kathryn Jones, Peter Hotez, Liliana Estefanía Villanueva-Lizama, Maria Elena Bottazzi, Jaime Ortega-Lopez, Julio Vladimir Cruz-Chan
Immunotherapy Of Tsa-1.C4 Or In Combination With Bnz Confers Protection Against Trypanosoma Cruzi Infection With A Distinct Cytokine Response, Landy Magaly Pech-Pisté, Victor Dzul-Huchim, Christian Florian Teh-Poot, Fabian Gusovsky, Kathryn Jones, Peter Hotez, Liliana Estefanía Villanueva-Lizama, Maria Elena Bottazzi, Jaime Ortega-Lopez, Julio Vladimir Cruz-Chan
Faculty, Staff and Students Publications
Chagas disease is a poverty-related neglected tropical disease caused by the protozoan Trypanosoma cruzi affecting approximately 6.3 million people, predominantly in the Americas. Approximately 30% of T. cruzi infections progress to chronic cardiomyopathy and 10% of these cases end in death from cardiac failure. The first-line drug Benznidazole (BNZ) require a prolonged treatment regimen and can be highly toxic. Here, we evaluate a therapeutic vaccine in T. cruzi-infected mice, based on the recombinant Trypomastigote Surface Antigen 1 (TSA-1.C4) protein and the emulsified adjuvant E6020, and in combination with a suboptimal dose of BNZ. We observed a reduced burden parasite in …
Fibrinogen-Bmal1 Signaling As A Therapeutic Target To Limit Aortic Dissection By Preserving Vsmc Contractility, Xiaohan Zhong, Dongjie Li, Yuanfei Zhao, Lu Dai, Jinzhang Li, Zhiqi Ji, Bojing Zuo, Hongshan Liu, Haixia Huang, Wei Wang, Haiyang Li, Yuyong Liu, Ming Gong, Xin-Liang Ma, Wenjian Jiang, Meili Wang, Hongjia Zhang
Fibrinogen-Bmal1 Signaling As A Therapeutic Target To Limit Aortic Dissection By Preserving Vsmc Contractility, Xiaohan Zhong, Dongjie Li, Yuanfei Zhao, Lu Dai, Jinzhang Li, Zhiqi Ji, Bojing Zuo, Hongshan Liu, Haixia Huang, Wei Wang, Haiyang Li, Yuyong Liu, Ming Gong, Xin-Liang Ma, Wenjian Jiang, Meili Wang, Hongjia Zhang
Department of Emergency Medicine Faculty Papers
Aortic dissection (AD) is a life-threatening vascular disease with a high mortality rate. Surgery is essential in the acute phase but carries significant risks, whereas elective surgery during the chronic phase yields better outcomes. However, no pharmacological therapy has been proven effective in slowing AD progression. In our recent pilot clinical study, an association between higher plasma fibrinogen levels and improved clinical outcomes was observed in AD patients, suggesting a potential protective role of fibrinogen. However, direct evidence supporting this hypothesis is lacking. In this study, a population-based analysis of nonsurgically managed patients with acute AD revealed a distinct association: …
On-Resin Diamsar-Conjugated Cd38-Targeted Peptides And Their Inverso And Dimeric-Inverso Analogs For Pet Imaging Of Multiple Myeloma, Amit Kumar Sharma, Rui Tang, Alexander Zheleznyak, Brad Manion, Erin Teubner, Julie L Prior, Tommy Bauer, Michael Riley Dyer, Stephen Lees, Kimberly Kelly, Monica Shokeen
On-Resin Diamsar-Conjugated Cd38-Targeted Peptides And Their Inverso And Dimeric-Inverso Analogs For Pet Imaging Of Multiple Myeloma, Amit Kumar Sharma, Rui Tang, Alexander Zheleznyak, Brad Manion, Erin Teubner, Julie L Prior, Tommy Bauer, Michael Riley Dyer, Stephen Lees, Kimberly Kelly, Monica Shokeen
2020-Current year OA Pubs
CD38 is an established biomarker of multiple myeloma (MM), and peptide-based radiopharmaceuticals targeted to this receptor offer a route to molecularly specific imaging. In this work, we identified a novel CD38-targeted peptide sequence (HAPWFRGGGGS) through phage display and synthesized it using automated solid-phase peptide synthesis. The peptide was modified by introducing a PEG
Polθ Activity Modulates Sensitivity To Standard Therapies In Dnmt3a-Deficient Leukemia, Bac Viet Le, Umeshkumar Vekariya, Monika M. Toma, Margaret Nieborowska-Skorska, Marie-Christine Caron, Malgorzata Gozdecka, Zayd Haydar, Martin Walsh, Jayashri Ghosh, Elaine Vaughan-Williams, Paulina Podszywalow-Bartnicka, Anna-Mariya Kukuyan, Sylwia Ziolkowska, Jessica Atkins, Emir Hadzijusufovic, Gurushankar Chandramouly, Reza Nejati, Katarzyna Piwocka, Richard T. Pomerantz, George S. Vassiliou, Brian J.P. Huntly, Peter Valent, Mariusz Wasik, Alfonso Bellacosa, Jean-Yves Masson, Gaorav P. Gupta, Grant A. Challen, Tomasz Skorski
Polθ Activity Modulates Sensitivity To Standard Therapies In Dnmt3a-Deficient Leukemia, Bac Viet Le, Umeshkumar Vekariya, Monika M. Toma, Margaret Nieborowska-Skorska, Marie-Christine Caron, Malgorzata Gozdecka, Zayd Haydar, Martin Walsh, Jayashri Ghosh, Elaine Vaughan-Williams, Paulina Podszywalow-Bartnicka, Anna-Mariya Kukuyan, Sylwia Ziolkowska, Jessica Atkins, Emir Hadzijusufovic, Gurushankar Chandramouly, Reza Nejati, Katarzyna Piwocka, Richard T. Pomerantz, George S. Vassiliou, Brian J.P. Huntly, Peter Valent, Mariusz Wasik, Alfonso Bellacosa, Jean-Yves Masson, Gaorav P. Gupta, Grant A. Challen, Tomasz Skorski
Department of Biochemistry and Molecular Biology Faculty Papers
Myeloid malignancies carrying somatic DNMT3A mutations (DNMT3Amut) are refractory to standard therapy. DNMT3Amut leukemia cells accumulate toxic DNA double-strand breaks (DSBs) and stalled replication forks, rendering them dependent on DNA damage response (DDR). We report here that DNA polymerase theta (Polθ), a key element in DSB repair by end-joining (Polθ-mediated end-joining [TMEJ]) and in fork restarting, promotes survival and proliferation of DNMT3Amut leukemia cells. Polθ is overexpressed in DNMT3Amut leukemia cells due to abrogation of PARP1 PARylation-dependent UBE2O E3 ligase-mediated ubiquitination and proteasomal degradation of Polθ. In addition, PARP1-mediated recruitment of the SMARCAD1-MSH2/MSH3 repressive complex to DSBs is diminished in …
Rethinking Ratio-Based Normalization Towards Model-Based Approaches In Heart Weight Analysis., Manuela A Oestereicher, Patricia Da Silva-Buttkus, Valérie Gailus-Durner, Susan Marschall, Helmut Fuchs, Impc Consortium, Martin Hrabě De Angelis, Elida Schneltzer, Nadine Spielmann
Rethinking Ratio-Based Normalization Towards Model-Based Approaches In Heart Weight Analysis., Manuela A Oestereicher, Patricia Da Silva-Buttkus, Valérie Gailus-Durner, Susan Marschall, Helmut Fuchs, Impc Consortium, Martin Hrabě De Angelis, Elida Schneltzer, Nadine Spielmann
Faculty Research 2026
Heart weight (HW) is a critical parameter in cardiology and mouse research, commonly normalized to body weight (BW) or tibia length (TL) to account for size differences. Ratio-based normalization, however, assumes strict proportionality between variables, an assumption that is rarely tested and may bias group comparisons. We analysed HW, BW, and TL measurements from over 25,000 C57BL/6N wildtype mice generated by the International Mouse Phenotyping Consortium. Sex- and age-stratified analyses were combined with simulation-based modelling to evaluate empirical scaling relationships and the statistical behaviour of ratio-based normalization. Across all age and sex groups, correlations between HW, BW, and TL were …
Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim
Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim
Faculty Research 2026
Thymic epithelial tumors (TET), comprising various histologic types of thymomas and thymic carcinomas, originate from thymic epithelial cells (TEC). Each histologic type is typically associated with a distinct immune cell composition and clinical manifestation. A better understanding of the cellular origins and molecular pathways underlying this heterogeneity is needed to improve patient stratification and treatment. In this study, we conducted an integrated genomic and transcriptomic analysis of 124 thymomas and 13 thymic carcinomas, including 20 newly sequenced cases, combined with 117 cases from publicly available datasets. Single-cell transcriptomic data from murine thymic tissues across developmental stages were incorporated to further …
Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim
Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim
Faculty Research 2026
Thymic epithelial tumors (TET), comprising various histologic types of thymomas and thymic carcinomas, originate from thymic epithelial cells (TEC). Each histologic type is typically associated with a distinct immune cell composition and clinical manifestation. A better understanding of the cellular origins and molecular pathways underlying this heterogeneity is needed to improve patient stratification and treatment. In this study, we conducted an integrated genomic and transcriptomic analysis of 124 thymomas and 13 thymic carcinomas, including 20 newly sequenced cases, combined with 117 cases from publicly available datasets. Single-cell transcriptomic data from murine thymic tissues across developmental stages were incorporated to further …
Cell Type-Specific Enhancers Regulate Il-22 Expression In Innate And Adaptive Type 3 Lymphoid Cells, Ankita Saini, Leone S Hopkins, Vanida A Serna, Matthew V D Mccullen, Nicholas G Selner, Bishan Bhattarai, José L Fachi, Rebecca A Glynn, Katharina E Hayer, Craig H Bassing, Marco Colonna, Eugene M Oltz
Cell Type-Specific Enhancers Regulate Il-22 Expression In Innate And Adaptive Type 3 Lymphoid Cells, Ankita Saini, Leone S Hopkins, Vanida A Serna, Matthew V D Mccullen, Nicholas G Selner, Bishan Bhattarai, José L Fachi, Rebecca A Glynn, Katharina E Hayer, Craig H Bassing, Marco Colonna, Eugene M Oltz
2020-Current year OA Pubs
IL-22, a signature cytokine for type 3 lymphoid cells, including T helper 17/22 (Th17/22) and type 3 innate lymphoid cells (ILC3), mediates epithelial homeostasis and protective pathogen responses in barrier tissues. Upon dysregulation, IL-22 can drive chronic inflammatory diseases, yet little is known about transcriptional elements modulating its expression. Here, we identify two enhancers, E22-1 and E22-2, with distinct capacities for regulating Il22 expression in type 3 lymphoid cells. Both enhancers are necessary for protection from Citrobacter rodentium infection and for the onset of IL-22-mediated psoriasis. E22-2 is specifically required for IL-22 expression in ILC3s, while E22-1 functions in both …
Persistent Microglial Activation Following Neonatal Cmv Infection Mediates Neurodegeneration, Jessica L. Mccord, Debotri Chatterjee, John Y.S. Han, Drew Scoles, Richard J. Smeyne, Nancy J. Philp, Christopher M. Snyder
Persistent Microglial Activation Following Neonatal Cmv Infection Mediates Neurodegeneration, Jessica L. Mccord, Debotri Chatterjee, John Y.S. Han, Drew Scoles, Richard J. Smeyne, Nancy J. Philp, Christopher M. Snyder
Department of Microbiology and Immunology Faculty Papers
Human cytomegalovirus (HCMV) causes the most common congenital viral infection in the United States, with well-known acute and late-onset neurological pathologies. Moreover, HCMV, like multiple herpesviruses, has been associated with neuroinflammation and neurodegeneration. Using a well-established neonatal murine (M)CMV infection model, we found that early-life infection drove adult-onset neuron loss and neuropathology in the retina and brain, without evident viral reactivation. Pathology was associated with the persistence of highly activated and inflammatory damage-associated microglia. Transient depletion of these microglia before the development of pathology resulted in repopulation of the tissue by microglia with a more reparative profile, which was then …