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Full-Text Articles in Neurosciences

The Immune System And Metabolic Products In Epilepsy And Glioma-Associated Epilepsy: Emerging Therapeutic Directions, Shashwat Tripathi, Cody L Nathan, Matthew C Tate, Craig M Horbinski, Jessica W Templer, Joshua M Rosenow, Timothy L Sita, Charles D James, Benjamin Deneen, Stephen D Miller, Amy B Heimberger Jan 2024

The Immune System And Metabolic Products In Epilepsy And Glioma-Associated Epilepsy: Emerging Therapeutic Directions, Shashwat Tripathi, Cody L Nathan, Matthew C Tate, Craig M Horbinski, Jessica W Templer, Joshua M Rosenow, Timothy L Sita, Charles D James, Benjamin Deneen, Stephen D Miller, Amy B Heimberger

Faculty, Staff and Students Publications

Epilepsy has a profound impact on quality of life. Despite the development of new antiseizure medications (ASMs), approximately one-third of affected patients have drug-refractory epilepsy and are nonresponsive to medical treatment. Nearly all currently approved ASMs target neuronal activity through ion channel modulation. Recent human and animal model studies have implicated new immunotherapeutic and metabolomic approaches that may benefit patients with epilepsy. In this Review, we detail the proinflammatory immune landscape of epilepsy and contrast this with the immunosuppressive microenvironment in patients with glioma-related epilepsy. In the tumor setting, excessive neuronal activity facilitates immunosuppression, thereby contributing to subsequent glioma progression. …


Tfeb Drives Mtorc1 Hyperactivation And Kidney Disease In Tuberous Sclerosis Complex, Nicola Alesi, Damir Khabibullin, Dean M Rosenthal, Elie W Akl, Pieter M Cory, Michel Alchoueiry, Samer Salem, Melissa Daou, William F Gibbons, Jennifer A Chen, Long Zhang, Harilaos Filippakis, Laura Graciotti, Caterina Miceli, Jlenia Monfregola, Claudia Vilardo, Manrico Morroni, Chiara Di Malta, Gennaro Napolitano, Andrea Ballabio, Elizabeth P Henske Jan 2024

Tfeb Drives Mtorc1 Hyperactivation And Kidney Disease In Tuberous Sclerosis Complex, Nicola Alesi, Damir Khabibullin, Dean M Rosenthal, Elie W Akl, Pieter M Cory, Michel Alchoueiry, Samer Salem, Melissa Daou, William F Gibbons, Jennifer A Chen, Long Zhang, Harilaos Filippakis, Laura Graciotti, Caterina Miceli, Jlenia Monfregola, Claudia Vilardo, Manrico Morroni, Chiara Di Malta, Gennaro Napolitano, Andrea Ballabio, Elizabeth P Henske

Duncan NRI Faculty and Staff Publications

Tuberous Sclerosis Complex (TSC) is caused by TSC1 or TSC2 mutations, leading to hyperactivation of mechanistic target of rapamycin complex 1 (mTORC1) and lesions in multiple organs including lung (lymphangioleiomyomatosis) and kidney (angiomyolipoma and renal cell carcinoma). Previously, we found that TFEB is constitutively active in TSC. Here, we generated two mouse models of TSC in which kidney pathology is the primary phenotype. Knockout of TFEB rescues kidney pathology and overall survival, indicating that TFEB is the primary driver of renal disease in TSC. Importantly, increased mTORC1 activity in the TSC2 knockout kidneys is normalized by TFEB knockout. In TSC2-deficient …


Development Of A Rabbit Human Glioblastoma Model For Testing Of Endovascular Selective Intra-Arterial Infusion (Esia) Of Novel Stem Cell-Based Therapeutics, Peter Kan, Visish M Srinivasan, Joy Gumin, Roberto Garcia, Stephen R Chen, Jeremiah N Johnson, Dalis E Collins, Melissa M Chen, Daniel Ledbetter, Jason Huse, Zean Aaron Evan Luna, Ariadna Robledo, Viren Vasandani, Abhijit Rao, Sanjay K Singh, Elizabeth J Shpall, Juan Fueyo, Candelaria Gomez-Manzano, Frederick F Lang Jan 2024

Development Of A Rabbit Human Glioblastoma Model For Testing Of Endovascular Selective Intra-Arterial Infusion (Esia) Of Novel Stem Cell-Based Therapeutics, Peter Kan, Visish M Srinivasan, Joy Gumin, Roberto Garcia, Stephen R Chen, Jeremiah N Johnson, Dalis E Collins, Melissa M Chen, Daniel Ledbetter, Jason Huse, Zean Aaron Evan Luna, Ariadna Robledo, Viren Vasandani, Abhijit Rao, Sanjay K Singh, Elizabeth J Shpall, Juan Fueyo, Candelaria Gomez-Manzano, Frederick F Lang

Faculty, Staff and Student Publications

BACKGROUND: Endovascular selective intra-arterial (ESIA) infusion of cellular oncotherapeutics is a rapidly evolving strategy for treating glioblastoma. Evaluation of ESIA infusion requires a unique animal model. Our goal was to create a rabbit human GBM model to test IA infusions of cellular therapies and to test its usefulness by employing clinical-grade microcatheters and infusion methods to deliver mesenchymal stem cells loaded with an oncolytic adenovirus, Delta-24-RGD (MSC-D24).

METHODS: Rabbits were immunosuppressed with mycophenolate mofetil, dexamethasone, and tacrolimus. They underwent stereotactic xenoimplantation of human GBM cell lines (U87, MDA-GSC-17, and MDA-GSC-8-11) into the right frontal lobe. Tumor formation was confirmed on …


Doxycycline For Transgene Control Disrupts Gut Microbiome Diversity Without Compromising Acute Neuroinflammatory Response, Emily J Koller, Caleb A Wood, Zoe Lai, Ella Borgenheimer, Kristi L Hoffman, Joanna L Jankowsky Jan 2024

Doxycycline For Transgene Control Disrupts Gut Microbiome Diversity Without Compromising Acute Neuroinflammatory Response, Emily J Koller, Caleb A Wood, Zoe Lai, Ella Borgenheimer, Kristi L Hoffman, Joanna L Jankowsky

Faculty, Staff and Students Publications

The tetracycline transactivator (tTA) system provides controllable transgene expression through oral administration of the broad-spectrum antibiotic doxycycline. Antibiotic treatment for transgene control in mouse models of disease might have undesirable systemic effects resulting from changes in the gut microbiome. Here we assessed the impact of doxycycline on gut microbiome diversity in a tTA-controlled model of Alzheimer's disease and then examined neuroimmune effects of these microbiome alterations following acute LPS challenge. We show that doxycycline decreased microbiome diversity in both transgenic and wild-type mice and that these changes persisted long after drug withdrawal. Despite the change in microbiome composition, doxycycline treatment …


Heat Shock Factor 1 Directly Regulates Transsulfuration Pathway To Promote Prostate Cancer Proliferation And Survival, J Spencer Hauck, David Moon, Xue Jiang, Mu-En Wang, Yue Zhao, Lingfan Xu, Holly Quang, William Butler, Ming Chen, Everardo Macias, Xia Gao, Yiping He, Jiaoti Huang Jan 2024

Heat Shock Factor 1 Directly Regulates Transsulfuration Pathway To Promote Prostate Cancer Proliferation And Survival, J Spencer Hauck, David Moon, Xue Jiang, Mu-En Wang, Yue Zhao, Lingfan Xu, Holly Quang, William Butler, Ming Chen, Everardo Macias, Xia Gao, Yiping He, Jiaoti Huang

Faculty, Staff and Students Publications

There are limited therapeutic options for patients with advanced prostate cancer (PCa). We previously found that heat shock factor 1 (HSF1) expression is increased in PCa and is an actionable target. In this manuscript, we identify that HSF1 regulates the conversion of homocysteine to cystathionine in the transsulfuration pathway by altering levels of cystathionine-β-synthase (CBS). We find that HSF1 directly binds the CBS gene and upregulates CBS mRNA levels. Targeting CBS decreases PCa growth and induces tumor cell death while benign prostate cells are largely unaffected. Combined inhibition of HSF1 and CBS results in more pronounced inhibition of PCa cell …


Gene Regulation And Speciation In A Migratory Divide Between Songbirds, Matthew I M Louder, Hannah Justen, Abigail A Kimmitt, Koedi S Lawley, Leslie M Turner, J David Dickman, Kira E Delmore Jan 2024

Gene Regulation And Speciation In A Migratory Divide Between Songbirds, Matthew I M Louder, Hannah Justen, Abigail A Kimmitt, Koedi S Lawley, Leslie M Turner, J David Dickman, Kira E Delmore

Faculty, Staff and Students Publications

Behavioral variation abounds in nature. This variation is important for adaptation and speciation, but its molecular basis remains elusive. Here, we use a hybrid zone between two subspecies of songbirds that differ in migration - an ecologically important and taxonomically widespread behavior---to gain insight into this topic. We measure gene expression in five brain regions. Differential expression between migratory states was dominated by circadian genes in all brain regions. The remaining patterns were largely brain-region specific. For example, expression differences between the subspecies that interact with migratory state likely help maintain reproductive isolation in this system and were documented in …


Mechanosensory Encoding In Ex Vivo Muscle–Nerve Preparations, Stephen N. Housley, Evelyn A. Gardolinski, Paul Nardelli, J'Ana Reed, Mark M. Rich, Timothy C. Cope Jan 2024

Mechanosensory Encoding In Ex Vivo Muscle–Nerve Preparations, Stephen N. Housley, Evelyn A. Gardolinski, Paul Nardelli, J'Ana Reed, Mark M. Rich, Timothy C. Cope

Neuroscience, Cell Biology & Physiology Faculty Publications

Our objective was to evaluate an ex vivo muscle-nerve preparation used to study mechanosensory signalling by low threshold mechanosensory receptors (LTMRs). Specifically, we aimed to assess how well the ex vivo preparation represents in vivo firing behaviours of the three major LTMR subtypes of muscle primary sensory afferents, namely type Ia and II muscle spindle (MS) afferents and type Ib tendon organ afferents. Using published procedures for ex vivo study of LTMRs in mouse hindlimb muscles, we replicated earlier reports on afferent firing in response to conventional stretch paradigms applied to non-contracting, that is passive, muscle. Relative to in vivo …


Measurement Of 8-Hydroxy-2′-Deoxyguanosine In Serum And Cerebrospinal Fluid Of Horses With Neuroaxonal Degeneration And Other Causes Of Proprioceptive Ataxia, Megan Palmisano, Jeaneen Kulp, Susan Bender, Darko Stefanovski, Mary Robinson, Amy Johnson Jan 2024

Measurement Of 8-Hydroxy-2′-Deoxyguanosine In Serum And Cerebrospinal Fluid Of Horses With Neuroaxonal Degeneration And Other Causes Of Proprioceptive Ataxia, Megan Palmisano, Jeaneen Kulp, Susan Bender, Darko Stefanovski, Mary Robinson, Amy Johnson

Faculty, Staff and Student Publications

BACKGROUND: Eight-hydroxy-2'-deoxyguanosine (8-OHdG), a biomarker of oxidative damage evaluated in human neurodegenerative disease, has potential to correlate with postmortem diagnosis of neuroaxonal dystrophy/degenerative myeloencephalopathy (NAD/DM) in horses.

HYPOTHESIS: We hypothesized that 8-OHdG will be higher in CSF and serum from NAD/DM horses compared with horses with other neurologic diseases (CVSM, EPM) and a control group of neurologically normal horses. We also hypothesized that 8-OHdG will be higher in CSF compared with serum from NAD/DM horses.

ANIMALS: Fifty client-owned horses with postmortem diagnoses: 20 NAD/DM, 10 CVSM, 10 EPM, and 10 control horses. Serum and CSF samples were obtained between November …


Branched-Chain Amino Acid Accumulation Fuels The Senescence-Associated Secretory Phenotype, Yaosi Liang, Christopher Pan, Tao Yin, Lu Wang, Xia Gao, Ergang Wang, Holly Quang, De Huang, Lianmei Tan, Kun Xiang, Yu Wang, Peter B Alexander, Qi-Jing Li, Tso-Pang Yao, Zhao Zhang, Xiao-Fan Wang Jan 2024

Branched-Chain Amino Acid Accumulation Fuels The Senescence-Associated Secretory Phenotype, Yaosi Liang, Christopher Pan, Tao Yin, Lu Wang, Xia Gao, Ergang Wang, Holly Quang, De Huang, Lianmei Tan, Kun Xiang, Yu Wang, Peter B Alexander, Qi-Jing Li, Tso-Pang Yao, Zhao Zhang, Xiao-Fan Wang

Faculty, Staff and Students Publications

The essential branched-chain amino acids (BCAAs) leucine, isoleucine, and valine play critical roles in protein synthesis and energy metabolism. Despite their widespread use as nutritional supplements, BCAAs' full effects on mammalian physiology remain uncertain due to the complexities of BCAA metabolic regulation. Here a novel mechanism linking intrinsic alterations in BCAA metabolism is identified to cellular senescence and the senescence-associated secretory phenotype (SASP), both of which contribute to organismal aging and inflammation-related diseases. Altered BCAA metabolism driving the SASP is mediated by robust activation of the BCAA transporters Solute Carrier Family 6 Members 14 and 15 as well as downregulation …


Night-Time Neuronal Activation Of Cluster N In A North American Songbird\, Jennifer Rudolf, Natalie Philipello, Tamara Fleihan, J David Dickman, Kira E Delmore Jan 2024

Night-Time Neuronal Activation Of Cluster N In A North American Songbird\, Jennifer Rudolf, Natalie Philipello, Tamara Fleihan, J David Dickman, Kira E Delmore

Faculty, Staff and Students Publications

Night-migrating songbirds utilize the Earth's magnetic field to help navigate to and from their breeding sites each year. A region of the avian forebrain called Cluster N has been shown to be activated during night migratory behavior and it has been implicated in processing geomagnetic information. Previous studies with night-migratory European songbirds have shown that neuronal activity at Cluster N is higher at night than during the day. Comparable work in North American migrants has only been performed in one species of swallows, so extension of examination for Cluster N in other migratory birds is needed. In addition, it is …


Metabolic Bioactivation Of Antidepressants: Advance And Underlying Hepatotoxicity, Saleh M Khalil, Kevin R Mackenzie, Mirjana Maletic-Savatic, Feng Li Jan 2024

Metabolic Bioactivation Of Antidepressants: Advance And Underlying Hepatotoxicity, Saleh M Khalil, Kevin R Mackenzie, Mirjana Maletic-Savatic, Feng Li

Faculty, Staff and Students Publications

Many drugs that serve as first-line medications for the treatment of depression are associated with severe side effects, including liver injury. Of the 34 antidepressants discussed in this review, four have been withdrawn from the market due to severe hepatotoxicity, and others carry boxed warnings for idiosyncratic liver toxicity. The clinical and economic implications of antidepressant-induced liver injury are substantial, but the underlying mechanisms remain elusive. Drug-induced liver injury may involve the host immune system, the parent drug, or its metabolites, and reactive drug metabolites are one of the most commonly referenced risk factors. Although the precise mechanism by which …


Citrulline And Adi-Peg20 Reduce Inflammation In A Juvenile Porcine Model Of Acute Endotoxemia, Caitlin Vonderohe, Barbara Stoll, Inka Didelija, Trung Nguyen, Mahmoud Mohammad, Yava Jones-Hall, Miguel A Cruz, Juan Marini, Douglas Burrin Jan 2024

Citrulline And Adi-Peg20 Reduce Inflammation In A Juvenile Porcine Model Of Acute Endotoxemia, Caitlin Vonderohe, Barbara Stoll, Inka Didelija, Trung Nguyen, Mahmoud Mohammad, Yava Jones-Hall, Miguel A Cruz, Juan Marini, Douglas Burrin

Faculty, Staff and Students Publications

BACKGROUND: Arginine is a conditionally essential amino acid that is depleted in critically ill or surgical patients. In pediatric and adult patients, sepsis results in an arginine-deficient state, and the depletion of plasma arginine is associated with greater mortality. However, direct supplementation of arginine can result in the excessive production of nitric oxide (NO), which can contribute to the hypotension and macrovascular hypo-reactivity observed in septic shock. Pegylated arginine deiminase (ADI-PEG20, pegargiminase) reduces plasma arginine and generates citrulline that can be transported intracellularly to generate local arginine and NO, without resulting in hypotension, while maintaining microvascular patency. The objective of …


Co-Transmitting Interneurons In The Mouse Olfactory Bulb Regulate Olfactory Detection And Discrimination, Ariel M Lyons-Warren, Evelyne K Tantry, Elizabeth H Moss, Mikhail Y Kochukov, Benjamin D W Belfort, Joshua Ortiz-Guzman, Zachary Freyberg, Benjamin R Arenkiel Dec 2023

Co-Transmitting Interneurons In The Mouse Olfactory Bulb Regulate Olfactory Detection And Discrimination, Ariel M Lyons-Warren, Evelyne K Tantry, Elizabeth H Moss, Mikhail Y Kochukov, Benjamin D W Belfort, Joshua Ortiz-Guzman, Zachary Freyberg, Benjamin R Arenkiel

Faculty, Staff and Students Publications

Co-transmission of multiple neurotransmitters from a single neuron increases the complexity of signaling information within defined neuronal circuits. Superficial short-axon cells in the olfactory bulb release both dopamine and γ-aminobutyric acid (GABA), yet the specific targets of these neurotransmitters and their respective roles in olfaction have remained unknown. Here, we implement intersectional genetics in mice to selectively block GABA or dopamine release from superficial short-axon cells to identify their distinct cellular targets, impact on circuit function, and behavioral contribution of each neurotransmitter toward olfactory behaviors. We provide functional and anatomical evidence for divergent superficial short-axon cell signaling onto downstream neurons …


Abnormal Patterns Of Sleep And Waking Behaviors Are Accompanied By Neocortical Oscillation Disturbances In An Ank3 Mouse Model Of Epilepsy-Bipolar Disorder Comorbidity, Juan E Villacres, Nicholas Riveira, Sohmee Kim, Laura L Colgin, Jeffrey L Noebels, Angel Y Lopez Dec 2023

Abnormal Patterns Of Sleep And Waking Behaviors Are Accompanied By Neocortical Oscillation Disturbances In An Ank3 Mouse Model Of Epilepsy-Bipolar Disorder Comorbidity, Juan E Villacres, Nicholas Riveira, Sohmee Kim, Laura L Colgin, Jeffrey L Noebels, Angel Y Lopez

Faculty, Staff and Students Publications

ANK3 is a leading bipolar disorder (BD) candidate gene in humans and provides a unique opportunity for studying epilepsy-BD comorbidity. Previous studies showed that deletion of Ank3-1b, a BD-associated variant of Ank3 in mice leads to increased firing threshold and diminished action potential dynamic range of parvalbumin (PV) interneurons and absence epilepsy, thus providing a biological mechanism linking epilepsy and BD. To explore the behavioral overlap of these disorders, we characterized behavioral patterns of Ank3-1b KO mice during overnight home-cage activity and examined network activity during these behaviors using paired video and EEG recordings. Since PV interneurons contribute to the …


Neuromuscular Basis Of Drosophila Larval Rolling Escape Behavior, Patricia C Cooney, Yuhan Huang, Wenze Li, Dulanjana M Perera, Richard Hormigo, Tanya Tabachnik, Isuru S Godage, Elizabeth M C Hillman, Wesley B Grueber, Aref A Zarin Dec 2023

Neuromuscular Basis Of Drosophila Larval Rolling Escape Behavior, Patricia C Cooney, Yuhan Huang, Wenze Li, Dulanjana M Perera, Richard Hormigo, Tanya Tabachnik, Isuru S Godage, Elizabeth M C Hillman, Wesley B Grueber, Aref A Zarin

Faculty, Staff and Student Publications

To escape from dangerous stimuli, animals execute escape behaviors that are fundamentally different from normal locomotion. The rolling escape behavior of Drosophila larvae consists of C-shaped bending and rolling. However, the muscle contraction patterns that lead to rolling are poorly understood. We find that following the initial body bending, muscles contract in a circumferential wave around the larva as they enter the bend, maintaining unidirectional rolling that resembles a cylinder rolling on a surface. We study the structure of motor circuits for rolling, inhibit different motor neurons to determine which muscles are essential for rolling, and propose circuit and biomechanical …


Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera Dec 2023

Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera

Faculty, Staff and Students Publications

The prognosis of childhood medulloblastoma (MB) is often poor, and it usually requires aggressive therapy that adversely affects quality of life. microRNA-211 (miR-211) was previously identified as an important regulator of cells that descend from neural cells. Since medulloblastomas primarily affect cells with similar ontogeny, we investigated the role and mechanism of miR-211 in MB. Here we showed that miR-211 expression was highly downregulated in cell lines, PDXs, and clinical samples of different MB subgroups (SHH, Group 3, and Group 4) compared to normal cerebellum. miR-211 gene was ectopically expressed in transgenic cells from MB subgroups, and they were subjected …


A Transcriptomic Taxonomy Of Mouse Brain-Wide Spinal Projecting Neurons, Carla C Winter, Anne Jacobi, Junfeng Su, Leeyup Chung, Cindy T J Van Velthoven, Zizhen Yao, Changkyu Lee, Zicong Zhang, Shuguang Yu, Kun Gao, Geraldine Duque Salazar, Evgenii Kegeles, Yu Zhang, Makenzie C Tomihiro, Yiming Zhang, Zhiyun Yang, Junjie Zhu, Jing Tang, Xuan Song, Ryan J Donahue, Qing Wang, Delissa Mcmillen, Michael Kunst, Ning Wang, Kimberly A Smith, Gabriel E Romero, Michelle M Frank, Alexandra Krol, Riki Kawaguchi, Daniel H Geschwind, Guoping Feng, Lisa V Goodrich, Yuanyuan Liu, Bosiljka Tasic, Hongkui Zeng, Zhigang He Dec 2023

A Transcriptomic Taxonomy Of Mouse Brain-Wide Spinal Projecting Neurons, Carla C Winter, Anne Jacobi, Junfeng Su, Leeyup Chung, Cindy T J Van Velthoven, Zizhen Yao, Changkyu Lee, Zicong Zhang, Shuguang Yu, Kun Gao, Geraldine Duque Salazar, Evgenii Kegeles, Yu Zhang, Makenzie C Tomihiro, Yiming Zhang, Zhiyun Yang, Junjie Zhu, Jing Tang, Xuan Song, Ryan J Donahue, Qing Wang, Delissa Mcmillen, Michael Kunst, Ning Wang, Kimberly A Smith, Gabriel E Romero, Michelle M Frank, Alexandra Krol, Riki Kawaguchi, Daniel H Geschwind, Guoping Feng, Lisa V Goodrich, Yuanyuan Liu, Bosiljka Tasic, Hongkui Zeng, Zhigang He

Faculty, Staff and Student Publications

The brain controls nearly all bodily functions via spinal projecting neurons (SPNs) that carry command signals from the brain to the spinal cord. However, a comprehensive molecular characterization of brain-wide SPNs is still lacking. Here we transcriptionally profiled a total of 65,002 SPNs, identified 76 region-specific SPN types, and mapped these types into a companion atlas of the whole mouse brain1. This taxonomy reveals a three-component organization of SPNs: (1) molecularly homogeneous excitatory SPNs from the cortex, red nucleus and cerebellum with somatotopic spinal terminations suitable for point-to-point communication; (2) heterogeneous populations in the reticular formation with broad …


Single-Cell Analysis Of Chromatin Accessibility In The Adult Mouse Brain, Songpeng Zu, Yang Eric Li, Kangli Wang, Ethan J Armand, Sainath Mamde, Maria Luisa Amaral, Yuelai Wang, Andre Chu, Yang Xie, Michael Miller, Jie Xu, Zhaoning Wang, Kai Zhang, Bojing Jia, Xiaomeng Hou, Lin Lin, Qian Yang, Seoyeon Lee, Bin Li, Samantha Kuan, Hanqing Liu, Jingtian Zhou, Antonio Pinto-Duarte, Jacinta Lucero, Julia Osteen, Michael Nunn, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Zihan Wang, Jingbo Shang, M Margarita Behrens, Joseph R Ecker, Allen Wang, Sebastian Preissl, Bing Ren Dec 2023

Single-Cell Analysis Of Chromatin Accessibility In The Adult Mouse Brain, Songpeng Zu, Yang Eric Li, Kangli Wang, Ethan J Armand, Sainath Mamde, Maria Luisa Amaral, Yuelai Wang, Andre Chu, Yang Xie, Michael Miller, Jie Xu, Zhaoning Wang, Kai Zhang, Bojing Jia, Xiaomeng Hou, Lin Lin, Qian Yang, Seoyeon Lee, Bin Li, Samantha Kuan, Hanqing Liu, Jingtian Zhou, Antonio Pinto-Duarte, Jacinta Lucero, Julia Osteen, Michael Nunn, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Zihan Wang, Jingbo Shang, M Margarita Behrens, Joseph R Ecker, Allen Wang, Sebastian Preissl, Bing Ren

Faculty, Staff and Student Publications

Recent advances in single-cell technologies have led to the discovery of thousands of brain cell types; however, our understanding of the gene regulatory programs in these cell types is far from complete1-4. Here we report a comprehensive atlas of candidate cis-regulatory DNA elements (cCREs) in the adult mouse brain, generated by analysing chromatin accessibility in 2.3 million individual brain cells from 117 anatomical dissections. The atlas includes approximately 1 million cCREs and their chromatin accessibility across 1,482 distinct brain cell populations, adding over 446,000 cCREs to the most recent such annotation in the mouse genome. The mouse brain cCREs are …


Molecularly Defined And Spatially Resolved Cell Atlas Of The Whole Mouse Brain, Meng Zhang, Xingjie Pan, Won Jung, Aaron R Halpern, Stephen W Eichhorn, Zhiyun Lei, Limor Cohen, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Xiaowei Zhuang Dec 2023

Molecularly Defined And Spatially Resolved Cell Atlas Of The Whole Mouse Brain, Meng Zhang, Xingjie Pan, Won Jung, Aaron R Halpern, Stephen W Eichhorn, Zhiyun Lei, Limor Cohen, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Xiaowei Zhuang

Faculty, Staff and Student Publications

In mammalian brains, millions to billions of cells form complex interaction networks to enable a wide range of functions. The enormous diversity and intricate organization of cells have impeded our understanding of the molecular and cellular basis of brain function. Recent advances in spatially resolved single-cell transcriptomics have enabled systematic mapping of the spatial organization of molecularly defined cell types in complex tissues1-3, including several brain regions (for example, refs. 1-11). However, a comprehensive cell atlas of the whole brain is still missing. Here we imaged a panel of more than 1,100 genes in approximately 10 million cells across the …


Hyperleptinemia Contributes To Antipsychotic Drug-Associated Obesity And Metabolic Disorders, Shangang Zhao, Qian Lin, Wei Xiong, Li Li, Leon Straub, Dinghong Zhang, Rizaldy Zapata, Qingzhang Zhu, Xue-Nan Sun, Zhuzhen Zhang, Jan-Bernd Funcke, Chao Li, Shiuhwei Chen, Yi Zhu, Nisi Jiang, Guannan Li, Ziying Xu, Steven C Wyler, May-Yun Wang, Juli Bai, Xianlin Han, Christine M Kusminski, Ningyan Zhang, Zhiqiang An, Joel K Elmquist, Olivia Osborn, Chen Liu, Philipp E Scherer Nov 2023

Hyperleptinemia Contributes To Antipsychotic Drug-Associated Obesity And Metabolic Disorders, Shangang Zhao, Qian Lin, Wei Xiong, Li Li, Leon Straub, Dinghong Zhang, Rizaldy Zapata, Qingzhang Zhu, Xue-Nan Sun, Zhuzhen Zhang, Jan-Bernd Funcke, Chao Li, Shiuhwei Chen, Yi Zhu, Nisi Jiang, Guannan Li, Ziying Xu, Steven C Wyler, May-Yun Wang, Juli Bai, Xianlin Han, Christine M Kusminski, Ningyan Zhang, Zhiqiang An, Joel K Elmquist, Olivia Osborn, Chen Liu, Philipp E Scherer

Faculty, Staff and Students Publications

Despite their high degree of effectiveness in the management of psychiatric conditions, exposure to antipsychotic drugs, including olanzapine and risperidone, is frequently associated with substantial weight gain and the development of diabetes. Even before weight gain, a rapid rise in circulating leptin concentrations can be observed in most patients taking antipsychotic drugs. To date, the contribution of this hyperleptinemia to weight gain and metabolic deterioration has not been defined. Here, with an established mouse model that recapitulates antipsychotic drug-induced obesity and insulin resistance, we not only confirm that hyperleptinemia occurs before weight gain but also demonstrate that hyperleptinemia contributes directly …


Targeted Suppression Of Mtorc2 Reduces Seizures Across Models Of Epilepsy, James Okoh, Jacqunae Mays, Alexandre Bacq, Juan A Oses-Prieto, Stefka Tyanova, Chien-Ju Chen, Khalel Imanbeyev, Marion Doladilhe, Hongyi Zhou, Paymaan Jafar-Nejad, Alma Burlingame, Jeffrey Noebels, Stephanie Baulac, Mauro Costa-Mattioli Nov 2023

Targeted Suppression Of Mtorc2 Reduces Seizures Across Models Of Epilepsy, James Okoh, Jacqunae Mays, Alexandre Bacq, Juan A Oses-Prieto, Stefka Tyanova, Chien-Ju Chen, Khalel Imanbeyev, Marion Doladilhe, Hongyi Zhou, Paymaan Jafar-Nejad, Alma Burlingame, Jeffrey Noebels, Stephanie Baulac, Mauro Costa-Mattioli

Faculty, Staff and Students Publications

Epilepsy is a neurological disorder that poses a major threat to public health. Hyperactivation of mTOR complex 1 (mTORC1) is believed to lead to abnormal network rhythmicity associated with epilepsy, and its inhibition is proposed to provide some therapeutic benefit. However, mTOR complex 2 (mTORC2) is also activated in the epileptic brain, and little is known about its role in seizures. Here we discover that genetic deletion of mTORC2 from forebrain neurons is protective against kainic acid-induced behavioral and EEG seizures. Furthermore, inhibition of mTORC2 with a specific antisense oligonucleotide robustly suppresses seizures in several pharmacological and genetic mouse models …


A Drosophila Model Relevant To Chemotherapy-Related Cognitive Impairment, Matthew Torre, Hassan Bukhari, Vanitha Nithianandam, Camila A Zanella, Douglas A Mata, Mel B Feany Nov 2023

A Drosophila Model Relevant To Chemotherapy-Related Cognitive Impairment, Matthew Torre, Hassan Bukhari, Vanitha Nithianandam, Camila A Zanella, Douglas A Mata, Mel B Feany

Duncan NRI Faculty and Staff Publications

Chemotherapy-related cognitive impairment (CRCI) is a common adverse effect of treatment and is characterized by deficits involving multiple cognitive domains including memory. Despite the significant morbidity of CRCI and the expected increase in cancer survivors over the coming decades, the pathophysiology of CRCI remains incompletely understood, highlighting the need for new model systems to study CRCI. Given the powerful array of genetic approaches and facile high throughput screening ability in Drosophila, our goal was to validate a Drosophila model relevant to CRCI. We administered the chemotherapeutic agents cisplatin, cyclophosphamide, and doxorubicin to adult Drosophila. Neurologic deficits were observed with all …


Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio Nov 2023

Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio

Duncan NRI Faculty and Staff Publications

To fulfill their function, pancreatic beta cells require precise nutrient-sensing mechanisms that control insulin production. Transcription factor EB (TFEB) and its homolog TFE3 have emerged as crucial regulators of the adaptive response of cell metabolism to environmental cues. Here, we show that TFEB and TFE3 regulate beta-cell function and insulin gene expression in response to variations in nutrient availability. We found that nutrient deprivation in beta cells promoted TFEB/TFE3 activation, which resulted in suppression of insulin gene expression. TFEB overexpression was sufficient to inhibit insulin transcription, whereas beta cells depleted of both TFEB and TFE3 failed to suppress insulin gene …


The Atoh1-Cre Knock-In Allele Ectopically Labels A Subpopulation Of Amacrine Cells And Bipolar Cells In Mouse Retina, Sih-Rong Wu, Huda Y Zoghbi Nov 2023

The Atoh1-Cre Knock-In Allele Ectopically Labels A Subpopulation Of Amacrine Cells And Bipolar Cells In Mouse Retina, Sih-Rong Wu, Huda Y Zoghbi

Duncan NRI Faculty and Staff Publications

The retina has diverse neuronal cell types derived from a common pool of retinal progenitors. Many molecular drivers, mostly transcription factors, have been identified to promote different cell fates. In Drosophila, atonal is required for specifying photoreceptors. In mice, there are two closely related atonal homologs, Atoh1 and Atoh7. While Atoh7 is known to promote the genesis of retinal ganglion cells, there is no study on the function of Atoh1 in retinal development. Here, we crossed Atoh1Cre/+ mice to mice carrying a Cre-dependent TdTomato reporter to track potential Atoh1-lineage neurons in retinas. We characterized a heterogeneous …


Therapeutic Implications Of Impaired Nuclear Receptor Function And Dysregulated Metabolism In Wilson’S Disease, Clavia Ruth Wooton-Kee Nov 2023

Therapeutic Implications Of Impaired Nuclear Receptor Function And Dysregulated Metabolism In Wilson’S Disease, Clavia Ruth Wooton-Kee

Faculty, Staff and Students Publications

Copper is an essential trace element that is required for the activity of many enzymes and cellular processes, including energy homeostasis and neurotransmitter biosynthesis; however, excess copper accumulation results in significant cellular toxicity. The liver is the major organ for maintaining copper homeostasis. Inactivating mutations of the copper-transporting P-type ATPase, ATP7B, result in Wilson’s disease, an autosomal recessive disorder that requires life-long medicinal therapy or liver transplantation. Current treatment protocols are limited to either sequestration of copper via chelation or reduction of copper absorption in the gut (zinc therapy). The goal of these strategies is to reduce free copper, redox …


Anthocyanins: Molecular Aspects On Their Neuroprotective Activity, César A Zaa, Álvaro J Marcelo, Zhiqiang An, José L Medina-Franco, Marco A Velasco-Velázquez Oct 2023

Anthocyanins: Molecular Aspects On Their Neuroprotective Activity, César A Zaa, Álvaro J Marcelo, Zhiqiang An, José L Medina-Franco, Marco A Velasco-Velázquez

Faculty, Staff and Student Publications

Anthocyanins are a type of flavonoids that give plants and fruits their vibrant colors. They are known for their potent antioxidant properties and have been linked to various health benefits. Upon consumption, anthocyanins are quickly absorbed and can penetrate the blood-brain barrier (BBB). Research based on population studies suggests that including anthocyanin-rich sources in the diet lower the risk of neurodegenerative diseases. Anthocyanins exhibit neuroprotective effects that could potentially alleviate symptoms associated with such diseases. In this review, we compiled and discussed a large body of evidence supporting the neuroprotective role of anthocyanins. Our examination encompasses human studies, animal models, …


Rna-Based Translation Activators For Targeted Gene Upregulation, Yang Cao, Huachun Liu, Shannon S Lu, Krysten A Jones, Anitha P Govind, Okunola Jeyifous, Christine Q Simmons, Negar Tabatabaei, William N Green, Jimmy L Holder, Soroush Tahmasebi, Alfred L George, Bryan C Dickinson Oct 2023

Rna-Based Translation Activators For Targeted Gene Upregulation, Yang Cao, Huachun Liu, Shannon S Lu, Krysten A Jones, Anitha P Govind, Okunola Jeyifous, Christine Q Simmons, Negar Tabatabaei, William N Green, Jimmy L Holder, Soroush Tahmasebi, Alfred L George, Bryan C Dickinson

Duncan NRI Faculty and Staff Publications

Technologies capable of programmable translation activation offer strategies to develop therapeutics for diseases caused by insufficient gene expression. Here, we present "translation-activating RNAs" (taRNAs), a bifunctional RNA-based molecular technology that binds to a specific mRNA of interest and directly upregulates its translation. taRNAs are constructed from a variety of viral or mammalian RNA internal ribosome entry sites (IRESs) and upregulate translation for a suite of target mRNAs. We minimize the taRNA scaffold to 94 nucleotides, identify two translation initiation factor proteins responsible for taRNA activity, and validate the technology by amplifying SYNGAP1 expression, a haploinsufficiency disease target, in patient-derived cells. …


Widefield Imaging Of Rapid Pan-Cortical Voltage Dynamics With An Indicator Evolved For One-Photon Microscopy, Xiaoyu Lu, Yunmiao Wang, Zhuohe Liu, Yueyang Gou, Dieter Jaeger, François St-Pierre Oct 2023

Widefield Imaging Of Rapid Pan-Cortical Voltage Dynamics With An Indicator Evolved For One-Photon Microscopy, Xiaoyu Lu, Yunmiao Wang, Zhuohe Liu, Yueyang Gou, Dieter Jaeger, François St-Pierre

Faculty, Staff and Students Publications

Widefield imaging with genetically encoded voltage indicators (GEVIs) is a promising approach for understanding the role of large cortical networks in the neural coding of behavior. However, the limited performance of current GEVIs restricts their deployment for single-trial imaging of rapid neuronal voltage dynamics. Here, we developed a high-throughput platform to screen for GEVIs that combine fast kinetics with high brightness, sensitivity, and photostability under widefield one-photon illumination. Rounds of directed evolution produced JEDI-1P, a green-emitting fluorescent indicator with enhanced performance across all metrics. Next, we optimized a neonatal intracerebroventricular delivery method to achieve cost-effective and wide-spread JEDI-1P expression in …


Subventricular Zone Cytogenesis Provides Trophic Support For Neural Repair In A Mouse Model Of Stroke, Michael R Williamson, Stephanie P Le, Ronald L Franzen, Nicole A Donlan, Jill L Rosow, Mathilda S Nicot-Cartsonis, Alexis Cervantes, Benjamin Deneen, Andrew K Dunn, Theresa A Jones, Michael R Drew Oct 2023

Subventricular Zone Cytogenesis Provides Trophic Support For Neural Repair In A Mouse Model Of Stroke, Michael R Williamson, Stephanie P Le, Ronald L Franzen, Nicole A Donlan, Jill L Rosow, Mathilda S Nicot-Cartsonis, Alexis Cervantes, Benjamin Deneen, Andrew K Dunn, Theresa A Jones, Michael R Drew

Faculty, Staff and Students Publications

Stroke enhances proliferation of neural precursor cells within the subventricular zone (SVZ) and induces ectopic migration of newborn cells towards the site of injury. Here, we characterize the identity of cells arising from the SVZ after stroke and uncover a mechanism through which they facilitate neural repair and functional recovery. With genetic lineage tracing, we show that SVZ-derived cells that migrate towards cortical photothrombotic stroke in mice are predominantly undifferentiated precursors. We find that ablation of neural precursor cells or conditional knockout of VEGF impairs neuronal and vascular reparative responses and worsens recovery. Replacement of VEGF is sufficient to induce …


Excitatory Neuron-Specific Suppression Of The Integrated Stress Response Contributes To Autism-Related Phenotypes In Fragile X Syndrome, Mehdi Hooshmandi, Vijendra Sharma, Carolina Thörn Perez, Rapita Sood, Konstanze Krimbacher, Calvin Wong, Kevin C Lister, Alba Ureña Guzmán, Trevor D Bartley, Cecilia Rocha, Gilles Maussion, Emma Nadler, Patricia Margarita Roque, Ilse Gantois, Jelena Popic, Maxime Lévesque, Randal J Kaufman, Massimo Avoli, Elisenda Sanz, Karim Nader, Randi Jenssen Hagerman, Thomas M Durcan, Mauro Costa-Mattioli, Masha Prager-Khoutorsky, Jean-Claude Lacaille, Veronica Martinez-Cerdeno, Jay R Gibson, Kimberly M Huber, Nahum Sonenberg, Christos G Gkogkas, Arkady Khoutorsky Oct 2023

Excitatory Neuron-Specific Suppression Of The Integrated Stress Response Contributes To Autism-Related Phenotypes In Fragile X Syndrome, Mehdi Hooshmandi, Vijendra Sharma, Carolina Thörn Perez, Rapita Sood, Konstanze Krimbacher, Calvin Wong, Kevin C Lister, Alba Ureña Guzmán, Trevor D Bartley, Cecilia Rocha, Gilles Maussion, Emma Nadler, Patricia Margarita Roque, Ilse Gantois, Jelena Popic, Maxime Lévesque, Randal J Kaufman, Massimo Avoli, Elisenda Sanz, Karim Nader, Randi Jenssen Hagerman, Thomas M Durcan, Mauro Costa-Mattioli, Masha Prager-Khoutorsky, Jean-Claude Lacaille, Veronica Martinez-Cerdeno, Jay R Gibson, Kimberly M Huber, Nahum Sonenberg, Christos G Gkogkas, Arkady Khoutorsky

Faculty, Staff and Students Publications

Dysregulation of protein synthesis is one of the key mechanisms underlying autism spectrum disorder (ASD). However, the role of a major pathway controlling protein synthesis, the integrated stress response (ISR), in ASD remains poorly understood. Here, we demonstrate that the main arm of the ISR, eIF2α phosphorylation (p-eIF2α), is suppressed in excitatory but not inhibitory neurons in a mouse model of fragile X syndrome (FXS; Fmr1−/y). We further show that the decrease in p-eIF2α is mediated via activation of the mTORC1. Genetic reduction of p-eIF2α only in excitatory neurons is sufficient to increase general protein synthesis and cause autism-like …