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Articles 2311 - 2340 of 10790
Full-Text Articles in Entire DC Network
Disordered Proteins Interact With The Chemical Environment To Tune Their Protective Function During Drying, Shraddha Kc, Kenny H Nguyen, Vincent Nicholson, Annie Walgren, Tony Trent, Edith Gollub, Paulette Sofia Romero-Perez, Alex S Holehouse, Shahar Sukenik, Thomas C Boothby
Disordered Proteins Interact With The Chemical Environment To Tune Their Protective Function During Drying, Shraddha Kc, Kenny H Nguyen, Vincent Nicholson, Annie Walgren, Tony Trent, Edith Gollub, Paulette Sofia Romero-Perez, Alex S Holehouse, Shahar Sukenik, Thomas C Boothby
2020-Current year OA Pubs
The conformational ensemble and function of intrinsically disordered proteins (IDPs) are sensitive to their solution environment. The inherent malleability of disordered proteins, combined with the exposure of their residues, accounts for this sensitivity. One context in which IDPs play important roles that are concomitant with massive changes to the intracellular environment is during desiccation (extreme drying). The ability of organisms to survive desiccation has long been linked to the accumulation of high levels of cosolutes such as trehalose or sucrose as well as the enrichment of IDPs, such as late embryogenesis abundant (LEA) proteins or cytoplasmic abundant heat-soluble (CAHS) proteins. …
Camkk2: Bridging The Gap Between Ca2+ Signaling And Energy-Sensing, Luke M Mcaloon, Abbey G Muller, Kevin Nay, Eudora L Lu, Benoit Smeuninx, Anthony R Means, Mark A Febbraio, John W Scott
Camkk2: Bridging The Gap Between Ca2+ Signaling And Energy-Sensing, Luke M Mcaloon, Abbey G Muller, Kevin Nay, Eudora L Lu, Benoit Smeuninx, Anthony R Means, Mark A Febbraio, John W Scott
Faculty, Staff and Students Publications
Calcium (Ca2+) ions are ubiquitous and indispensable signaling messengers that regulate virtually every cell function. The unique ability of Ca2+ to regulate so many different processes yet cause stimulus specific changes in cell function requires sensing and decoding of Ca2+ signals. Ca2+-sensing proteins, such as calmodulin, decode Ca2+ signals by binding and modifying the function of a diverse range of effector proteins. These effectors include the Ca2+-calmodulin dependent protein kinase kinase-2 (CaMKK2) enzyme, which is the core component of a signaling cascade that plays a key role in important physiological and pathophysiological processes, including brain function and cancer. In addition …
Reconstitution Of Arp2/3-Nucleated Actin Assembly With Proteins Cp, V-1, And Carmil, Olivia L Mooren, Patrick Mcconnell, James D Debrecht, Anshuman Jaysingh, John A Cooper
Reconstitution Of Arp2/3-Nucleated Actin Assembly With Proteins Cp, V-1, And Carmil, Olivia L Mooren, Patrick Mcconnell, James D Debrecht, Anshuman Jaysingh, John A Cooper
2020-Current year OA Pubs
Actin polymerization is often associated with membrane proteins containing capping-protein-interacting (CPI) motifs, such as capping protein, Arp2/3, myosin I linker (CARMIL), CD2AP, and WASHCAP/Fam21. CPI motifs bind directly to actin-capping protein (CP), and this interaction weakens the binding of CP to barbed ends of actin filaments, lessening the ability of CP to functionally cap those ends. The protein V-1/myotrophin binds to the F-actin-binding site on CP and sterically blocks CP from binding barbed ends. CPI-motif proteins also weaken the binding between V-1 and CP, which decreases the inhibitory effects of V-1, thereby freeing CP to cap barbed ends. Here, we …
Reduced K+ Build-Up In T-Tubules Contributes To Resistance Of The Diaphragm To Myotonia, Jessica H. Myers, Kirsten Denman, Chris Dupont, Brent D. Foy, Mark M. Rich
Reduced K+ Build-Up In T-Tubules Contributes To Resistance Of The Diaphragm To Myotonia, Jessica H. Myers, Kirsten Denman, Chris Dupont, Brent D. Foy, Mark M. Rich
Physics Faculty Publications
Patients with myotonia congenita suffer from slowed muscle relaxation caused by hyperexcitability. The diaphragm is only mildly affected in myotonia congenita; discovery of the mechanism underlying its resistance to myotonia could identify novel therapeutic targets. Intracellular recordings from two mouse models of myotonia congenita revealed the diaphragm had less myotonia than either the extensor digitorum longus (EDL) or the soleus muscles. A mechanism contributing to resistance of the diaphragm to myotonia was reduced depolarization of the interspike membrane potential during repetitive firing of action potentials, a process driven by build-up of K+ in small invaginations of muscle membrane known as …
Restorative Function Of Offshore Longline Mussel Farms With Ecological Benefits For Commercial Crustacean Species, Thomas Stamp, Simon J. Pittman, Luke A. Holmes, Adam Rees, Benjamin J. Ciotti, Harry Thatcher, Peter Davies, Alice Hall, Georgia Wells, Anna Olczak, Emma V. Sheehan
Restorative Function Of Offshore Longline Mussel Farms With Ecological Benefits For Commercial Crustacean Species, Thomas Stamp, Simon J. Pittman, Luke A. Holmes, Adam Rees, Benjamin J. Ciotti, Harry Thatcher, Peter Davies, Alice Hall, Georgia Wells, Anna Olczak, Emma V. Sheehan
School of Biological and Marine Sciences
Offshore ocean aquaculture is expanding globally to meet the growing demand for sustainable food production. At the United Kingdom's largest longline mussel farm, we assessed the potential for the farm to improve the habitat suitability for commercially important crustaceans. Modelled distribution patterns (GAM & GLM) predicted the low complexity seabed beneath the mussel farm was 34–94 % less suitable for European lobster (Homarus gammarus) and brown crab (Cancer pagurus) than nearby rocky reefs. The mussel farm operations, however, contributed large amounts of living mussels and shell material to the seabed. Acoustic telemetry revealed that H.gammarus remained within the farm for …
Epigenome Reprogramming Through H3k27 And H3k4 Trimethylation As A Resistance Mechanism To Dna Methylation Inhibition In Brafv600e-Mutated Colorectal Cancer, Hey Min Lee, Ajay Kumar Saw, Van K Morris, Stefania Napolitano, Christopher Bristow, Sanjana Srinivasan, Micheal Peoples, Alexey Sorokin, Preeti Kanikarla Marie, Jonathan Schulz, Anand K Singh, Christopher Terranova, Oluwadara Coker, Abhinav Jain, Scott Kopetz, Kunal Rai
Epigenome Reprogramming Through H3k27 And H3k4 Trimethylation As A Resistance Mechanism To Dna Methylation Inhibition In Brafv600e-Mutated Colorectal Cancer, Hey Min Lee, Ajay Kumar Saw, Van K Morris, Stefania Napolitano, Christopher Bristow, Sanjana Srinivasan, Micheal Peoples, Alexey Sorokin, Preeti Kanikarla Marie, Jonathan Schulz, Anand K Singh, Christopher Terranova, Oluwadara Coker, Abhinav Jain, Scott Kopetz, Kunal Rai
Faculty, Staff and Student Publications
Purpose: BRAFV600E-mutated colorectal cancer exhibits a strong correlation with DNA hypermethylation, suggesting that this subgroup of tumors presents unique epigenomic phenotypes. Nonetheless, 5-azacitidine, which inhibits DNA methyltransferase activity, is not efficacious in BRAFV600E colorectal cancer in vivo.
Experimental design: We randomized and treated mice implanted with patient-derived tumor xenografts harboring BRAFV600E mutation with control, 5-azacitidine, vemurafenib (BRAF inhibitor), or the combination. Comprehensive epigenomic profiling was conducted on control and 5-azacitidine-treated tumor samples, including DNA methylation, histone modifications, chromatin accessibility, and gene expression. Combinations of epigenetic agents were explored in preclinical BRAFV600E colorectal cancer models.
Results: A profound reduction of DNA …
Low-Molecular Weight Cyclin E Confers A Vulnerability To Pkmyt1 Inhibition In Triple-Negative Breast Cancer, Mi Li, Amriti R Lulla, Yan Wang, Spyros Tsavaschidis, Fuchenchu Wang, Cansu Karakas, Tuyen D T Nguyen, Tuyen N Bui, Marc A Pina, Mei-Kuang Chen, Sofia Mastoraki, Asha S Multani, Natalie W Fowlkes, Aysegul Sahin, C Gary Marshall, Kelly K Hunt, Khandan Keyomarsi
Low-Molecular Weight Cyclin E Confers A Vulnerability To Pkmyt1 Inhibition In Triple-Negative Breast Cancer, Mi Li, Amriti R Lulla, Yan Wang, Spyros Tsavaschidis, Fuchenchu Wang, Cansu Karakas, Tuyen D T Nguyen, Tuyen N Bui, Marc A Pina, Mei-Kuang Chen, Sofia Mastoraki, Asha S Multani, Natalie W Fowlkes, Aysegul Sahin, C Gary Marshall, Kelly K Hunt, Khandan Keyomarsi
Faculty, Staff and Student Publications
Cyclin E is a regulatory subunit of CDK2 that mediates S phase entry and progression. The cleavage of full-length cyclin E (FL-cycE) to low-molecular weight isoforms (LMW-E) dramatically alters substrate specificity, promoting G1-S cell cycle transition and accelerating mitotic exit. Approximately 70% of triple-negative breast cancers (TNBC) express LMW-E, which correlates with poor prognosis. PKMYT1 also plays an important role in mitosis by inhibiting CDK1 to block premature mitotic entry, suggesting it could be a therapeutic target in TNBC expressing LMW-E. In this study, analysis of tumor samples of patients with TNBC revealed that coexpression of LMW-E and PKMYT1-catalyzed CDK1 …
Vertical Arrays Of Artificial Rockpools On A Seawall Provide Refugia Across Tidal Levels For Intertidal Species In The Uk, Jessica R. Bone, Rick Stafford, Alice E. Hall, Roger J.H. Herbert
Vertical Arrays Of Artificial Rockpools On A Seawall Provide Refugia Across Tidal Levels For Intertidal Species In The Uk, Jessica R. Bone, Rick Stafford, Alice E. Hall, Roger J.H. Herbert
School of Biological and Marine Sciences
Eco-engineering of coastal infrastructure aims to address the insufficient intertidal habitat provided by coastal development and flood defence. There are numerous ways to enhance coastal infrastructure with habitat features, but a common method involves retrofitting artificial rockpools. Often these are ‘bolt-on’ units that are fixed to existing coastal infrastructure but there is a paucity of literature on how to optimise their arrangement for biodiversity. In this study, 24 artificial rockpools were installed at three levels between High Water Neaps and Mean Tide Level on a vertical concrete seawall on the south coast of the UK. The species abundance of the …
Mitochondrial Pyruvate Transport Regulates Presynaptic Metabolism And Neurotransmission, Anupama Tiwari, Jongyun Myeong, Arsalan Hashemiaghdam, Marion I Stunault, Hao Zhang, Xiangfeng Niu, Marissa A Laramie, Jasmin Sponagel, Leah P Shriver, Gary J Patti, Vitaly A Klyachko, Ghazaleh Ashrafi
Mitochondrial Pyruvate Transport Regulates Presynaptic Metabolism And Neurotransmission, Anupama Tiwari, Jongyun Myeong, Arsalan Hashemiaghdam, Marion I Stunault, Hao Zhang, Xiangfeng Niu, Marissa A Laramie, Jasmin Sponagel, Leah P Shriver, Gary J Patti, Vitaly A Klyachko, Ghazaleh Ashrafi
2020-Current year OA Pubs
Glucose has long been considered the primary fuel source for the brain. However, glucose levels fluctuate in the brain during sleep or circuit activity, posing major metabolic stress. Here, we demonstrate that the mammalian brain uses pyruvate as a fuel source, and pyruvate can support neuronal viability in the absence of glucose. Nerve terminals are sites of metabolic vulnerability, and we show that mitochondrial pyruvate uptake is a critical step in oxidative ATP production in hippocampal terminals. We find that the mitochondrial pyruvate carrier is post-translationally modified by lysine acetylation, which, in turn, modulates mitochondrial pyruvate uptake. Our data reveal …
Oncolytic Virotherapies And Adjuvant Gut Microbiome Therapeutics To Enhance Efficacy Against Malignant Gliomas, Natalie M Meléndez-Vázquez, Candelaria Gomez-Manzano, Filipa Godoy-Vitorino
Oncolytic Virotherapies And Adjuvant Gut Microbiome Therapeutics To Enhance Efficacy Against Malignant Gliomas, Natalie M Meléndez-Vázquez, Candelaria Gomez-Manzano, Filipa Godoy-Vitorino
Faculty, Staff and Student Publications
Glioblastoma (GBM) is the most prevalent malignant brain tumor. Current standard-of-care treatments offer limited benefits for patient survival. Virotherapy is emerging as a novel strategy to use oncolytic viruses (OVs) for the treatment of GBM. These engineered and non-engineered viruses infect and lyse cancer cells, causing tumor destruction without harming healthy cells. Recent advances in genetic modifications to OVs have helped improve their targeting capabilities and introduce therapeutic genes, broadening the therapeutic window and minimizing potential side effects. The efficacy of oncolytic virotherapy can be enhanced by combining it with other treatments such as immunotherapy, chemotherapy, or radiation. Recent studies …
Evidence That Crispr-Cas9 Y537s-Mutant Expressing Breast Cancer Cells Activate Yes-Associated Protein 1 To Driving The Conversion Of Normal Fibroblasts Into Cancer-Associated Fibroblasts, Luca Gelsomino, Amanda Caruso, Emine Tasan, Adele Elisabetta Leonetti, Rocco Malivindi, Giuseppina Daniela Naimo, Francesca Giordano, Salvatore Panza, Guowei Gu, Benedetta Perrone, Cinzia Giordano, Loredana Mauro, Bruno Nardo, Gianfranco Filippelli, Daniela Bonofiglio, Ines Barone, Suzanne A W Fuqua, Stefania Catalano, Sebastiano Andò
Evidence That Crispr-Cas9 Y537s-Mutant Expressing Breast Cancer Cells Activate Yes-Associated Protein 1 To Driving The Conversion Of Normal Fibroblasts Into Cancer-Associated Fibroblasts, Luca Gelsomino, Amanda Caruso, Emine Tasan, Adele Elisabetta Leonetti, Rocco Malivindi, Giuseppina Daniela Naimo, Francesca Giordano, Salvatore Panza, Guowei Gu, Benedetta Perrone, Cinzia Giordano, Loredana Mauro, Bruno Nardo, Gianfranco Filippelli, Daniela Bonofiglio, Ines Barone, Suzanne A W Fuqua, Stefania Catalano, Sebastiano Andò
Faculty, Staff and Students Publications
BACKGROUND: Endocrine therapy (ET) has improved the clinical outcomes of Estrogen receptor alpha-positive (ERɑ +) breast cancer (BC) patients, even though resistance to ET remains a clinical issue. Mutations in the hormone-binding domain of ERɑ represent an acquired intrinsic mechanism of ET resistance. However, the latter also depends on the multiple functional interactions between BC cells and the tumor microenvironment (TME). Here, we investigated how the most common Y537S-ERɑ mutation may influence the behavior of fibroblasts, the most prominent component of the TME.
METHODS: We conducted coculture experiments with normal human foreskin fibroblasts BJ1-hTERT (NFs), cancer-associated fibroblasts (CAFs), isolated from …
Behavioral And Neural Mechanisms Of Face-Specific Attention During Goal-Directed Visual Search, Jie Zhang, Xiaocang Zhu, Huihui Zhou, Shuo Wang
Behavioral And Neural Mechanisms Of Face-Specific Attention During Goal-Directed Visual Search, Jie Zhang, Xiaocang Zhu, Huihui Zhou, Shuo Wang
2020-Current year OA Pubs
Goal-directed visual attention is a fundamental cognitive process that enables animals to selectively focus on specific regions of the visual field while filtering out irrelevant information. However, given the domain specificity of social behaviors, it remains unclear whether attention to faces versus nonfaces recruits different neurocognitive processes. In this study, we simultaneously recorded activity from temporal and frontal nodes of the attention network while macaques performed a goal-directed visual search task. V4 and inferotemporal (IT) visual category-selective units, selected during cue presentation, discriminated fixations on targets and distractors during the search but were differentially engaged by face and house targets. …
Contributions Of Mirror-Image Hair Cell Orientation To Mouse Otolith Organ And Zebrafish Neuromast Function., Kazuya Ono, Amandine Jarysta, Natasha C Hughes, Alma Jukic, Hui Ho Vanessa Chang, Michael R Deans, Ruth Anne Eatock, Kathleen E Cullen, Katie S Kindt, Basile Tarchini
Contributions Of Mirror-Image Hair Cell Orientation To Mouse Otolith Organ And Zebrafish Neuromast Function., Kazuya Ono, Amandine Jarysta, Natasha C Hughes, Alma Jukic, Hui Ho Vanessa Chang, Michael R Deans, Ruth Anne Eatock, Kathleen E Cullen, Katie S Kindt, Basile Tarchini
Faculty Research 2024
Otolith organs in the inner ear and neuromasts in the fish lateral-line harbor two popu- lations of hair cells oriented to detect stimuli in opposing directions. The underlying mechanism is highly conserved: the transcription factor EMX2 is regionally expressed in just one hair cell popu- lation and acts through the receptor GPR156 to reverse cell orientation relative to the other popu- lation. In mouse and zebrafish, loss of Emx2 results in sensory organs that harbor only one hair cell orientation and are not innervated properly. In zebrafish, Emx2 also confers hair cells with reduced mechanosensory properties. Here, we leverage mouse …
Regulatory T Cells Require Peripheral Ccl2-Ccr2 Signaling To Facilitate The Resolution Of Medication Overuse Headache-Related Behavioral Sensitization, Sun Ryu, Jintao Zhang, Roli Simoes, Xuemei Liu, Zhaohua Guo, Li Feng, Jacqueline Unsinger, Richard S Hotchkiss, Yu-Qing Cao
Regulatory T Cells Require Peripheral Ccl2-Ccr2 Signaling To Facilitate The Resolution Of Medication Overuse Headache-Related Behavioral Sensitization, Sun Ryu, Jintao Zhang, Roli Simoes, Xuemei Liu, Zhaohua Guo, Li Feng, Jacqueline Unsinger, Richard S Hotchkiss, Yu-Qing Cao
2020-Current year OA Pubs
BACKGROUND: Medication overuse headache (MOH) is the most common secondary headache disorder, resulting from chronic and excessive use of medication to treat headaches, for example, sumatriptan. In a recent study, we have shown that the peripheral C-C motif ligand 2 (CCL2), C-C motif chemokine receptor 2 (CCR2) and calcitonin-gene-related peptide (CGRP) signaling pathways interact with each other and play critical roles in the development of chronic migraine-related behavioral and cellular sensitization. In the present study, we investigated whether CCL2-CCR2 and CGRP signaling pathways play a role in the development of sumatriptan overuse-induced sensitization, and whether they are involved in its …
Analysis Of Cns Autoimmunity In Genetically Diverse Mice Reveals Unique Phenotypes And Mechanisms., Emily A Nelson, Anna L. Tyler, Taylor Lakusta-Wong, Karolyn G Lahue, Katherine C Hankes, Cory Teuscher, Rachel M Lynch, Martin T Ferris, J Matthew Mahoney, Dimitry N Krementsov
Analysis Of Cns Autoimmunity In Genetically Diverse Mice Reveals Unique Phenotypes And Mechanisms., Emily A Nelson, Anna L. Tyler, Taylor Lakusta-Wong, Karolyn G Lahue, Katherine C Hankes, Cory Teuscher, Rachel M Lynch, Martin T Ferris, J Matthew Mahoney, Dimitry N Krementsov
Faculty Research 2024
Multiple sclerosis (MS) is a complex disease with significant heterogeneity in disease course and progression. Genetic studies have identified numerous loci associated with MS risk, but the genetic basis of disease progression remains elusive. To address this, we leveraged the Collaborative Cross (CC), a genetically diverse mouse strain panel, and experimental autoimmune encephalomyelitis (EAE). The 32 CC strains studied captured a wide spectrum of EAE severity, trajectory, and presentation, including severe-progressive, monophasic, relapsing remitting, and axial rotary-EAE (AR-EAE), accompanied by distinct immunopathology. Sex differences in EAE severity were observed in 6 strains. Quantitative trait locus analysis revealed distinct genetic linkage …
Multi-Organ Gene Expression Analysis And Network Modeling Reveal Regulatory Control Cascades During The Development Of Hypertension In Female Spontaneously Hypertensive Rat, Eden Hornung, Sirisha Achanta, Alison Moss, James S. Schwaber, Rajanikanth Vadigepalli
Multi-Organ Gene Expression Analysis And Network Modeling Reveal Regulatory Control Cascades During The Development Of Hypertension In Female Spontaneously Hypertensive Rat, Eden Hornung, Sirisha Achanta, Alison Moss, James S. Schwaber, Rajanikanth Vadigepalli
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Hypertension is a multifactorial disease with stage-specific gene expression changes occurring in multiple organs over time. The temporal sequence and the extent of gene regulatory network changes occurring across organs during the development of hypertension remain unresolved. In this study, female spontaneously hypertensive (SHR) and normotensive Wistar Kyoto (WKY) rats were used to analyze expression patterns of 96 genes spanning inflammatory, metabolic, sympathetic, fibrotic, and renin-angiotensin (RAS) pathways in five organs, at five time points from the onset to established hypertension. We analyzed this multi-dimensional dataset containing ~15,000 data points and developed a data-driven dynamic network model that accounts for …
Modeling Antisense Oligonucleotide Therapy In Mecp2 Duplication Syndrome Human Ipsc-Derived Neurons Reveals Gene Expression Programs Responsive To Mecp2 Levels, Sameer S Bajikar, Yehezkel Sztainberg, Alexander J Trostle, Harini P Tirumala, Ying-Wooi Wan, Caroline L Harrop, Jesse D Bengtsson, Claudia M B Carvalho, Davut Pehlivan, Bernhard Suter, Jeffrey L Neul, Zhandong Liu, Paymaan Jafar-Nejad, Frank Rigo, Huda Y Zoghbi
Modeling Antisense Oligonucleotide Therapy In Mecp2 Duplication Syndrome Human Ipsc-Derived Neurons Reveals Gene Expression Programs Responsive To Mecp2 Levels, Sameer S Bajikar, Yehezkel Sztainberg, Alexander J Trostle, Harini P Tirumala, Ying-Wooi Wan, Caroline L Harrop, Jesse D Bengtsson, Claudia M B Carvalho, Davut Pehlivan, Bernhard Suter, Jeffrey L Neul, Zhandong Liu, Paymaan Jafar-Nejad, Frank Rigo, Huda Y Zoghbi
Faculty, Staff and Students Publications
Genomic copy-number variations (CNVs) that can cause neurodevelopmental disorders often encompass many genes, which complicates our understanding of how individual genes within a CNV contribute to pathology. MECP2 duplication syndrome (MDS or MRXSL in OMIM; OMIM#300260) is one such CNV disorder caused by duplications spanning methyl CpG-binding protein 2 (MECP2) and other genes on Xq28. Using an antisense oligonucleotide (ASO) to normalize MECP2 dosage is sufficient to rescue abnormal neurological phenotypes in mouse models overexpressing MECP2 alone, implicating the importance of increased MECP2 dosage within CNVs of Xq28. However, because MDS CNVs span MECP2 and additional genes, we generated human …
The Rna Receptor Rig-I Binding Synthetic Oligodeoxynucleotide Promotes Pneumonia Survival, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleóngarcía, Michael K Longmire, Mathilde Lethier, Stephen Cusack, Scott E Evans
The Rna Receptor Rig-I Binding Synthetic Oligodeoxynucleotide Promotes Pneumonia Survival, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleóngarcía, Michael K Longmire, Mathilde Lethier, Stephen Cusack, Scott E Evans
Faculty, Staff and Student Publications
Pneumonia is a worldwide threat to public health, demanding novel preventative and therapeutic strategies. The lung epithelium is a critical environmental interface that functions as a physical barrier to pathogen invasion while also actively sensing and responding to pathogens. We have reported that stimulating lung epithelial cells with a combination therapeutic consisting of a diacylated lipopeptide and a synthetic CpG oligodeoxynucleotide (ODN) induces synergistic pneumonia protection against a wide range of pathogens. We report here that mice deficient in TLR9, the previously described receptor for ODN, still displayed partial ODN-induced protection. This prompted us to seek an alternate ODN receptor, …
Ephb4-Rasa1 Inhibition Of Piezo1 Ras Activation Drives Lymphatic Valvulogenesis, Di Chen, Yipei Tang, Philip E Lapinski, David Wiggins, Eva M Sevick, Michael J Davis, Philip D King
Ephb4-Rasa1 Inhibition Of Piezo1 Ras Activation Drives Lymphatic Valvulogenesis, Di Chen, Yipei Tang, Philip E Lapinski, David Wiggins, Eva M Sevick, Michael J Davis, Philip D King
Faculty, Staff and Student Publications
BACKGROUND: EPHB4 (ephrin receptor B4) and the RASA1 (p120 Ras GTPase-activating protein) are necessary for the development of lymphatic vessel (LV) valves. However, precisely how EPHB4 and RASA1 regulate LV valve development is unknown. In this study, we examine the mechanisms by which EPHB4 and RASA1 regulate the development of LV valves.
METHODS: We used LV-specific inducible EPHB4-deficient mice and EPHB4 knockin mice that express a form of EPHB4 that is unable to bind RASA1 yet retains protein tyrosine kinase activity (EPHB4 2YP) to study the role of EPHB4 and RASA1 in LV valve development in the embryo and LV …
Microglia Drive Diurnal Variation In Susceptibility To Inflammatory Blood-Brain Barrier Breakdown, Jennifer H. Lawrence, Asha Patel, Melvin W. King, Collin J. Nadarajah, Richard Daneman, Erik S. Musiek
Microglia Drive Diurnal Variation In Susceptibility To Inflammatory Blood-Brain Barrier Breakdown, Jennifer H. Lawrence, Asha Patel, Melvin W. King, Collin J. Nadarajah, Richard Daneman, Erik S. Musiek
2020-Current year OA Pubs
The blood-brain barrier (BBB) is critical for maintaining brain homeostasis but is susceptible to inflammatory dysfunction. While transporter-dependent efflux of some lipophilic substrates across the BBB shows circadian variation due to rhythmic transporter expression, basal transporter-independent permeability and leakage is nonrhythmic. Whether daily timing influences BBB permeability in response to inflammation is unknown. Here, we induced systemic inflammation through repeated LPS injections either in the morning (ZT1) or evening (ZT13) under standard lighting conditions; we then examined BBB permeability to a polar molecule that is not a transporter substrate, sodium fluorescein. We observed clear diurnal variation in inflammatory BBB permeability, …
Hurp Facilitates Spindle Assembly By Stabilizing Microtubules And Working Synergistically With Tpx2, Venecia Alexandria Valdez, Meisheng Ma, Bernardo Gouveia, Rui Zhang, Sabine Petry
Hurp Facilitates Spindle Assembly By Stabilizing Microtubules And Working Synergistically With Tpx2, Venecia Alexandria Valdez, Meisheng Ma, Bernardo Gouveia, Rui Zhang, Sabine Petry
2020-Current year OA Pubs
In vertebrate spindles, most microtubules are formed via branching microtubule nucleation, whereby microtubules nucleate along the side of pre-existing microtubules. Hepatoma up-regulated protein (HURP) is a microtubule-associated protein that has been implicated in spindle assembly, but its mode of action is yet to be defined. In this study, we show that HURP is necessary for RanGTP-induced branching microtubule nucleation in Xenopus egg extract. Specifically, HURP stabilizes the microtubule lattice to promote microtubule formation from γ-TuRC. This function is shifted to promote branching microtubule nucleation through enhanced localization to TPX2 condensates, which form the core of the branch site on microtubules. …
Mark2 Variants Cause Autism Spectrum Disorder Via The Downregulation Of Wnt/Β-Catenin Signaling Pathway., Maolei Gong, Jiayi Li, Zailong Qin, Matheus Vernet Machado Bressan Wilke, Yijun Liu, Qian Li, Haoran Liu, Chen Liang, Joel A. Morales-Rosado, Ana S A Cohen, Susan S. Hughes, Bonnie Sullivan, Valerie A. Waddell, Marie-José H. Van Den Boogaard, Richard H. Van Jaarsveld, Ellen Van Binsbergen, Koen L. Van Gassen, Tianyun Wang, Susan M. Hiatt, Michelle D. Amaral, Whitley V. Kelley, Jianbo Zhao, Weixing Feng, Changhong Ren, Yazhen Yu, Nicole J. Boczek, Matthew J. Ferber, Carrie Lahner, Sherr Elliott, Yiyan Ruan, Cyril Mignot, Boris Keren, Hua Xie, Xiaoyan Wang, Bernt Popp, Christiane Zweier, Juliette Piard, Christine Coubes, Frederic Tran Mau-Them, Hana Safraou, A Micheil Innes, Julie Gauthier, Jacques L. Michaud, Daniel C. Koboldt, Odent Sylvie, Marjolaine Willems, Wen-Hann Tan, Benjamin Cogne, Claudine Rieubland, Dominique Braun, Scott Douglas Mclean, Konrad Platzer, Pia Zacher, Henry Oppermann, Lucie Evenepoel, Pierre Blanc, Laïla El Khattabi, Neshatul Haque, Nikita R. Dsouza, Michael T. Zimmermann, Raul Urrutia, Eric W. Klee, Yiping Shen, Hongzhen Du, Leonard Rappaport, Chang-Mei Liu, Xiaoli Chen
Mark2 Variants Cause Autism Spectrum Disorder Via The Downregulation Of Wnt/Β-Catenin Signaling Pathway., Maolei Gong, Jiayi Li, Zailong Qin, Matheus Vernet Machado Bressan Wilke, Yijun Liu, Qian Li, Haoran Liu, Chen Liang, Joel A. Morales-Rosado, Ana S A Cohen, Susan S. Hughes, Bonnie Sullivan, Valerie A. Waddell, Marie-José H. Van Den Boogaard, Richard H. Van Jaarsveld, Ellen Van Binsbergen, Koen L. Van Gassen, Tianyun Wang, Susan M. Hiatt, Michelle D. Amaral, Whitley V. Kelley, Jianbo Zhao, Weixing Feng, Changhong Ren, Yazhen Yu, Nicole J. Boczek, Matthew J. Ferber, Carrie Lahner, Sherr Elliott, Yiyan Ruan, Cyril Mignot, Boris Keren, Hua Xie, Xiaoyan Wang, Bernt Popp, Christiane Zweier, Juliette Piard, Christine Coubes, Frederic Tran Mau-Them, Hana Safraou, A Micheil Innes, Julie Gauthier, Jacques L. Michaud, Daniel C. Koboldt, Odent Sylvie, Marjolaine Willems, Wen-Hann Tan, Benjamin Cogne, Claudine Rieubland, Dominique Braun, Scott Douglas Mclean, Konrad Platzer, Pia Zacher, Henry Oppermann, Lucie Evenepoel, Pierre Blanc, Laïla El Khattabi, Neshatul Haque, Nikita R. Dsouza, Michael T. Zimmermann, Raul Urrutia, Eric W. Klee, Yiping Shen, Hongzhen Du, Leonard Rappaport, Chang-Mei Liu, Xiaoli Chen
Manuscripts, Articles, Book Chapters and Other Papers
Microtubule affinity-regulating kinase 2 (MARK2) contributes to establishing neuronal polarity and developing dendritic spines. Although large-scale sequencing studies have associated MARK2 variants with autism spectrum disorder (ASD), the clinical features and variant spectrum in affected individuals with MARK2 variants, early developmental phenotypes in mutant human neurons, and the pathogenic mechanism underlying effects on neuronal development have remained unclear. Here, we report 31 individuals with MARK2 variants and presenting with ASD, other neurodevelopmental disorders, and distinctive facial features. Loss-of-function (LoF) variants predominate (81%) in affected individuals, while computational analysis and in vitro expression assay of missense variants supported the effect of …
Homozygous Variants In Wdr83os Lead To A Neurodevelopmental Disorder With Hypercholanemia, Scott Barish, Sheng-Jia Lin, Reza Maroofian, Alper Gezdirici, Hamoud Alhebby, Aurélien Trimouille, Marta Biderman Waberski, Tadahiro Mitani, Ilka Huber, Kristian Tveten, Øystein L Holla, Øyvind L Busk, Henry Houlden, Ehsan Ghayoor Karimiani, Mehran Beiraghi Toosi, Reza Shervin Badv, Paria Najarzadeh Torbati, Fatemeh Eghbal, Javad Akhondian, Ayat Al Safar, Abdulrahman Alswaid, Giovanni Zifarelli, Peter Bauer, Dana Marafi, Jawid M Fatih, Kevin Huang, Cassidy Petree, Daniel G Calame, Charlotte Von Der Lippe, Fowzan S Alkuraya, Sami Wali, James R Lupski, Gaurav K Varshney, Jennifer E Posey, Davut Pehlivan
Homozygous Variants In Wdr83os Lead To A Neurodevelopmental Disorder With Hypercholanemia, Scott Barish, Sheng-Jia Lin, Reza Maroofian, Alper Gezdirici, Hamoud Alhebby, Aurélien Trimouille, Marta Biderman Waberski, Tadahiro Mitani, Ilka Huber, Kristian Tveten, Øystein L Holla, Øyvind L Busk, Henry Houlden, Ehsan Ghayoor Karimiani, Mehran Beiraghi Toosi, Reza Shervin Badv, Paria Najarzadeh Torbati, Fatemeh Eghbal, Javad Akhondian, Ayat Al Safar, Abdulrahman Alswaid, Giovanni Zifarelli, Peter Bauer, Dana Marafi, Jawid M Fatih, Kevin Huang, Cassidy Petree, Daniel G Calame, Charlotte Von Der Lippe, Fowzan S Alkuraya, Sami Wali, James R Lupski, Gaurav K Varshney, Jennifer E Posey, Davut Pehlivan
Faculty, Staff and Students Publications
WD repeat domain 83 opposite strand (WDR83OS) encodes the 106-aa (amino acid) protein Asterix, which heterodimerizes with CCDC47 to form the PAT (protein associated with ER translocon) complex. This complex functions as a chaperone for large proteins containing transmembrane domains to ensure proper folding. Until recently, little was known about the role of WDR83OS or CCDC47 in human disease traits. However, biallelic variants in CCDC47 were identified in four unrelated families with trichohepatoneurodevelopmental syndrome, characterized by a neurodevelopmental disorder (NDD) with liver dysfunction. Three affected siblings in an additional family share a homozygous truncating WDR83OS variant and a phenotype of …
Lactobacillus Rhamnosus Modulates Murine Neonatal Gut Microbiota And Inflammation Caused By Pathogenic Escherichia Coli., Hao Xuan, Shahid Umar, Cuncong Zhong, Wei Yu, Ishfaq Ahmed, Joshua Wheatley, Venkatesh Sampath, Susana Chavez-Bueno
Lactobacillus Rhamnosus Modulates Murine Neonatal Gut Microbiota And Inflammation Caused By Pathogenic Escherichia Coli., Hao Xuan, Shahid Umar, Cuncong Zhong, Wei Yu, Ishfaq Ahmed, Joshua Wheatley, Venkatesh Sampath, Susana Chavez-Bueno
Manuscripts, Articles, Book Chapters and Other Papers
BACKGROUND: Pathogenic Escherichia coli strains produce neonatal septicemia after colonizing the neonatal gut. While the probiotic Lactobacillus rhamnosus GG (LGG) effectively reduces neonatal sepsis, LGG's effects on the neonatal intestinal microbiota alterations and inflammation triggered by E. coli are incompletely understood. We hypothesized that LGG significantly modulates the specific neonatal gut microbial populations changes and the inflammatory response elicited by the enteral introduction of septicemia-producing E. coli. To test this hypothesis, newborn rats were pretreated orally with LGG or placebo prior to infection with the neonatal E. coli septicemia clinical isolate SCB34. Amplicon 16S rRNA gene sequencing was performed on …
Skn-1 Activation During Infection Of Caenorhabditis Elegans Requires Cdc-48 And Endoplasmic Reticulum Proteostasis, Carolaing Gabaldón, Ozgur Karakuzu, Danielle A Garsin
Skn-1 Activation During Infection Of Caenorhabditis Elegans Requires Cdc-48 And Endoplasmic Reticulum Proteostasis, Carolaing Gabaldón, Ozgur Karakuzu, Danielle A Garsin
Faculty, Staff and Student Publications
During challenge of Caenorhabditis elegans with human bacterial pathogens such as Pseudomonas aeruginosa and Enterococcus faecalis, the elicited host response can be damaging if not properly controlled. The activation of Nrf (nuclear factor erythroid-related factor)/CNC (Cap-n-collar) transcriptional regulators modulates the response by upregulating genes that neutralize damaging molecules and promote repair processes. Activation of the C. elegans Nrf ortholog, SKN-1, is tightly controlled by a myriad of regulatory mechanisms, but a central feature is an activating phosphorylation accomplished by the p38 mitogen-activated kinase (MAPK) cascade. In this work, loss of CDC-48, an AAA+ ATPase, was observed to severely compromise SKN-1 …
Induction Of A Distinct Macrophage Population And Protection From Lung Injury And Fibrosis By Notch2 Blockade, Mayra Cruz Tleugabulova, Meizi Liu, Michael S Diamond, Et Al.
Induction Of A Distinct Macrophage Population And Protection From Lung Injury And Fibrosis By Notch2 Blockade, Mayra Cruz Tleugabulova, Meizi Liu, Michael S Diamond, Et Al.
2020-Current year OA Pubs
Macrophages are pleiotropic and diverse cells that populate all tissues of the body. Besides tissue-specific resident macrophages such as alveolar macrophages, Kupffer cells, and microglia, multiple organs harbor at least two subtypes of other resident macrophages at steady state. During certain circumstances, like tissue insult, additional subtypes of macrophages are recruited to the tissue from the monocyte pool. Previously, a recruited macrophage population marked by expression of Spp1, Cd9, Gpnmb, Fabp5, and Trem2, has been described in several models of organ injury and cancer, and has been linked to fibrosis in mice and humans. Here, we show that Notch2 blockade, …
Failure In A Population: Tauopathy Disrupts Homeostatic Set-Points In Emergent Dynamics Despite Stability In The Constituent Neurons, James N Mcgregor, Clayton A Farris, Sahara Ensley, Aidan Schneider, Leandro J Fosque, Chao Wang, Elizabeth I Tilden, Yuqi Liu, Jianhong Tu, Halla Elmore, Keenan D Ronayne, Ralf Wessel, Kiran Bhaskaran-Nair, David M Holtzman, Keith B Hengen, Et Al.
Failure In A Population: Tauopathy Disrupts Homeostatic Set-Points In Emergent Dynamics Despite Stability In The Constituent Neurons, James N Mcgregor, Clayton A Farris, Sahara Ensley, Aidan Schneider, Leandro J Fosque, Chao Wang, Elizabeth I Tilden, Yuqi Liu, Jianhong Tu, Halla Elmore, Keenan D Ronayne, Ralf Wessel, Kiran Bhaskaran-Nair, David M Holtzman, Keith B Hengen, Et Al.
2020-Current year OA Pubs
Homeostatic regulation of neuronal activity is essential for robust computation; set-points, such as firing rate, are actively stabilized to compensate for perturbations. The disruption of brain function central to neurodegenerative disease likely arises from impairments of computationally essential set-points. Here, we systematically investigated the effects of tau-mediated neurodegeneration on all known set-points in neuronal activity. We continuously tracked hippocampal neuronal activity across the lifetime of a mouse model of tauopathy. We were unable to detect effects of disease in measures of single-neuron firing activity. By contrast, as tauopathy progressed, there was disruption of network-level neuronal activity, quantified by measuring neuronal …
Engineered Self-Regulating Macrophages For Targeted Anti-Inflammatory Drug Delivery, Molly Klimak, Amanda Cimino, Kristin L Lenz, Luke E Springer, Kelsey H Collins, Natalia S Harasymowicz, Nathan Xu, Christine T N Pham, Farshid Guilak
Engineered Self-Regulating Macrophages For Targeted Anti-Inflammatory Drug Delivery, Molly Klimak, Amanda Cimino, Kristin L Lenz, Luke E Springer, Kelsey H Collins, Natalia S Harasymowicz, Nathan Xu, Christine T N Pham, Farshid Guilak
2020-Current year OA Pubs
BACKGROUND: Rheumatoid arthritis (RA) is a systemic autoimmune disease characterized by increased levels of inflammation that primarily manifests in the joints. Macrophages act as key drivers for the progression of RA, contributing to the perpetuation of chronic inflammation and dysregulation of pro-inflammatory cytokines such as interleukin 1 (IL-1). The goal of this study was to develop a macrophage-based cell therapy for biologic drug delivery in an autoregulated manner.
METHODS: For proof-of-concept, we developed "smart" macrophages to mitigate the effects of IL-1 by delivering its inhibitor, IL-1 receptor antagonist (IL-1Ra). Bone marrow-derived macrophages were lentivirally transduced with a synthetic gene circuit …
Gpr56: Gpcr As A Guardian Against Ferroptosis, Yuelong Yan, Li Zhuang, Boyi Gan
Gpr56: Gpcr As A Guardian Against Ferroptosis, Yuelong Yan, Li Zhuang, Boyi Gan
Faculty, Staff and Student Publications
Transmembrane receptor proteins are proficient in sensing external signals and initiating downstream pathways to control cell survival. Lin et al. demonstrated that GPR56, a G-protein-coupled receptor, can be activated by its agonist to suppress ferroptosis-a form of cell death-and effectively mitigate ferroptosis-associated liver damage.
Facilitating And Restraining Virus Infection Using Cell-Attachable Soluble Viral Receptors, Heng Zhang, Zhengli Wang, Huong T T Nguyen, Marjorie Cornejo Pontelli, Wanrong Qi, Liem Rao, Zhuoming Liu, Sean P J Whelan, Jieqing Zhu
Facilitating And Restraining Virus Infection Using Cell-Attachable Soluble Viral Receptors, Heng Zhang, Zhengli Wang, Huong T T Nguyen, Marjorie Cornejo Pontelli, Wanrong Qi, Liem Rao, Zhuoming Liu, Sean P J Whelan, Jieqing Zhu
2020-Current year OA Pubs
SARS-CoV-2 uses the receptor binding domain (RBD) of its spike protein to recognize and infect host cells by binding to the cell surface receptor angiotensin converting enzyme 2 (ACE2). The ACE2 receptor is composed of peptidase domain (PD), collectrin-like domain, transmembrane domain, and short cytoplasmic domain, and may exist as a dimer on cell surface. The RBD binding site is located atop of the ACE2 PD, but the involvement of other domains in virus infection is uncertain. We found that the ACE2 PD alone, whether anchored to cell membrane via a glycosylphosphatidylinositol anchor or attached to another surface protein, is …