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Articles 511 - 540 of 1788
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Transcriptome-Wide Identification Of Rna-Binding Protein Binding Sites Using Seclip-Seq, Steven M Blue, Brian A Yee, Gabriel A Pratt, Jasmine R Mueller, Samuel S Park, Alexander A Shishkin, Anne C Starner, Eric L Van Nostrand, Gene W Yeo
Transcriptome-Wide Identification Of Rna-Binding Protein Binding Sites Using Seclip-Seq, Steven M Blue, Brian A Yee, Gabriel A Pratt, Jasmine R Mueller, Samuel S Park, Alexander A Shishkin, Anne C Starner, Eric L Van Nostrand, Gene W Yeo
Faculty, Staff and Students Publications
Discovery of interaction sites between RNA-binding proteins (RBPs) and their RNA targets plays a critical role in enabling our understanding of how these RBPs control RNA processing and regulation. Cross-linking and immunoprecipitation (CLIP) provides a generalizable, transcriptome-wide method by which RBP/RNA complexes are purified and sequenced to identify sites of intermolecular contact. By simplifying technical challenges in prior CLIP methods and incorporating the generation of and quantitative comparison against size-matched input controls, the single-end enhanced CLIP (seCLIP) protocol allows for the profiling of these interactions with high resolution, efficiency and scalability. Here, we present a step-by-step guide to the seCLIP …
The Effect Of Age On The Mating Call Of The Tungara Frog, Zaizhen Xu
The Effect Of Age On The Mating Call Of The Tungara Frog, Zaizhen Xu
Pacific Undergraduate Research and Creativity Conference (PURCC)
No abstract provided.
A Proteomic Analysis To Identify Changes In Bacterial Protein Expression Following Overexpression Of A Spider Silk Protein, Jamie (Ju Yeon) Park, Jaeyoung (Kate) Lee, David Chanyang Eum, Minji Jung, Sungkyung Lee
A Proteomic Analysis To Identify Changes In Bacterial Protein Expression Following Overexpression Of A Spider Silk Protein, Jamie (Ju Yeon) Park, Jaeyoung (Kate) Lee, David Chanyang Eum, Minji Jung, Sungkyung Lee
Pacific Undergraduate Research and Creativity Conference (PURCC)
No abstract provided.
Halogen Bonding: A Computational Chemistry Investigation Of The Interaction Between Thyroid Hormone And Deiodinase, William Rice
Halogen Bonding: A Computational Chemistry Investigation Of The Interaction Between Thyroid Hormone And Deiodinase, William Rice
Honors Theses
Halogen bonding is a noncovalent interaction that continues to garner interest among the scientific community. Investigation of halogen bonds in biological contexts typically revolves around rational drug design for developing therapeutics. However, halogen bonding may be occurring naturally in our body every day. Thyroid hormone and its regulating enzyme, iodothyronine deiodinase, show promising results for a halogen bonding interaction that happens during catalysis. Prior work has examined the interaction between the iodine of thyroid hormone and the selenium of iodothyronine deiodinase. However, this study is the first of its kind to use computational chemistry methods to analyze the halogen bond …
Prenatal Exposure To A Climate-Related Disaster Results In Changes Of The Placental Transcriptome And Infant Temperament, Jessica Buthmann, Dennis Huang, Patrizia Casaccia, Sarah O'Neill, Yoko Nomura
Prenatal Exposure To A Climate-Related Disaster Results In Changes Of The Placental Transcriptome And Infant Temperament, Jessica Buthmann, Dennis Huang, Patrizia Casaccia, Sarah O'Neill, Yoko Nomura
Advanced Science Research Center
Maternal stress during pregnancy exerts long-term effects on the mental well-being of the offspring. However, the long-term effect of prenatal exposure on the offspring’s mental status is only partially understood. The placenta plays a vital role in connecting the maternal side to the fetus, thereby serving as an important interface between maternal exposure and fetal development. Here, we profiled the placental transcriptome of women who were pregnant during a hurricane (Superstorm Sandy), which struck New York City in 2012. The offspring were followed longitudinally and their temperament was assessed during the first 6–12 months of age. The data identified a …
The Various Nervous System Drugs Commonly Used For Treatment And The Disparities In Availability Of These Drugs In Minority Groups, Iman Haurami
Honors Scholars Collaborative Projects
The nervous system is a complex network in our body that is responsible for actions, reflexes, and even sensations. With the brain being part of the CNS, many common nervous system disorders are due to a defect in the central nervous system and the functions of this organ. These disorders include mental health problems, degenerative diseases, seizures, infections, and other possible genetic diseases. Many of these diseases are common in society and constantly researched. Even though these diseases are common, treatment accessibility and effects on people of minority groups are overlooked compared to the focus on majority groups. For drug …
Effects Of Seasonal Variation Of Abiotic Factors On Edna Detection Of Two Groundwater Crayfish Species, Jared Prine Higgs
Effects Of Seasonal Variation Of Abiotic Factors On Edna Detection Of Two Groundwater Crayfish Species, Jared Prine Higgs
Honors Capstone Projects and Theses
No abstract provided.
Annual Faculty Research Symposium 2022, Oakwood University
Annual Faculty Research Symposium 2022, Oakwood University
Proceedings
No abstract provided.
Microbial Diversity And Community Structure In Sediments Associated With The Seagrass (Thallassia Testudinum) In Apalachicola Bay, Florida, Rahma Ahmed, Thomas Mcelroy, Troy Mutchler
Microbial Diversity And Community Structure In Sediments Associated With The Seagrass (Thallassia Testudinum) In Apalachicola Bay, Florida, Rahma Ahmed, Thomas Mcelroy, Troy Mutchler
Symposium of Student Scholars
Seagrass is an angiosperm which provides many ecosystem services in coastal areas, such as providing food, shelter and nurseries for many species, and decreasing the impact of waves on shorelines. A global assessment reported that 29% of known seagrass meadows are in a state of decline due to the effects of human activity. Seagrass is commonly found in shallow marine waters where they form meadows containing a microbiome that plays an important role in providing nutrients for seagrass growth, though little is known about the microorganisms within the seagrass meadow sediments. Our project collected sediments from seagrass meadows and adjacent …
A Photography-Based, Social Media Walking Intervention Targeting Autonomous Motivations For Physical Activity: Semistructured Interviews With Older Women, Michael C Robertson, Maria Chang Swartz, Ursela Christopherson, Jason R Bentley, Karen M Basen-Engquist, Debbe Thompson, Elena Volpi, Elizabeth J Lyons
A Photography-Based, Social Media Walking Intervention Targeting Autonomous Motivations For Physical Activity: Semistructured Interviews With Older Women, Michael C Robertson, Maria Chang Swartz, Ursela Christopherson, Jason R Bentley, Karen M Basen-Engquist, Debbe Thompson, Elena Volpi, Elizabeth J Lyons
Faculty, Staff and Students Publications
BACKGROUND: Older adult women are at risk for negative health outcomes that engaging in sustained physical activity can help prevent. However, promoting long-term maintenance of physical activity in this population has proven to be a challenge. Increasing autonomous motivations (ie, intrinsic, integrated, and identified regulations) for physical activity may facilitate enduring behavior change. Digitally delivered games for health that take a celebratory technology approach, that is, using technology to create new ways to experience valued behaviors and express valued beliefs, may be a useful way to target autonomous motivations for physical activity. Formative research with the target population is needed …
Improving Photosynthetic Efficiency In Microalgae Through The Genetic Engineering Of Energy Sensors And Photoreceptors, Taylor L. Britton
Improving Photosynthetic Efficiency In Microalgae Through The Genetic Engineering Of Energy Sensors And Photoreceptors, Taylor L. Britton
Biology ETDs
Through photosynthesis microalgae can convert sunlight, water, and CO2 into chemical energy that can be used to generate carbon neutral biofuels and biomass. With an ever-increasing demand and need for petroleum substitutes it is imperative that we improve the output of industrial-relevant crops such as microalgae. One important way of improving output in algae is by understanding the roles that stress and energy conversion is regulated in these organisms. Photosynthetic organisms fundamentally depend on light- and sugar-driven metabolic and signaling networks, which integrate environmental cues to govern and sustain growth and survival. SnRKs (SNF1-related protein kinases) and the photoreceptor …
Casein Kinases Are Required For The Stability Of The Glucose Sensing Receptor Rgt2 In Yeast, Danny Bloor
Casein Kinases Are Required For The Stability Of The Glucose Sensing Receptor Rgt2 In Yeast, Danny Bloor
Liberty University Research Week
Undergraduate
Basic
Human Pancreatic Microenvironment Promotes Β-Cell Differentiation Via Non-Canonical Wnt5a/Jnk And Bmp Signaling, Jolanta Chmielowiec, Wojciech J Szlachcic, Diane Yang, Marissa A Scavuzzo, Katrina Wamble, Alejandro Sarrion-Perdigones, Omaima M Sabek, Koen J T Venken, Malgorzata Borowiak
Human Pancreatic Microenvironment Promotes Β-Cell Differentiation Via Non-Canonical Wnt5a/Jnk And Bmp Signaling, Jolanta Chmielowiec, Wojciech J Szlachcic, Diane Yang, Marissa A Scavuzzo, Katrina Wamble, Alejandro Sarrion-Perdigones, Omaima M Sabek, Koen J T Venken, Malgorzata Borowiak
Faculty, Staff and Students Publications
In vitro derivation of pancreatic β-cells from human pluripotent stem cells holds promise as diabetes treatment. Despite recent progress, efforts to generate physiologically competent β-cells are still hindered by incomplete understanding of the microenvironment's role in β-cell development and maturation. Here, we analyze the human mesenchymal and endothelial primary cells from weeks 9-20 fetal pancreas and identify a time point-specific microenvironment that permits β-cell differentiation. Further, we uncover unique factors that guide in vitro development of endocrine progenitors, with WNT5A markedly improving human β-cell differentiation. WNT5A initially acts through the non-canonical (JNK/c-JUN) WNT signaling and cooperates with Gremlin1 to inhibit …
Spata7 Is Required For Maintenance Of The Retinal Connecting Cilium, Jiaxiong Lu, Kaitlyn Xiong, Xinye Qian, Jongsu Choi, Yoon-Kyung Shim, Jacob Burnett, Graeme Mardon, Rui Chen
Spata7 Is Required For Maintenance Of The Retinal Connecting Cilium, Jiaxiong Lu, Kaitlyn Xiong, Xinye Qian, Jongsu Choi, Yoon-Kyung Shim, Jacob Burnett, Graeme Mardon, Rui Chen
Faculty, Staff and Students Publications
SPATA7, an early onset LCA3 retinal disease gene, encodes a putative scaffold protein that is essential for the proper assembly of the connecting cilium (CC) complex in photoreceptors. Previous studies have shown that SPATA7 interacts with other photoreceptor-specific ciliary proteins, such as RPGR and RPGRIP1, and maintains the integrity of CC integrity. However, although it is known that Spata7 is required for early formation of the CC, it is unclear if Spata7 is also required for the maintenance of the CC. To investigate Spata7 function in the retina at the adult stage, loss of function was induced in the …
Exploring The Functionality Of Putative Bop3 Post-Translational Modifications, Liliya Tkachuk
Exploring The Functionality Of Putative Bop3 Post-Translational Modifications, Liliya Tkachuk
Honors Scholars Collaborative Projects
All eukaryotic cells require that transcribed mRNAs undergo export form the nucleus to the cytoplasm where they can be translated into proteins. This process requires a host of proteins which are conserved between the unicellular budding yeast, S. cerevisiae, and humans. During this process, Mex67 and other associated proteins facilitate the mRNA to travel across the nuclear pore complex (NPC), doorways embedded in the nuclear envelope. Upon the exit of mRNA, Mex67 is released and recycled back into the nucleus to facilitate the export of more mRNA. This occurs through the action of Dbp5, whose activity is regulated through …
College Of Natural Sciences Newsletter, March & April 2022, College Of Natural Sciences
College Of Natural Sciences Newsletter, March & April 2022, College Of Natural Sciences
College of Natural Sciences Newsletters and Reports
Volume 3, Issue 3
Page 1 Dean's Message
Page 2-3 Awards and Recognition
Page 4 2022 URSCAD - CNS Snaps
Page 5 Geography Convention Recap
Page 6 Attention Students!
Page 7-8 Media Coverage of CNS
Page 9 Spring Break Outreach, Adopt the Pantry,
Page 10 Discovery on Tap Event
Page 11 CNS Students Visit State Capital
Page 12 Celebrating 50 Years of Sally
Page 13 Open PRAIRIE Data
Page 14 Grants Awarded and Bio-Micro Day of Scholars
Page 15 -17 2022 Geography Convention Snaps
Page 18 Sally Krueger's 50th Work Anniversary
Targeting Calcium-Mediated Inter-Organellar Crosstalk In Cardiac Diseases, Mohit M Hulsurkar, Satadru K Lahiri, Jason Karch, Meng C Wang, Xander H T Wehrens
Targeting Calcium-Mediated Inter-Organellar Crosstalk In Cardiac Diseases, Mohit M Hulsurkar, Satadru K Lahiri, Jason Karch, Meng C Wang, Xander H T Wehrens
Faculty, Staff and Students Publications
INTRODUCTION: Abnormal calcium signaling between organelles such as the sarcoplasmic reticulum (SR), mitochondria and lysosomes is a key feature of heart diseases. Calcium serves as a secondary messenger mediating inter-organellar crosstalk, essential for maintaining the cardiomyocyte function.
AREAS COVERED: This article examines the available literature related to calcium channels and transporters involved in inter-organellar calcium signaling. The SR calcium-release channels ryanodine receptor type-2 (RyR2) and inositol 1,4,5-trisphosphate receptor (IP
EXPERT OPINION: Enhanced SR calcium release via RyR2 and reduced SR reuptake via SERCA2a, increased VDAC and MCUC-mediated calcium uptake into mitochondria, and enhanced lysosomal calcium-release via lysosomal TPC and TRPML …
Prevalence And Predictors Of Missed Dysplasia On Index Barrett's Esophagus Diagnosing Endoscopy In A Veteran Population, Theresa H Nguyen, Aaron P Thrift, Rollin George, Daniel G Rosen, Hashem B El-Serag, Gyanprakash A Ketwaroo
Prevalence And Predictors Of Missed Dysplasia On Index Barrett's Esophagus Diagnosing Endoscopy In A Veteran Population, Theresa H Nguyen, Aaron P Thrift, Rollin George, Daniel G Rosen, Hashem B El-Serag, Gyanprakash A Ketwaroo
Faculty, Staff and Students Publications
BACKGROUND & AIMS: Limitations of endoscopic sampling may result in missed dysplasia at the diagnosis of Barrett's esophagus (BE). However, the role of close follow-up endoscopy is unclear. The aim was to evaluate the proportion of patients diagnosed with "missed" dysplasia within 18 months of their index nondysplastic BE (NDBE) diagnosis.
METHODS: This was a retrospective analysis of a cohort of BE patients diagnosed during 1990-2019 at the Houston VA. Patients with BE on index esophagogastroduodenoscopy (EGD) were classified as NDBE, indefinite dysplasia, or dysplastic (low- or high-grade dysplasia) based on initial biopsies. We identified NDBE patients who had follow-up …
Functional Analysis Of Stn1 Winged-Helix (Wh) Domains, Anna Bazell
Functional Analysis Of Stn1 Winged-Helix (Wh) Domains, Anna Bazell
Senior Theses
CST (CTC1-STN1-TEN1) is a heterotrimeric RPA-like protein complex that preferentially binds to single-stranded DNA (ssDNA). CST is conserved from yeast to humans and has been found to play a role in telomere maintenance, DNA replication, and DNA repair. Mutations in CST, specifically in the subunits of CTC1 and STN1, have been implicated in the development of the genetic diseases Coats plus and dyskeratosis congenita. Despite the known functions of CST, the mechanistic relationship between its structure and function has yet to be characterized, particularly with respect to its protein-protein interactions and DNA binding. An X-ray crystallography structure of CST revealed …
Intestinal Deletion Of 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Promotes Expansion Of The Resident Stem Cell Compartment, Alexandria M Doerfler, Jun Han, Kelsey E Jarrett, Li Tang, Antrix Jain, Alexander Saltzman, Marco De Giorgi, Marcel Chuecos, Ayrea E Hurley, Ang Li, Pauline Morand, Claudia Ayala, David R Goodlett, Anna Malovannaya, James F Martin, Thomas Q De Aguiar Vallim, Noah Shroyer, William R Lagor
Intestinal Deletion Of 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Promotes Expansion Of The Resident Stem Cell Compartment, Alexandria M Doerfler, Jun Han, Kelsey E Jarrett, Li Tang, Antrix Jain, Alexander Saltzman, Marco De Giorgi, Marcel Chuecos, Ayrea E Hurley, Ang Li, Pauline Morand, Claudia Ayala, David R Goodlett, Anna Malovannaya, James F Martin, Thomas Q De Aguiar Vallim, Noah Shroyer, William R Lagor
Faculty, Staff and Students Publications
BACKGROUND: The intestine occupies the critical interface between cholesterol absorption and excretion. Surprisingly little is known about the role of de novo cholesterol synthesis in this organ, and its relationship to whole body cholesterol homeostasis. Here, we investigate the physiological importance of this pathway through genetic deletion of the rate-limiting enzyme.
METHODS: Mice lacking 3-hydroxy-3-methylglutaryl-coenzyme A reductase (Hmgcr) in intestinal villus and crypt epithelial cells were generated using a Villin-Cre transgene. Plasma lipids, intestinal morphology, mevalonate pathway metabolites, and gene expression were analyzed.
RESULTS: Mice with intestine-specific loss of Hmgcr were markedly smaller at birth, but gain …
Changes In Physical Activity Associated With The Covid-19 Pandemic In Individuals With Overweight And Obesity: An Interrupted Time Series Analysis With Historical Controls, Michael C Robertson, Che Young Lee, Ivan Haw-Chong Wu, Yue Liao, Margaret Raber, Nathan Parker, Thuan Le, Leticia Gatus, Karen M Basen-Engquist
Changes In Physical Activity Associated With The Covid-19 Pandemic In Individuals With Overweight And Obesity: An Interrupted Time Series Analysis With Historical Controls, Michael C Robertson, Che Young Lee, Ivan Haw-Chong Wu, Yue Liao, Margaret Raber, Nathan Parker, Thuan Le, Leticia Gatus, Karen M Basen-Engquist
Faculty, Staff and Students Publications
The objective of this study was to investigate changes in physical activity patterns associated with the COVID-19 pandemic in individuals with overweight and obesity who were participating in a school district worksite weight loss program. We conducted comparative design interrupted time series analyses on physical activity device (Fitbit) data from the 2018-2019 and 2019-2020 school years (N = 211). We administered a questionnaire in 2020 to supplement device data. After the stay-at-home orders in 2020, participants tended to decrease their weekly step count (B = -1315.7, SE = 627.7, p = .045), decrease their weekly "Lightly active minutes" (B = …
Foxo1 Represses Sprouty 2 And Sprouty 4 Expression To Promote Arterial Specification And Vascular Remodeling In The Mouse Yolk Sac, Nanbing Li-Villarreal, Rebecca Lee Yean Wong, Monica D Garcia, Ryan S Udan, Ross A Poché, Tara L Rasmussen, Alexander M Rhyner, Joshua D Wythe, Mary E Dickinson
Foxo1 Represses Sprouty 2 And Sprouty 4 Expression To Promote Arterial Specification And Vascular Remodeling In The Mouse Yolk Sac, Nanbing Li-Villarreal, Rebecca Lee Yean Wong, Monica D Garcia, Ryan S Udan, Ross A Poché, Tara L Rasmussen, Alexander M Rhyner, Joshua D Wythe, Mary E Dickinson
Faculty, Staff and Students Publications
Establishing a functional circulatory system is required for post-implantation development during murine embryogenesis. Previous studies in loss-of-function mouse models showed that FOXO1, a Forkhead family transcription factor, is required for yolk sac (YS) vascular remodeling and survival beyond embryonic day (E) 11. Here, we demonstrate that at E8.25, loss of Foxo1 in Tie2-cre expressing cells resulted in increased sprouty 2 (Spry2) and Spry4 expression, reduced arterial gene expression and reduced Kdr (also known as Vegfr2 and Flk1) transcripts without affecting overall endothelial cell identity, survival or proliferation. Using a Dll4-BAC-nlacZ reporter line, we found that one of the earliest expressed …
Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis, Prasanna Kandel, Fatih Semerci, Rachana Mishra, William Choi, Aleksandar Bajic, Dodge Baluya, Lihua Ma, Kevin Chen, Austin C Cao, Tipwarin Phongmekhin, Nick Matinyan, Alba Jiménez-Panizo, Srinivas Chamakuri, Idris O Raji, Lyra Chang, Pablo Fuentes-Prior, Kevin R Mackenzie, Caroline L Benn, Eva Estébanez-Perpiñá, Koen Venken, David D Moore, Damian W Young, Mirjana Maletic-Savatic
Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis, Prasanna Kandel, Fatih Semerci, Rachana Mishra, William Choi, Aleksandar Bajic, Dodge Baluya, Lihua Ma, Kevin Chen, Austin C Cao, Tipwarin Phongmekhin, Nick Matinyan, Alba Jiménez-Panizo, Srinivas Chamakuri, Idris O Raji, Lyra Chang, Pablo Fuentes-Prior, Kevin R Mackenzie, Caroline L Benn, Eva Estébanez-Perpiñá, Koen Venken, David D Moore, Damian W Young, Mirjana Maletic-Savatic
Faculty, Staff and Students Publications
Neural stem cells, the source of newborn neurons in the adult hippocampus, are intimately involved in learning and memory, mood, and stress response. Despite considerable progress in understanding the biology of neural stem cells and neurogenesis, regulating the neural stem cell population precisely has remained elusive because we have lacked the specific targets to stimulate their proliferation and neurogenesis. The orphan nuclear receptor TLX/NR2E1 governs neural stem and progenitor cell self-renewal and proliferation, but the precise mechanism by which it accomplishes this is not well understood because its endogenous ligand is not known. Here, we identify oleic acid (18:1ω9 monounsaturated …
Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita
Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita
Undergraduate Research Conference
CFTR (Cystic Fibrosis Transmembrane-conductance Regulator) is a plasma membrane protein that functions as a chloride ion channel on many epithelial cells. There are over 1000 mutations that affect the function of this protein; however, the most common mutation is DF508. CFTR mutations target many secretory organs like pancreas and lungs causing the genetic disease cystic fibrosis (CF), common among Caucasians of northern European origin. Detection of endogenous CFTR expression is possible by a difficult and costly immunoprecipitation method but not by the most used western blotting method. Therefore, the goal of this project was to detect the endogenous CFTR expression …
Identification Of The Global Mir-130a Targetome Reveals A Role For Tbl1xr1 In Hematopoietic Stem Cell Self-Renewal And T(8; 21) Aml, Gabriela Krivdova, Veronique Voisin, Erwin M Schoof, Sajid A Marhon, Alex Murison, Jessica L Mcleod, Martino M Gabra, Andy G X Zeng, Stefan Aigner, Brian A Yee, Alexander A Shishkin, Eric L Van Nostrand, Karin G Hermans, Aaron C Trotman-Grant, Nathan Mbong, James A Kennedy, Olga I Gan, Elvin Wagenblast, Daniel D De Carvalho, Leonardo Salmena, Mark D Minden, Gary D Bader, Gene W Yeo, John E Dick, Eric R Lechman
Identification Of The Global Mir-130a Targetome Reveals A Role For Tbl1xr1 In Hematopoietic Stem Cell Self-Renewal And T(8; 21) Aml, Gabriela Krivdova, Veronique Voisin, Erwin M Schoof, Sajid A Marhon, Alex Murison, Jessica L Mcleod, Martino M Gabra, Andy G X Zeng, Stefan Aigner, Brian A Yee, Alexander A Shishkin, Eric L Van Nostrand, Karin G Hermans, Aaron C Trotman-Grant, Nathan Mbong, James A Kennedy, Olga I Gan, Elvin Wagenblast, Daniel D De Carvalho, Leonardo Salmena, Mark D Minden, Gary D Bader, Gene W Yeo, John E Dick, Eric R Lechman
Faculty, Staff and Students Publications
Gene expression profiling and proteome analysis of normal and malignant hematopoietic stem cells (HSCs) point to shared core stemness properties. However, discordance between mRNA and protein signatures highlights an important role for post-transcriptional regulation by microRNAs (miRNAs) in governing this critical nexus. Here, we identify miR-130a as a regulator of HSC self-renewal and differentiation. Enforced expression of miR-130a impairs B lymphoid differentiation and expands long-term HSCs. Integration of protein mass spectrometry and chimeric AGO2 crosslinking and immunoprecipitation (CLIP) identifies TBL1XR1 as a primary miR-130a target, whose loss of function phenocopies miR-130a overexpression. Moreover, we report that miR-130a is highly expressed …
A Red Fluorescent Protein With Improved Monomericity Enables Ratiometric Voltage Imaging With Asap3, Benjamin B Kim, Haodi Wu, Yukun A Hao, Michael Pan, Mariya Chavarha, Yufeng Zhao, Michael Westberg, François St-Pierre, Joseph C Wu, Michael Z Lin
A Red Fluorescent Protein With Improved Monomericity Enables Ratiometric Voltage Imaging With Asap3, Benjamin B Kim, Haodi Wu, Yukun A Hao, Michael Pan, Mariya Chavarha, Yufeng Zhao, Michael Westberg, François St-Pierre, Joseph C Wu, Michael Z Lin
Faculty, Staff and Students Publications
A ratiometric genetically encoded voltage indicator (GEVI) would be desirable for tracking transmembrane voltage changes in the presence of sample motion. We performed combinatorial multi-site mutagenesis on a cyan-excitable red fluorescent protein to create the bright and monomeric mCyRFP3, which proved to be uniquely non-perturbing when fused to the GEVI ASAP3. The green/red ratio from ASAP3-mCyRFP3 (ASAP3-R3) reported voltage while correcting for motion artifacts, allowing the visualization of membrane voltage changes in contracting cardiomyocytes and throughout the cell cycle of motile cells.
Salicylic Acid And N-Hydroxypipecolic Acid At The Fulcrum Of The Plant Immunity-Growth Equilibrium, Alyssa Shields, Vanessa Shivnauth, Christian Danve M. Castroverde
Salicylic Acid And N-Hydroxypipecolic Acid At The Fulcrum Of The Plant Immunity-Growth Equilibrium, Alyssa Shields, Vanessa Shivnauth, Christian Danve M. Castroverde
Biology Faculty Publications
Salicylic acid (SA) and N-hydroxypipecolic acid (NHP) are two central plant immune signals involved in both resistance at local sites of pathogen infection (basal resistance) and at distal uninfected sites after primary infection (systemic acquired resistance). Major discoveries and advances have led to deeper understanding of their biosynthesis and signaling during plant defense responses. In addition to their well-defined roles in immunity, recent research is emerging on their direct mechanistic impacts on plant growth and development. In this review, we will first provide an overview of how SA and NHP regulate local and systemic immune responses in plants. We …
Syndecan-2 Regulates Pad2 To Exert Antifibrotic Effects On Ra-Ild Fibroblasts, Konstantin Tsoyi, Anthony J Esposito, Bo Sun, Ryan G Bowen, Kevin Xiong, Fernando Poli, Rafael Cardenas, Sarah G Chu, Xiaoliang Liang, Stefan W Ryter, Christine Beeton, Tracy J Doyle, Matthew J Robertson, Lindsay J Celada, Freddy Romero, Souheil Y El-Chemaly, Mark A Perrella, I-Cheng Ho, Ivan O Rosas
Syndecan-2 Regulates Pad2 To Exert Antifibrotic Effects On Ra-Ild Fibroblasts, Konstantin Tsoyi, Anthony J Esposito, Bo Sun, Ryan G Bowen, Kevin Xiong, Fernando Poli, Rafael Cardenas, Sarah G Chu, Xiaoliang Liang, Stefan W Ryter, Christine Beeton, Tracy J Doyle, Matthew J Robertson, Lindsay J Celada, Freddy Romero, Souheil Y El-Chemaly, Mark A Perrella, I-Cheng Ho, Ivan O Rosas
Faculty, Staff and Students Publications
Rheumatoid arthritis (RA)-associated interstitial lung disease (RA-ILD) is the most common pulmonary complication of RA, increasing morbidity and mortality. Anti-citrullinated protein antibodies have been associated with the development and progression of both RA and fibrotic lung disease; however, the role of protein citrullination in RA-ILD remains unclear. Here, we demonstrate that the expression of peptidylarginine deiminase 2 (PAD2), an enzyme that catalyzes protein citrullination, is increased in lung homogenates from subjects with RA-ILD and their lung fibroblasts. Chemical inhibition or genetic knockdown of PAD2 in RA-ILD fibroblasts attenuated their activation, marked by decreased myofibroblast differentiation, gel contraction, and extracellular matrix …
Retinal Horizontal Cells Use Different Synaptic Sites For Global Feedforward And Local Feedback Signaling, Christian Behrens, Shubhash Chandra Yadav, Maria M Korympidou, Yue Zhang, Silke Haverkamp, Stephan Irsen, Anna Schaedler, Xiaoyu Lu, Zhuohe Liu, Jan Lause, François St-Pierre, Katrin Franke, Anna Vlasits, Karin Dedek, Robert G Smith, Thomas Euler, Philipp Berens, Timm Schubert
Retinal Horizontal Cells Use Different Synaptic Sites For Global Feedforward And Local Feedback Signaling, Christian Behrens, Shubhash Chandra Yadav, Maria M Korympidou, Yue Zhang, Silke Haverkamp, Stephan Irsen, Anna Schaedler, Xiaoyu Lu, Zhuohe Liu, Jan Lause, François St-Pierre, Katrin Franke, Anna Vlasits, Karin Dedek, Robert G Smith, Thomas Euler, Philipp Berens, Timm Schubert
Faculty, Staff and Students Publications
In the outer plexiform layer (OPL) of the mammalian retina, cone photoreceptors (cones) provide input to more than a dozen types of cone bipolar cells (CBCs). In the mouse, this transmission is modulated by a single horizontal cell (HC) type. HCs perform global signaling within their laterally coupled network but also provide local, cone-specific feedback. However, it is unknown how HCs provide local feedback to cones at the same time as global forward signaling to CBCs and where the underlying synapses are located. To assess how HCs simultaneously perform different modes of signaling, we reconstructed the dendritic trees of five …
Imaging-Based Screening Of Deubiquitinating Proteases Identifies Otubain-1 As A Stabilizer Of C-Myc, Shannon E Moree, Laure Maneix, Polina Iakova, Fabio Stossi, Ergun Sahin, Andre Catic
Imaging-Based Screening Of Deubiquitinating Proteases Identifies Otubain-1 As A Stabilizer Of C-Myc, Shannon E Moree, Laure Maneix, Polina Iakova, Fabio Stossi, Ergun Sahin, Andre Catic
Faculty, Staff and Students Publications
The ubiquitin-proteasome pathway precisely controls the turnover of transcription factors in the nucleus, playing an important role in maintaining appropriate quantities of these regulatory proteins. The transcription factor c-MYC is essential for normal development and is a critical cancer driver. Despite being highly expressed in several tissues and malignancies, the c-MYC protein is also continuously targeted by the ubiquitin-proteasome pathway, which can either facilitate or inhibit c-MYC degradation. Deubiquitinating proteases can remove ubiquitin chains from target proteins and rescue them from proteasomal digestion. This study sought to determine novel elements of the ubiquitin-proteasome pathway that regulate c-MYC levels. We performed …